******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 10:44:05.897328 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours ============================================ process meteo ============================================ 1. process meteo, starting at 2019-09-15 10:44:25.987708 ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 10:54:09.107080 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 11:04:05.726696 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ..1.1 calling ECMWF_2_netcdf... ...ready to create the netcdf file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc ...opening grib file /mnt/input/grib/2019/09/12/20190912.00.precip.grib ('lon0<0', -87.4) shiftGrid=True ...nt= 72 ...creating nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp open netCDF file: ....writing lat, lon createnc ok ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.00_rain.nc.tmp ret= 0 removing submitted ret= 0 newcase= False forceFinal= False forceBulletin= False it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours ============================================ process meteo ============================================ 1. process meteo, starting at 2019-09-15 11:08:06.015996 ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 11:14:06.306689 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 11:24:13.965868 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ..1.1 calling ECMWF_2_netcdf... ...ready to create the netcdf file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc ...opening grib file /mnt/input/grib/2019/09/12/20190912.12.precip.grib ('lon0<0', -87.4) shiftGrid=True ...nt= 72 ...creating nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp open netCDF file: ....writing lat, lon createnc ok ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: 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/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190912.12_rain.nc.tmp ret= 0 removing submitted ret= 0 newcase= True forceFinal= False forceBulletin= False it: 2 ndt: 7 idate: 2019-09-13 00:00:00 running case from 2019-09-13 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.00 RUNNING 2019-09-13 00:00:00 for 72 hours ============================================ process meteo ============================================ 1. process meteo, starting at 2019-09-15 11:26:16.983509 ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 11:34:06.392490 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 2 ndt: 7 idate: 2019-09-13 00:00:00 running case from 2019-09-13 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.00 RUNNING 2019-09-13 00:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 11:44:07.978007 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours ..1.1 calling ECMWF_2_netcdf... ...ready to create the netcdf file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc ...opening grib file /mnt/input/grib/2019/09/13/20190913.00.precip.grib ('lon0<0', -87.4) shiftGrid=True ...nt= 72 ...creating nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp open netCDF file: ....writing lat, lon createnc ok ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.00_rain.nc.tmp ret= 0 removing submitted ret= 0 newcase= True forceFinal= False forceBulletin= False it: 3 ndt: 7 idate: 2019-09-13 12:00:00 running case from 2019-09-13 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.12 RUNNING 2019-09-13 12:00:00 for 72 hours ============================================ process meteo ============================================ 1. process meteo, starting at 2019-09-15 11:44:53.782161 Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 2 ndt: 7 idate: 2019-09-13 00:00:00 running case from 2019-09-13 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.00 RUNNING 2019-09-13 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 3 ndt: 7 idate: 2019-09-13 12:00:00 running case from 2019-09-13 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.12 RUNNING 2019-09-13 12:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 11:54:09.488961 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 2 ndt: 7 idate: 2019-09-13 00:00:00 running case from 2019-09-13 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.00 RUNNING 2019-09-13 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 3 ndt: 7 idate: 2019-09-13 12:00:00 running case from 2019-09-13 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.12 RUNNING 2019-09-13 12:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 12:04:04.710521 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours ..1.1 calling ECMWF_2_netcdf... ...ready to create the netcdf file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc ...opening grib file /mnt/input/grib/2019/09/13/20190913.12.precip.grib ('lon0<0', -87.4) shiftGrid=True ...nt= 72 ...creating nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp open netCDF file: ....writing lat, lon createnc ok ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: 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/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190913.12_rain.nc.tmp ret= 0 removing submitted ret= 0 newcase= True forceFinal= False forceBulletin= False it: 4 ndt: 7 idate: 2019-09-14 00:00:00 running case from 2019-09-14 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190914.00 RUNNING 2019-09-14 00:00:00 for 72 hours ============================================ process meteo ============================================ 1. process meteo, starting at 2019-09-15 12:04:52.271467 Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 2 ndt: 7 idate: 2019-09-13 00:00:00 running case from 2019-09-13 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.00 RUNNING 2019-09-13 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 3 ndt: 7 idate: 2019-09-13 12:00:00 running case from 2019-09-13 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.12 RUNNING 2019-09-13 12:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 4 ndt: 7 idate: 2019-09-14 00:00:00 running case from 2019-09-14 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190914.00 RUNNING 2019-09-14 00:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 12:14:06.344129 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 