******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-29 23:05:06.976751 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-29 23:15:07.200033 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-29 23:25:11.217193 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-29 23:35:06.042528 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-29 23:45:07.564010 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-29 23:55:11.417850 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 00:05:06.505985 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 00:15:06.545978 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 00:25:11.712149 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-29 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 1 it: 0 ndt: 1 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-29 18:00:00 ndt: 0 delta: 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-29 18:00:00 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/ /mnt/input/grib_HWRF/2019/1000624/ ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 08:05:06.094908 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 00:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 2 it: 0 ndt: 2 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 2 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 2 it: 0 ndt: 2 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 2 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-30 00:00:00 ndt: 6 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-30 00:00:00 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/ /mnt/input/grib_HWRF/2019/1000624/ Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 08:15:07.130651 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 00:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 2 it: 0 ndt: 2 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 2 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 2 it: 0 ndt: 2 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 2 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-30 00:00:00 ndt: 6 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-30 00:00:00 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt currDate 2019-10-30 00:00:00 f 2 nt-1 5 nt 6 currDate1 2019-10-30 00:00:00 2019-10-30 06:00:00 sdate 2019-10-30 06:00:00 2019-10-30 06:00:00 2 CAT ['TS', 'TS', 'TS'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.jpg 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt currDate 2019-10-30 00:00:00 f 2 nt-1 71 nt 72 currDate1 2019-10-30 00:00:00 2019-11-02 00:00:00 sdate 2019-11-02 00:00:00 2019-11-02 00:00:00 13 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.jpg processing all past bull only if Past=True... True itdate, istime 2019-10-29 18:00:00 20191029.18 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019102918/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019102918/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019102918/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019102918/all_inpData.txt currDate 2019-10-29 18:00:00 f 1 nt-1 5 nt 6 currDate1 2019-10-29 18:00:00 2019-10-30 00:00:00 sdate 2019-10-30 00:00:00 2019-10-30 00:00:00 1 CAT ['TS', 'TS'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.jpg 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019102918/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019102918/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019102918/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019102918/all_inpData.txt currDate 2019-10-29 18:00:00 f 1 nt-1 71 nt 72 currDate1 2019-10-29 18:00:00 2019-11-01 18:00:00 sdate 2019-11-01 18:00:00 2019-11-01 18:00:00 12 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.jpg >> 2.2. Process final data files compfile /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/20191030.00_Final_completed_rain.txt FINAL alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00'], dtype='datetime64[ns]', freq='6H') alldate.shape 2 date: 2019-10-30 00:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" max file created /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif stormname 1000624/23w stormname 1000624/23w TCbullsource 23w >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt 99.3900242131 120.0 4.99162227603 22.2499757869 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103000/all_inpData.txt currDate 2019-10-30 00:00:00 f 2 nt-1 71 nt 72 currDate1 2019-10-30 00:00:00 2019-11-02 00:00:00 sdate 2019-11-02 00:00:00 2019-11-02 00:00:00 13 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg ret: 0 ============================================ 3. Classify meteo + GDACS index score ============================================ >> 3.1. Classify curr + past forecast Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_res_stept0.tif. 0Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_res_stept0.tif. 0......1010......2020......3030......4040......5050......6060......7070......8080......9090......100 - done. 100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_popfile_stept0_clipped.tif. 0Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_popfile_stept0_clipped.tif. 0......1010......2020......3030......4040......5050......6060......7070......8080......9090......100 - done. 100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_countryfile_stept0_clipped.tif. 0.Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_countryfile_stept0_clipped.tif. 0....10..10...20....20..30....30.40......4050......5060......7060.....80..70....90..80.....90...100 - done. 100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_stept0.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_popfile_stept0_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_stept0.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_stept0.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_popfile_stept0_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_stept0.xml >> 7. remove files done t0 completed Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_res_all.tif. 0Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_res_all.tif. 0......1010......2020......3030......4040......5050......6060......7070......8080......9090......100 - done. 100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_popfile_all_clipped.tif. 0...Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_popfile_all_clipped.tif. 010......2010......30.20....40..30....50..40...60....50.70......8060.....90..70.....80...90...100 - done. 100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_countryfile_all_clipped.tif. 0...Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_countryfile_all_clipped.tif. 010.....20..10...30.....2040......50.30....60...40..70.....5080......9060......70...80...90...100 - done. 100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_all.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_popfile_all_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_all.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_all.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_popfile_all_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_all.xml >> 7. remove files done Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Using internal nodata values (e.g. 3.40282e+38) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_res_final.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. t0 completed ============================================ 4. Copy files ============================================ copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/20191029.18_copy_completed_rain.txt copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/20191030.00_copy_completed_rain.txt >> 3.2. Classify final folder /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/20191030.00_final_completed_rain.txt input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml >> 7. remove files done copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain.jpg ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-30 08:15:07.130651 UTC Case completed at: 2019-10-30 08:16:49.709273 UTC **********E N D O F J O B*********************** ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 08:25:11.047290 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 00:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 2 it: 0 ndt: 2 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 2 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 2 it: 0 ndt: 2 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 2 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-30 00:00:00 ndt: 6 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-30 00:00:00 ********** no new data check copy copy ok copy ok no new data ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-30 08:25:11.047290 UTC Case completed at: 2019-10-30 08:25:11.163222 UTC **********E N D O F J O B*********************** ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 12:35:08.253813 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 3 it: 0 ndt: 3 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 3 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 3 idate: 2019-10-30 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 12:45:10.473914 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 3 it: 0 ndt: 3 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 3 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 3 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 3 it: 0 ndt: 3 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 3 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist it: 2 ndt: 3 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-30 06:00:00 ndt: 12 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-30 06:00:00 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt currDate 2019-10-30 06:00:00 f 3 nt-1 5 nt 6 currDate1 2019-10-30 06:00:00 2019-10-30 12:00:00 sdate 2019-10-30 12:00:00 2019-10-30 12:00:00 3 CAT ['TS', 'TS', 'TS', 'TS'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.jpg 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt currDate 2019-10-30 06:00:00 f 3 nt-1 71 nt 72 currDate1 2019-10-30 06:00:00 2019-11-02 06:00:00 sdate 2019-11-02 06:00:00 2019-11-02 06:00:00 14 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.jpg processing all past bull only if Past=True... True itdate, istime 2019-10-29 18:00:00 20191029.18 meteo-processing past forecast already completed itdate, istime 2019-10-30 00:00:00 20191030.00 meteo-processing past forecast already completed >> 2.2. Process final data files compfile /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/20191030.06_Final_completed_rain.txt FINAL remove maxtif alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00'], dtype='datetime64[ns]', freq='6H') alldate.shape 3 date: 2019-10-30 00:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 06:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" max file created /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif stormname 1000624/23w stormname 1000624/23w TCbullsource 23w >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt 99.3900242131 120.0 4.99162227603 22.2499757869 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103006/all_inpData.txt currDate 2019-10-30 06:00:00 f 3 nt-1 71 nt 72 currDate1 2019-10-30 06:00:00 2019-11-02 06:00:00 sdate 2019-11-02 06:00:00 2019-11-02 06:00:00 14 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg ret: 0 ============================================ 3. Classify meteo + GDACS index score ============================================ >> 3.1. Classify curr + past forecast Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_res_stept0.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_popfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_countryfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_stept0.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_popfile_stept0_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_stept0.xml >> 7. remove files done t0 completed Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_res_all.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_popfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_countryfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_all.