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New BNU soil type and VIIRS vegetation type data #843

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f9e63a3
Add logic to ignore soil and clay percentage records.
GeorgeGayno-NOAA May 5, 2023
26eeef1
Merge branch 'develop' into bugfix/bnu_soil
GeorgeGayno-NOAA May 31, 2023
ecf2442
Update documentation and script logs for new files.
GeorgeGayno-NOAA Jun 1, 2023
400cc13
Merge branch 'develop' into bugfix/bnu_soil
GeorgeGayno-NOAA Aug 11, 2023
084d51c
Some script updates.
GeorgeGayno-NOAA Aug 14, 2023
98caf8b
Update orion driver script to use additional resources
GeorgeGayno-NOAA Aug 15, 2023
6179b24
Update jet grid driver script to request more resources
GeorgeGayno-NOAA Aug 15, 2023
fc17593
Minor updates to the wcoss2 driver grid script.
GeorgeGayno-NOAA Aug 15, 2023
22dadfe
Merge branch 'develop' into bugfix/bnu_soil
GeorgeGayno-NOAA Aug 16, 2023
6f3fe9e
Update some script comments. Update sfc_climo_gen script to use
GeorgeGayno-NOAA Aug 16, 2023
64fdfd7
Update comments in the sfc_climo_gen utility script.
GeorgeGayno-NOAA Aug 16, 2023
d1e4f51
Update "c96.viirs.vegt" regression test to use the new
GeorgeGayno-NOAA Aug 18, 2023
54b88b6
Update "c96.viirs.vegt" test to use new BNU soil
GeorgeGayno-NOAA Aug 18, 2023
cf4cda9
Rename "c96.viirs.vegt" test to "c96.viirs.bnu".
GeorgeGayno-NOAA Aug 18, 2023
093b3e3
Merge branch 'develop' into bugfix/bnu_soil
GeorgeGayno-NOAA Aug 21, 2023
4bc4e85
Adjust requested resources for Orion grid_gen regression
GeorgeGayno-NOAA Aug 21, 2023
397cd43
Request additional resources for Jet grid_gen regression
GeorgeGayno-NOAA Aug 21, 2023
5ea89bc
Update 'readthedocs' for the new substrate temperature data.
GeorgeGayno-NOAA Aug 21, 2023
76a3b02
Update for 'v3' of data.
GeorgeGayno-NOAA Sep 21, 2023
1e7c9fc
Increase stack size for creating grids on Orion.
GeorgeGayno-NOAA Sep 22, 2023
62294be
Update link_fixdirs.sh to point to new fixed data directory
GeorgeGayno-NOAA Sep 26, 2023
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11 changes: 3 additions & 8 deletions docs/source/ufs_utils.rst
Original file line number Diff line number Diff line change
Expand Up @@ -528,7 +528,7 @@ The surface climatological data is located here `./fix/fix_sfc_climo <https://no

* Global 1-degree fractional coverage strong/weak zenith angle albedo - facsf.1.0.nc
* Global 0.05-degree maximum snow albedo - maximum_snow_albedo.0.05.nc
* Global 2.6 x 1.5-degree soil substrate temperature - substrate_temperature.2.6x1.5.nc
* Global 0.5-degree soil substrate temperature - substrate_temperature.gfs.0.5.nc
* Global 0.05-degree four component monthly snow-free albedo - snowfree_albedo.4comp.0.05.nc
* Global 1.0-degree categorical slope type - slope_type.1.0.nc
* Global 0.05-degree CLM soil color (Lawrence and Chase, 2007 JGR) - soil_color.clm.0.05.nc
Expand All @@ -539,19 +539,14 @@ The surface climatological data is located here `./fix/fix_sfc_climo <https://no
* N Hemis 30 sec - soil_type.statsgo.nh.30s.nc
* Global 30 sec - soil_type.statsgo.30s.nc
* Categorical BNU soil type
* Global 30-second - soil_type.bnu.30s.nc
* Global 30-second - soil_type.bnu.v3.30s.nc
* Categorical IGBP vegetation type
* MODIS-based global 0.05-degree - vegetation_type.modis.igbp.0.05.nc
* MODIS-based global 0.03-degree - vegetation_type.modis.igbp.0.03.nc
* MODIS-based CONUS 30 sec - vegetation_type.modis.igbp.conus.30s.nc
* MODIS-based N Hemis 30 sec - vegetation_type.modis.igbp.nh.30s.nc
* MODIS-based global 30 sec - vegetation_type.modis.igbp.30s.nc
* NESDIS VIIRS-based global 0.10-degree - vegetation_type.viirs.igbp.0.1.nc
* NESDIS VIIRS-based global 0.05-degree - vegetation_type.viirs.igbp.0.05.nc
* NESDIS VIIRS-based global 0.03-degree - vegetation_type.viirs.igbp.0.03.nc
* NESDIS VIIRS-based CONUS 30-second - vegetation_type.viirs.igbp.conus.30s.nc
* NESDIS VIIRS-based N HEMIS 30-second - vegetation_type.viirs.igbp.nh.30s.nc
* NESDIS VIIRS-based global 30-second - vegetation_type.viirs.igbp.30s.nc
* NESDIS VIIRS-based global 30-second - vegetation_type.viirs.v3.igbp.30s.nc
* Global 0.144-degree monthly vegetation greenness in percent - vegetation_greenness.0.144.nc