2 ndt: 7 idate: 2019-09-13 00:00:00 running case from 2019-09-13 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.00 RUNNING 2019-09-13 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 3 ndt: 7 idate: 2019-09-13 12:00:00 running case from 2019-09-13 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.12 RUNNING 2019-09-13 12:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 4 ndt: 7 idate: 2019-09-14 00:00:00 running case from 2019-09-14 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190914.00 RUNNING 2019-09-14 00:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ..1.1 calling ECMWF_2_netcdf... ...ready to create the netcdf file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc ...opening grib file /mnt/input/grib/2019/09/14/20190914.00.precip.grib ('lon0<0', -87.4) shiftGrid=True ...nt= 72 ...creating nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp open netCDF file: ....writing lat, lon createnc ok ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: 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/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.00_rain.nc.tmp ret= 0 removing submitted ret= 0 newcase= True forceFinal= False forceBulletin= False it: 5 ndt: 7 idate: 2019-09-14 12:00:00 running case from 2019-09-14 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190914.12 RUNNING 2019-09-14 12:00:00 for 72 hours ============================================ process meteo ============================================ 1. process meteo, starting at 2019-09-15 12:23:26.927326 ******************************************************* * Storm Surge Calculation System (SSCS) * ******************************************************* Now is : 2019-09-15 12:24:11.088879 UTC inp1= 20190912.00 ncores= 2 var= rain submitting calc 2019-09-12 00:00:00 2019-09-15 00:00:00 delft3d -87.4 -51.87 17.27 40.18 4.0 ECMWF 72 15 True GDACS/1000599/4_ECMWF 6 1 False False 2 20190912.00 6 rain False *************---------------------****************** stormname ndt: 7 it: 0 ndt: 7 idate: 2019-09-12 00:00:00 running case from 2019-09-12 00:00:00 for 72 h start= 1 var rain **** gometeo: 72 listWindows rundate:20190912.00 RUNNING 2019-09-12 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 1 ndt: 7 idate: 2019-09-12 12:00:00 running case from 2019-09-12 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190912.12 RUNNING 2019-09-12 12:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 2 ndt: 7 idate: 2019-09-13 00:00:00 running case from 2019-09-13 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.00 RUNNING 2019-09-13 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 3 ndt: 7 idate: 2019-09-13 12:00:00 running case from 2019-09-13 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190913.12 RUNNING 2019-09-13 12:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 4 ndt: 7 idate: 2019-09-14 00:00:00 running case from 2019-09-14 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190914.00 RUNNING 2019-09-14 00:00:00 for 72 hours Nothing to do, case already completed ret= -3 newcase= False forceFinal= False forceBulletin= False netcdf already created it: 5 ndt: 7 idate: 2019-09-14 12:00:00 running case from 2019-09-14 12:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190914.12 RUNNING 2019-09-14 12:00:00 for 72 hours Calculation already submitted (file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/submittedrain.txt ) **exiting** ret= -1 newcase= False forceFinal= False forceBulletin= False another job is running, thus I stop here ..1.1 calling ECMWF_2_netcdf... ...ready to create the netcdf file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc ...opening grib file /mnt/input/grib/2019/09/14/20190914.12.precip.grib ('lon0<0', -87.4) shiftGrid=True ...nt= 72 ...creating nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp open netCDF file: ....writing lat, lon createnc ok ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ...appending nc file: 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/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190914.12_rain.nc.tmp ret= 0 removing submitted ret= 0 newcase= True forceFinal= False forceBulletin= False it: 6 ndt: 7 idate: 2019-09-15 00:00:00 running case from 2019-09-15 00:00:00 for 72 h start= 0 var rain **** gometeo: 72 listWindows rundate:20190915.00 RUNNING 2019-09-15 00:00:00 for 72 hours ============================================ process meteo ============================================ 1. process meteo, starting at 2019-09-15 12:41:52.405777 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 ..1.1 calling ECMWF_2_netcdf... ...ready to create the netcdf file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc ...opening grib file /mnt/input/grib/2019/09/15/20190915.00.precip.grib ('lon0<0', -87.4) shiftGrid=True ...nt= 72 ...creating nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp open netCDF file: ....writing lat, lon createnc ok ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: 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/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ...appending nc file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/netcdf/20190915.00_rain.nc.tmp ret= 0 removing submitted ret= 0 newcase= True forceFinal= False forceBulletin= False home dir /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/ ret 0 classifications ============================================ 1. Set INPUT/OUTPUT ============================================ startdate 2019-09-12 00:00:00 currdate 2019-09-15 00:00:00 ndt: 72 delta: 12 nt1=delta 12 nt 72 alldate: DatetimeIndex(['2019-09-12 00:00:00', '2019-09-12 12:00:00', '2019-09-13 00:00:00', '2019-09-13 12:00:00', '2019-09-14 00:00:00', '2019-09-14 12:00:00', '2019-09-15 00:00:00'], dtype='datetime64[ns]', freq='12H') ============================================ 2. Processing meteo files: nc2tif ============================================ >> 2.1. Process curr + past files processing curr bull... 2019-09-15 00:00:00 forcing ECMWF verifying that input file is present start reading nc... rain use all data in nc file nt,nx,ny, ntmax 72 326 506 73 nt,nx,ny, ntmax 72 326 506 73 forcing ECMWF >> 0. SET INPUT/OUTPUT ECMWF /mnt/output/GDACS/TC/TCTrack/1000599/ECMWF/2019091500/all_inpData.txt error track file-->map without track trackfile 0 -87.3982008205 -51.8903574917 17.3286464078 40.1757460021 lon 506 lat 326 savemap /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain.jpg processing all past bull only if Past=True... True itdate, istime 2019-09-12 00:00:00 20190912.00 forcing ECMWF verifying that input file is present start reading nc... rain use all data in nc file nt,nx,ny, ntmax 72 326 506 73 nt,nx,ny, ntmax 72 326 506 73 forcing ECMWF >> 0. SET INPUT/OUTPUT ECMWF /mnt/output/GDACS/TC/TCTrack/1000599/ECMWF/2019091200/all_inpData.txt error track file-->map without track trackfile 0 -87.3982008205 -51.8903574917 17.3286464078 40.1757460021 lon 506 lat 326 savemap /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain.jpg itdate, istime 2019-09-12 12:00:00 20190912.12 forcing ECMWF verifying that input file is present start reading nc... rain use all data in nc file nt,nx,ny, ntmax 72 326 506 73 nt,nx,ny, ntmax 72 326 506 73 forcing ECMWF >> 0. SET INPUT/OUTPUT ECMWF /mnt/output/GDACS/TC/TCTrack/1000599/ECMWF/2019091212/all_inpData.txt error track file-->map without track trackfile 0 -87.3982008205 -51.8903574917 17.3286464078 40.1757460021 lon 506 lat 326 savemap /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain.jpg itdate, istime 2019-09-13 00:00:00 20190913.00 forcing ECMWF verifying that input file is present start reading nc... rain use all data in nc file nt,nx,ny, ntmax 72 326 506 73 nt,nx,ny, ntmax 72 326 506 73 forcing ECMWF >> 0. SET INPUT/OUTPUT ECMWF /mnt/output/GDACS/TC/TCTrack/1000599/ECMWF/2019091300/all_inpData.txt error track file-->map without track trackfile 0 -87.3982008205 -51.8903574917 17.3286464078 40.1757460021 lon 506 lat 326 savemap /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain.jpg itdate, istime 2019-09-13 12:00:00 20190913.12 forcing ECMWF verifying that input file is present start reading nc... rain use all data in nc file nt,nx,ny, ntmax 72 326 506 73 nt,nx,ny, ntmax 72 326 506 73 forcing ECMWF >> 0. SET INPUT/OUTPUT ECMWF /mnt/output/GDACS/TC/TCTrack/1000599/ECMWF/2019091312/all_inpData.txt error track file-->map without track trackfile 0 -87.3982008205 -51.8903574917 17.3286464078 40.1757460021 lon 506 lat 326 savemap /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain.jpg itdate, istime 2019-09-14 00:00:00 20190914.00 forcing ECMWF verifying that input file is present start reading nc... rain use all data in nc file nt,nx,ny, ntmax 72 326 506 73 nt,nx,ny, ntmax 72 326 506 73 forcing ECMWF >> 0. SET INPUT/OUTPUT ECMWF /mnt/output/GDACS/TC/TCTrack/1000599/ECMWF/2019091400/all_inpData.txt error track file-->map without track trackfile 0 -87.3982008205 -51.8903574917 17.3286464078 40.1757460021 lon 506 lat 326 savemap /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain.jpg itdate, istime 2019-09-14 12:00:00 20190914.12 forcing ECMWF verifying that input file is present start reading nc... rain use all data in nc file nt,nx,ny, ntmax 72 326 506 73 nt,nx,ny, ntmax 72 326 506 73 forcing ECMWF >> 0. SET INPUT/OUTPUT ECMWF /mnt/output/GDACS/TC/TCTrack/1000599/ECMWF/2019091412/all_inpData.txt error track file-->map without track trackfile 0 -87.3982008205 -51.8903574917 17.3286464078 40.1757460021 lon 506 lat 326 savemap /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain.jpg >> 2.2. Process final data files compfile /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/20190915.00_Final_completed_rain.txt FINAL alldate: DatetimeIndex(['2019-09-12 00:00:00', '2019-09-12 12:00:00', '2019-09-13 00:00:00', '2019-09-13 12:00:00', '2019-09-14 00:00:00', '2019-09-14 12:00:00', '2019-09-15 00:00:00'], dtype='datetime64[ns]', freq='12H') alldate.shape 7 date: 2019-09-12 12:00:00 python /mnt/output/SSCS/scripts/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain_stept0.tif -B /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-09-13 00:00:00 python /mnt/output/SSCS/scripts/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-09-13 12:00:00 python /mnt/output/SSCS/scripts/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-09-14 00:00:00 python /mnt/output/SSCS/scripts/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-09-14 12:00:00 python /mnt/output/SSCS/scripts/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain_stept0.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif --calc="(A+B)" date: 2019-09-15 00:00:00 python /mnt/output/SSCS/scripts/gdal_calc.py -A /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif -B /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain.tif --outfile=/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif --calc="(A+B)" max file created /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif stormname stormname TCbullsource >> 0. SET INPUT/OUTPUT ECMWF /mnt/output/GDACS/TC/TCTrack/1000599/ECMWF/2019091500/all_inpData.txt error track file-->map without track trackfile 0 -87.3632008205 -52.0132008205 17.3907460021 40.1407460021 lon 506 lat 326 savemap /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_FINAL.jpg ret: 0 ============================================ 3. Classify meteo + GDACS index score ============================================ >> 3.1. Classify curr + past forecast Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//rain_res_stept0.tif. 0Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//rain_res_stept0.tif. 0..Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//rain_res_stept0.tif. 0......1010...10......2020...20......3030...30......4040...40......5050...50......6060...60......7070...70......8080...80......9090...90.......100 - done. 100 - done. 100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190912.00//rain_popfile_stept0_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190913.00//rain_popfile_stept0_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190912.12//rain_popfile_stept0_clipped.tif. 0.........101010........20.20.20.......30.30.30.......40.40.40.......50.5050.........606060.........707070.........808080.........909090.........100 - done. 100 - done. 100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190912.00//rain_countryfile_stept0_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190912.12//rain_countryfile_stept0_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190913.00//rain_countryfile_stept0_clipped.tif. 0.........101010.........202020.........3030.30.......40.40.40.......50.50.50.......60.60.60.......70.70.70.......80.80.80.......90.90.90........100 - done. 100 - done. 100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12/rain_popDensValues_stept0.