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_popfile_all_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_all.xml >> 7. remove files done Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Using internal nodata values (e.g. 3.40282e+38) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_res_final.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. t0 completed ============================================ 4. Copy files ============================================ copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/20191029.18_copy_completed_rain.txt copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/20191030.00_copy_completed_rain.txt copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/20191030.06_copy_completed_rain.txt >> 3.2. Classify final folder /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/20191030.06_final_completed_rain.txt input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml xml file exists...REMOVE popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml >> 7. remove files done copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain.jpg ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-30 12:45:10.473914 UTC Case completed at: 2019-10-30 12:46:39.826013 UTC **********E N D O F J O B*********************** Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 21:55:14.650043 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 12:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 4 it: 0 ndt: 4 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 4 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 4 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 4 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 4 it: 0 ndt: 4 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 4 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist it: 2 ndt: 4 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif input file exist it: 3 ndt: 4 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-30 12:00:00 ndt: 18 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-30 12:00:00 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt currDate 2019-10-30 12:00:00 f 4 nt-1 5 nt 6 currDate1 2019-10-30 12:00:00 2019-10-30 18:00:00 sdate 2019-10-30 18:00:00 2019-10-30 18:00:00 4 CAT ['TS', 'TS', 'TS', 'TS', 'TS'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.jpg 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt currDate 2019-10-30 12:00:00 f 4 nt-1 71 nt 72 currDate1 2019-10-30 12:00:00 2019-11-02 12:00:00 sdate 2019-11-02 12:00:00 2019-11-02 12:00:00 15 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.jpg processing all past bull only if Past=True... True itdate, istime 2019-10-29 18:00:00 20191029.18 meteo-processing past forecast already completed itdate, istime 2019-10-30 00:00:00 20191030.00 meteo-processing past forecast already completed itdate, istime 2019-10-30 06:00:00 20191030.06 meteo-processing past forecast already completed >> 2.2. Process final data files compfile /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/20191030.12_Final_completed_rain.txt FINAL remove maxtif alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00'], dtype='datetime64[ns]', freq='6H') alldate.shape 4 date: 2019-10-30 00:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 06:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 12:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" max file created /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif stormname 1000624/23w stormname 1000624/23w TCbullsource 23w >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt 99.3900242131 120.0 4.99162227603 22.2499757869 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103012/all_inpData.txt currDate 2019-10-30 12:00:00 f 4 nt-1 71 nt 72 currDate1 2019-10-30 12:00:00 2019-11-02 12:00:00 sdate 2019-11-02 12:00:00 2019-11-02 12:00:00 15 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg ret: 0 ============================================ 3. Classify meteo + GDACS index score ============================================ >> 3.1. Classify curr + past forecast Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_res_stept0.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_popfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_countryfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_stept0.xml outDir created popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_popfile_stept0_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_stept0.xml >> 7. remove files done t0 completed Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_res_all.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_popfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_countryfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_all.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_popfile_all_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_all.xml >> 7. remove files done Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Using internal nodata values (e.g. 3.40282e+38) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_res_final.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. t0 completed ============================================ 4. Copy files ============================================ check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/20191029.18_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/20191030.00_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/20191030.06_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/20191030.12_copy_completed_rain.txt >> 3.2. Classify final folder /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/20191030.12_final_completed_rain.txt input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml xml file exists...REMOVE popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml >> 7. remove files done copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain.jpg ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-30 21:55:14.650043 UTC Case completed at: 2019-10-30 21:56:49.586304 UTC **********E N D O F J O B*********************** ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 22:05:06.595792 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 12:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 4 it: 0 ndt: 4 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 4 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 4 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 4 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 4 it: 0 ndt: 4 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 4 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist it: 2 ndt: 4 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif input file exist it: 3 ndt: 4 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-30 12:00:00 ndt: 18 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-30 12:00:00 ********** no new data check copy copy ok copy ok copy ok copy ok no new data ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-30 22:05:06.595792 UTC Case completed at: 2019-10-30 22:05:06.849235 UTC **********E N D O F J O B*********************** ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-30 22:15:11.342310 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 12:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 4 it: 0 ndt: 4 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 4 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 4 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 4 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 4 it: 0 ndt: 4 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 4 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist it: 2 ndt: 4 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif input file exist it: 3 ndt: 4 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-30 12:00:00 ndt: 18 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-30 12:00:00 ********** no new data check copy copy ok copy ok copy ok copy ok no new data ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-30 22:15:11.342310 UTC Case completed at: 2019-10-30 22:15:11.681834 UTC **********E N D O F J O B*********************** ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 00:35:06.366487 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 5 it: 0 ndt: 5 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 5 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 5 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 5 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 5 idate: 2019-10-30 18:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_72h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_72h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 00:45:07.284241 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-30 18:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 5 it: 0 ndt: 5 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 5 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 5 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 5 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 5 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 5 it: 0 ndt: 5 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 5 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist it: 2 ndt: 5 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif input file exist it: 3 ndt: 5 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif input file exist it: 4 ndt: 5 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-30 18:00:00 ndt: 24 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00', '2019-10-30 18:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-30 18:00:00 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt currDate 2019-10-30 18:00:00 f 5 nt-1 5 nt 6 currDate1 2019-10-30 18:00:00 2019-10-31 00:00:00 sdate 2019-10-31 00:00:00 2019-10-31 00:00:00 5 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.jpg 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_72h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_72h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt currDate 2019-10-30 18:00:00 f 5 nt-1 71 nt 72 currDate1 2019-10-30 18:00:00 2019-11-02 18:00:00 sdate 2019-11-02 18:00:00 2019-11-02 18:00:00 16 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.jpg processing all past bull only if Past=True... True itdate, istime 2019-10-29 18:00:00 20191029.18 meteo-processing past forecast already completed itdate, istime 2019-10-30 00:00:00 20191030.00 meteo-processing past forecast already completed itdate, istime 2019-10-30 06:00:00 20191030.06 meteo-processing past forecast already completed itdate, istime 2019-10-30 12:00:00 20191030.12 meteo-processing past forecast already completed >> 2.2. Process final data files compfile /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/20191030.18_Final_completed_rain.txt FINAL remove maxtif alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00', '2019-10-30 18:00:00'], dtype='datetime64[ns]', freq='6H') alldate.shape 5 date: 2019-10-30 00:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 06:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 12:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 18:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" max file created /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif stormname 1000624/23w stormname 1000624/23w TCbullsource 23w >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt 99.3900242131 120.0 4.99162227603 22.2499757869 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103018/all_inpData.txt currDate 2019-10-30 18:00:00 f 5 nt-1 71 nt 72 currDate1 2019-10-30 18:00:00 2019-11-02 18:00:00 sdate 2019-11-02 18:00:00 2019-11-02 18:00:00 16 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg ret: 0 ============================================ 3. Classify meteo + GDACS index score ============================================ >> 3.1. Classify curr + past forecast Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_res_stept0.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_popfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_countryfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_stept0.xml outDir created popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_popfile_stept0_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_stept0.xml >> 7. remove files done t0 completed Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_res_all.