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00/rain_popDensValues_stept0.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00/rain_popDensValues_stept0.xml >> 7. remove files done lim core Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//rain_res_stept0.tif. 0.Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//rain_res_stept0.tif. 0Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//rain_res_stept0.tif. 0......10...1010......20...2020......30...3030......40...4040......50...5050.....60....60.60....70.....7070...80......8080...90......9090.......100 - done. 100 - done. 100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190914.00//rain_popfile_stept0_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190914.12//rain_popfile_stept0_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190913.12//rain_popfile_stept0_clipped.tif. 0.........101010.........202020.........303030.........404040.........505050...60.........606070.........707080.........808090.........9090......100 - done. 100 - done. 100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190914.00//rain_countryfile_stept0_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190913.12//rain_countryfile_stept0_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190914.12//rain_countryfile_stept0_clipped.tif. 0.........101010.........202020.........303030.........404040.........505050.........606060.........707070.........808080.........909090.........100 - done. 100 - done. 100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12/rain_popDensValues_stept0.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12/rain_popDensValues_stept0.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00/rain_popDensValues_stept0.xml >> 7. remove files done lim core Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain_stept0.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain_stept0.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain_stept0.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//rain_res_stept0.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190915.00//rain_popfile_stept0_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190915.00//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/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain_stept0.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//rain_popfile_stept0_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//rain_countryfile_stept0_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//rain_countryfile_stept0_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 cellsize 0.00833333333333 >> 6. print / save output in /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00/rain_popDensValues_stept0.xml >> 7. remove files done t0 completed Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//rain_res_all.tif. 0Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//rain_res_all.tif. 0.....Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//rain_res_all.tif. 0.10.10.......10.20.20.......20.30.30.......30.40.40.......40.50.50.......50.60.60.......60.70.70.......70.80.80.......80..9090......90.....100 - done. 100 - done. 100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190912.00//rain_popfile_all_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190913.00//rain_popfile_all_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190912.12//rain_popfile_all_clipped.tif. 0.........101010.........202020.........303030.........404040.........505050......60....60.60....70....70.70....80....80.80....90....90.90.......100 - done. 100 - done. 100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190913.00//rain_countryfile_all_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190912.12//rain_countryfile_all_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190912.00//rain_countryfile_all_clipped.tif. 0.........101010.........202020.........303030.........404040.........505050.........606060.........707070.........808080.........909090.........100 - done. 100 - done. 100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 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/1000599/4_ECMWF/class/20190913.00/rain_popDensValues_all.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 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/1000599/4_ECMWF/class/20190912.12/rain_popDensValues_all.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 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/1000599/4_ECMWF/class/20190912.00/rain_popDensValues_all.xml >> 7. remove files done lim core Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//rain_res_all.tif. 0Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//rain_res_all.tif. 0Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//rain_res_all.tif. 0.........101010.........202020.........303030.........404040.........505050.........606060.........707070.........808080.........909090.........100 - done. 100 - done. 100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190913.12//rain_popfile_all_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190914.00//rain_popfile_all_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190914.12//rain_popfile_all_clipped.tif. 0.........101010.........202020.........303030.........404040.........505050.........606060.........707070.........808080.........909090.........100 - done. 100 - done. 100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190914.00//rain_countryfile_all_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190913.12//rain_countryfile_all_clipped.tif. 0Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190914.12//rain_countryfile_all_clipped.tif. 0.........101010.........202020.........303030.........404040.........505050.........606060.........707070.........808080.........909090.........100 - done. 100 - done. 100 - done. input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 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/1000599/4_ECMWF/class/20190914.12/rain_popDensValues_all.