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_popfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_countryfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_all.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_popfile_all_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_all.xml >> 7. remove files done Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Using internal nodata values (e.g. 3.40282e+38) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_res_final.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. t0 completed ============================================ 4. Copy files ============================================ check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/20191029.18_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/20191030.00_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/20191030.06_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/20191030.12_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/20191030.18_copy_completed_rain.txt >> 3.2. Classify final folder /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/20191030.18_final_completed_rain.txt input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml xml file exists...REMOVE popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml >> 7. remove files done copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain.jpg ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-31 00:45:07.284241 UTC Case completed at: 2019-10-31 00:46:43.401799 UTC **********E N D O F J O B*********************** Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done 0 .. 10 .. 20 .. 30 .. 40 .. 50 .. 60 .. 70 .. 80 .. 90 .. 100 - Done ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 07:55:10.236126 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 00:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 6 it: 0 ndt: 6 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 6 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 6 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 6 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 6 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 6 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 6 it: 0 ndt: 6 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 6 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist it: 2 ndt: 6 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif input file exist it: 3 ndt: 6 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif input file exist it: 4 ndt: 6 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_72h.tif input file exist it: 5 ndt: 6 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-31 00:00:00 ndt: 30 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00', '2019-10-30 18:00:00', '2019-10-31 00:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-31 00:00:00 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt currDate 2019-10-31 00:00:00 f 6 nt-1 5 nt 6 currDate1 2019-10-31 00:00:00 2019-10-31 06:00:00 sdate 2019-10-31 06:00:00 2019-10-31 06:00:00 6 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.jpg 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt currDate 2019-10-31 00:00:00 f 6 nt-1 71 nt 72 currDate1 2019-10-31 00:00:00 2019-11-03 00:00:00 sdate 2019-11-03 00:00:00 2019-11-03 00:00:00 17 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.jpg processing all past bull only if Past=True... True itdate, istime 2019-10-29 18:00:00 20191029.18 meteo-processing past forecast already completed itdate, istime 2019-10-30 00:00:00 20191030.00 meteo-processing past forecast already completed itdate, istime 2019-10-30 06:00:00 20191030.06 meteo-processing past forecast already completed itdate, istime 2019-10-30 12:00:00 20191030.12 meteo-processing past forecast already completed itdate, istime 2019-10-30 18:00:00 20191030.18 meteo-processing past forecast already completed >> 2.2. Process final data files compfile /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/20191031.00_Final_completed_rain.txt FINAL remove maxtif alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00', '2019-10-30 18:00:00', '2019-10-31 00:00:00'], dtype='datetime64[ns]', freq='6H') alldate.shape 6 date: 2019-10-30 00:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain_stept0.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 06:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 12:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-30 18:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-10-31 00:00:00 python /usr/bin/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif --calc="(A+B)" max file created /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif stormname 1000624/23w stormname 1000624/23w TCbullsource 23w >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt 99.3900242131 120.0 4.99162227603 22.2499757869 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt currDate 2019-10-31 00:00:00 f 6 nt-1 71 nt 72 currDate1 2019-10-31 00:00:00 2019-11-03 00:00:00 sdate 2019-11-03 00:00:00 2019-11-03 00:00:00 17 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg ret: 0 ============================================ 3. Classify meteo + GDACS index score ============================================ >> 3.1. Classify curr + past forecast input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00/rain_popDensValues_stept0.xml t0 completed Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_res_all.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_popfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_countryfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00/rain_popDensValues_all.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_popfile_all_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00/rain_popDensValues_all.xml >> 7. remove files done Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Using internal nodata values (e.g. 3.40282e+38) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_res_final.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. t0 completed ============================================ 4. Copy files ============================================ check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/20191029.18_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/20191030.00_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/20191030.06_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/20191030.12_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/20191030.18_copy_completed_rain.txt check t0 xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/20191031.00_copy_completed_rain.txt >> 3.2. Classify final folder /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/20191031.00_final_completed_rain.txt input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_final.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml xml file exists...REMOVE popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_popfile_final_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final//rain_countryfile_final_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml >> 7. remove files done copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain.jpg ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-31 07:55:10.236126 UTC Case completed at: 2019-10-31 07:56:27.396156 UTC **********E N D O F J O B*********************** Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 413P x 346L. Processing input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif. Using internal nodata values (e.g. -3.40282e+38) for image /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 08:05:07.916697 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 00:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 6 it: 0 ndt: 6 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 6 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 6 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 6 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 6 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 6 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist GDACS/1000624/1_HWRF 1000624 ndt: 6 it: 0 ndt: 6 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_72h.tif input file exist it: 1 ndt: 6 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_72h.tif input file exist it: 2 ndt: 6 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_72h.tif input file exist it: 3 ndt: 6 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_72h.tif input file exist it: 4 ndt: 6 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_72h.tif input file exist it: 5 ndt: 6 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif input file exist home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-10-29 18:00:00 currdate 2019-10-31 00:00:00 ndt: 30 delta: 6 nt1=delta 6 nt 72 alldate: DatetimeIndex(['2019-10-29 18:00:00', '2019-10-30 00:00:00', '2019-10-30 06:00:00', '2019-10-30 12:00:00', '2019-10-30 18:00:00', '2019-10-31 00:00:00'], dtype='datetime64[ns]', freq='6H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files lon0,lon1,lat0,lat1 99.34 120.0 5.0 22.3 processing curr bull... 2019-10-31 00:00:00 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt currDate 2019-10-31 00:00:00 f 6 nt-1 5 nt 6 currDate1 2019-10-31 00:00:00 2019-10-31 06:00:00 sdate 2019-10-31 06:00:00 2019-10-31 06:00:00 6 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.jpg 99.34 120.0 99.34 120.0 0.05 0.05 /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/ /mnt/input/grib_HWRF/2019/1000624/ input file /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 Resample tif file /usr/bin/gdalwarp -r bilinear -te 99.34 5.0 120.0 22.3 -dstnodata 0 "/mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_72h.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif" outFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.tif dd: 0.0500242130751 >> 0. SET INPUT/OUTPUT HWRF /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt trackfile /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt 99.3650121065 119.974987893 5.01663438257 22.2749878935 lon 413 lat 346 read TC track /mnt/output/GDACS/TC/TCTrack/1000624/HWRF/2019103100/all_inpData.txt currDate 2019-10-31 00:00:00 f 6 nt-1 71 nt 72 currDate1 2019-10-31 00:00:00 2019-11-03 00:00:00 sdate 2019-11-03 00:00:00 2019-11-03 00:00:00 17 CAT ['TS', 'TS', 'TS', 'TS', 'TS', 'TS', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD', 'TD'] savemap /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.jpg processing all past bull only if Past=True... True itdate, istime 2019-10-29 18:00:00 20191029.18 meteo-processing past forecast already completed itdate, istime 2019-10-30 00:00:00 20191030.00 meteo-processing past forecast already completed itdate, istime 2019-10-30 06:00:00 20191030.06 meteo-processing past forecast already completed itdate, istime 2019-10-30 12:00:00 20191030.12 meteo-processing past forecast already completed itdate, istime 2019-10-30 18:00:00 20191030.18 meteo-processing past forecast already completed >> 2.2. Process final data files compfile /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/20191031.00_Final_completed_rain.txt ============================================ 3. Classify meteo + GDACS index score ============================================ >> 3.1. Classify curr + past forecast Creating output file that is 2479P x 2077L. Processing input file /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_res_stept0.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/lspop20141.tif. Using internal nodata values (e.g. -2.14748e+09) for image /mnt/output/GDACS/DATA/lspop20141.tif. Copying nodata values from source /mnt/output/GDACS/DATA/lspop20141.