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 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/1000599/4_ECMWF/class/20190913.12/rain_popDensValues_all.xml >> 7. remove files done input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 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/1000599/4_ECMWF/class/20190914.00/rain_popDensValues_all.xml >> 7. remove files done lim core Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain.tif. Using internal nodata values (e.g. -999) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//rain_res_all.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190915.00//rain_popfile_all_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/20190915.00//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/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//rain_popfile_all_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//rain_countryfile_all_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00//rain_countryfile_all_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 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/1000599/4_ECMWF/class/20190915.00/rain_popDensValues_all.xml >> 7. remove files done Creating output file that is 4250P x 2738L. Processing input file /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif. Using internal nodata values (e.g. 3.40282e+38) for image /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif. Copying nodata values from source /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif to destination /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/final//rain_res_final.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/class/final//rain_popfile_final_clipped.tif. 0...10...20...30...40...50...60...70...80...90...100 - done. Creating output file that is 4250P x 2738L. 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/1000599/4_ECMWF/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/1000599/4_ECMWF/class/20190912.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190912.00/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190912.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.00/20190912.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190912.00/rain.jpg copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190912.12/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190912.12/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190912.12/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190912.12/20190912.12_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190912.12/rain.jpg copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190913.00/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190913.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.00/20190913.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190913.00/rain.jpg copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190913.12/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190913.12/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190913.12/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190913.12/20190913.12_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190913.12/rain.jpg copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190914.00/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190914.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.00/20190914.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190914.00/rain.jpg copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190914.12/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190914.12/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190914.12/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190914.12/20190914.12_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190914.12/rain.jpg copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00/rain_popDensValues_stept0.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190915.00/rain_popDensValues_t0.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/20190915.00/rain_popDensValues_all.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190915.00/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/20190915.00/20190915.00_rain.jpg in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/20190915.00/rain.jpg >> 3.2. Classify final folder /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/final/20190915.00_final_completed_rain.txt input var: rain Input File: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_final.tif hurName: hdate: var: rain description: rain: _ (ECMWF) OutDir: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/final// PopFile: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/final//rain_popfile_final_clipped.tif country: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/final//rain_countryfile_final_clipped.tif outxml file: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 ECMWF /usr/bin/gdalwarp -te -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/lspop20141.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/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 -87.3982008205 17.3590793354 -51.9815341538 40.1757460021 "/mnt/output/GDACS/DATA/countries.tif" "/mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/final//rain_countryfile_final_clipped.tif" >> 4. classify the vmax file creating another array of values classified cellsize 0.00833333333333 cellsize 0.00833333333334 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/1000599/4_ECMWF/class/final/rain_popDensValues_final.xml >> 7. remove files done copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/class/final/rain_popDensValues_final.xml in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/final/rain_popDensValues.xml copy: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/tif/final/rain_FINAL.jpg in: /mnt/output/SSCS/2019/GDACS/1000599/4_ECMWF/delft3d/final/rain.jpg ******************************************************* * Case Completed * ******************************************************* Case starterd at: 2019-09-15 10:44:05.897328 UTC Case completed at: 2019-09-15 13:06:45.200633 UTC **********E N D O F J O B***********************