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_popfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 2479P x 2077L. Processing input file /mnt/output/GDACS/DATA/countries.tif. Using internal nodata values (e.g. -32768) for image /mnt/output/GDACS/DATA/countries.tif. Copying nodata values from source /mnt/output/GDACS/DATA/countries.tif to destination /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_countryfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (HWRF) OutDir: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00/rain_popDensValues_stept0.xml popfile: LandScan popCellSize= 0.00833333333333 projection= GEOGCS["WGS 84",DATUM["WGS_1984",SPHEROID["WGS 84",6378137,298.257223563,AUTHORITY["EPSG","7030"]],AUTHORITY["EPSG","6326"]],PRIMEM["Greenwich",0],UNIT["degree",0.0174532925199433],AUTHORITY["EPSG","4326"]] >> 1. resample the tif file to the resolution and proj of pop density 0.00833333333333 deg >> 2. read the charactristics of the input file >> 3a. extract a piece of pop. file corresponding to the required bounding box split,rastershift False -1 99.3650121065 4.96665456014 120.02334544 22.2749878935 HWRF /usr/bin/gdalwarp -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_popfile_stept0_clipped.tif" >> 3b. extract a piece of countries corresponding to the required bounding box and resolution/proj of pop density gdalwarp -r near -tr 0.00833333333333 0.00833333333333 -te 99.3650121065 4.96665456014 120.02334544 22.2749878935 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.0083333333334 cellsize 0.00833333333333 >> 5. count the popolation in each cell and assign to the class and write to output >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00/rain_popDensValues_stept0.xml >> 7. remove files done t0 completed t0 completed ============================================ 4. Copy files ============================================ check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191029.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191029.18/20191029.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191029.18/20191029.18_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.00/20191030.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.00/20191030.00_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.06/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.06/20191030.06_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.06/20191030.06_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.12/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.12/20191030.12_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.12/20191030.12_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191030.18/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191030.18/20191030.18_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191030.18/20191030.18_copy_completed_rain.txt check t0 xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues_t0.xml check all xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/20191031.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/20191031.00/20191031.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain.jpg >> !!!! Check Copy !!!! , listfiles_copy , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml , listfiles_all , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues_t0.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml , /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/rain_popDensValues.xml all files copied copycheck: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/20191031.00/20191031.00_copy_completed_rain.txt >> 3.2. Classify final folder /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/20191031.00_final_completed_rain.txt copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/class/final/rain_popDensValues_final.xml in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/tif/final/rain_FINAL.jpg in: /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/delft3d/final/rain.jpg ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-10-31 08:05:07.916697 UTC Case completed at: 2019-10-31 08:05:40.026437 UTC **********E N D O F J O B*********************** ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 12:35:07.637748 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 12:45:06.700521 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 12:55:11.251948 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 13:05:06.868272 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 13:15:07.493309 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 13:25:11.695258 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 15:05:07.120922 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 15:15:09.125810 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 15:25:13.506397 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 15:35:07.560465 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 15:45:06.997841 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 15:55:09.927831 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 16:05:06.240303 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 16:15:07.580985 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 16:25:11.501973 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 16:35:07.102611 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 16:45:09.917982 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ============================================================== ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-10-31 16:55:10.247227 UTC inp1= 20191029.18 ncores= 2 var= rain lw= aa.txt stormname!!!!!!!!!!!!!!!= 1000624/23w submitting calc 2019-10-29 18:00:00 2019-10-31 06:00:00 delft3d 99.34 120.0 5.0 22.3 4.0 HWRF 72 15 True GDACS/1000624/1_HWRF 6 1 False False 2 aa.txt 20191029.18 1000624/23w 6 rain False *************---------------------****************** GDACS/1000624/1_HWRF 1000624 ndt: 7 it: 0 ndt: 7 idate: 2019-10-29 18:00:00 /mnt/input/grib_HWRF/2019/1000624/twenty-th23w.2019102918.swath.rain_6h.tif input file exist it: 1 ndt: 7 idate: 2019-10-30 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103000.swath.rain_6h.tif input file exist it: 2 ndt: 7 idate: 2019-10-30 06:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103006.swath.rain_6h.tif input file exist it: 3 ndt: 7 idate: 2019-10-30 12:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103012.swath.rain_6h.tif input file exist it: 4 ndt: 7 idate: 2019-10-30 18:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103018.swath.rain_6h.tif input file exist it: 5 ndt: 7 idate: 2019-10-31 00:00:00 /mnt/input/grib_HWRF/2019/1000624/matmo23w.2019103100.swath.rain_6h.tif input file exist it: 6 ndt: 7 idate: 2019-10-31 06:00:00 meteo files not yet existing home dir /mnt/output/SSCS/2019/GDACS/1000624/1_HWRF/ ret -4 no impact estimation ==============================================================