The files that define the model grid. All NetCDF.
Expand Down
15 changes: 5 additions & 10 deletions driver_scripts/driver_grid.hera.sh
Original file line number Diff line number Diff line change
Expand Up @@ -6,7 +6,7 @@
#SBATCH -o log.fv3_grid_driver
#SBATCH -e log.fv3_grid_driver
#SBATCH --nodes=1 --ntasks-per-node=24
##SBATCH --partition=bigmem
#SBATCH --partition=bigmem
#SBATCH -q debug
#SBATCH -t 00:20:00

Expand Down Expand Up @@ -86,30 +86,25 @@ export vegsoilt_frac='.false.' # When .false., output dominant soil and
# the dominant category. A Fortran logical,
# so include the dots.

export veg_type_src="modis.igbp.0.05" # Vegetation type data.
export veg_type_src="viirs.v3.igbp.30s" # Vegetation type data.
# For viirs-based vegetation type data, set to:
# 1) "viirs.igbp.0.1" for global 0.10-deg data
# 2) "viirs.igbp.0.05" for global 0.05-deg data
# 3) "viirs.igbp.0.03" for global 0.03-deg data
# 4) "viirs.igbp.conus.30s" for CONUS 30s data
# 5) "viirs.igbp.nh.30s" for NH 30s data
# 6) "viirs.igbp.30s" for global 30s data
# 1) "viirs.v3.igbp.30s" for global 30s data
# For the modis-based data, set to:
# 1) "modis.igbp.0.05" for global 0.05-deg data
# 2) "modis.igbp.0.03" for global 0.03-deg data
# 3) "modis.igbp.conus.30s" for CONUS 30s data
# 4) "modis.igbp.nh.30s" for N Hemis 30s data
# 5) "modis.igbp.30s" for global 30s data

export soil_type_src="statsgo.0.05" # Soil type data.
export soil_type_src="bnu.v3.30s" # Soil type data.
# For STATSGO data
# 1) "statsgo.0.05" for global 0.05-deg data
# 2) "statsgo.0.03" for global 0.03-deg data
# 3) "statsgo.conus.30s" for CONUS 30s data
# 4) "statsgo.nh.30s" for NH 30s data
# 5) "statsgo.30s" for global 30s data
# For Beijing Norm. Univ. data
# 1) "bnu.30s" for global 30s data.
# 1) "bnu.v3.30s" for global 30s data.

if [ $gtype = uniform ]; then
export res=96
Expand Down
21 changes: 8 additions & 13 deletions driver_scripts/driver_grid.jet.sh
Original file line number Diff line number Diff line change
Expand Up @@ -5,10 +5,10 @@
#SBATCH --open-mode=truncate
#SBATCH -o log.fv3_grid_driver
#SBATCH -e log.fv3_grid_driver
#SBATCH --nodes=1 --ntasks-per-node=24
#SBATCH --nodes=3 --ntasks-per-node=10
#SBATCH --partition=xjet
#SBATCH -q batch
#SBATCH -t 00:10:00
#SBATCH -q debug
#SBATCH -t 00:30:00

#-----------------------------------------------------------------------
# Driver script to create a cubic-sphere based model grid on Jet.
Expand Down Expand Up @@ -84,30 +84,25 @@ export vegsoilt_frac='.false.' # When true, outputs percent of each
# outputs the dominant category. A
# Fortran logical, so include the dots.

export veg_type_src="modis.igbp.0.05" # Vegetation type data.
export veg_type_src="viirs.v3.igbp.30s" # Vegetation type data.
# For viirs-based vegetation type data, set to:
# 1) "viirs.igbp.0.1" for global 0.10-deg data
# 2) "viirs.igbp.0.05" for global 0.05-deg data
# 3) "viirs.igbp.0.03" for global 0.03-deg data
# 4) "viirs.igbp.conus.30s" for CONUS 30s data
# 5) "viirs.igbp.nh.30s" for NH 30s data
# 6) "viirs.igbp.30s" for global 30s data
# 1) "viirs.v3.igbp.30s" for global 30s data
# For the modis-based data, set to:
# 1) "modis.igbp.0.05" for global 0.05-deg data
# 2) "modis.igbp.0.03" for global 0.03-deg data
# 3) "modis.igbp.conus.30s" for CONUS 30s data
# 4) "modis.igbp.nh.30s" for N Hemis 30s data
# 5) "modis.igbp.30s" for global 30s data

export soil_type_src="statsgo.0.05" # Soil type data.
export soil_type_src="bnu.v3.30s" # Soil type data.
# For Beijing Normal Univ. data, set to:
# 1) "bnu.v3.30s" for global 30s data.
# For STATSGO soil type data, set to:
# 1) "statsgo.0.05" for global 0.05-deg data
# 2) "statsgo.0.03" for global 0.03-deg data
# 3) "statsgo.conus.30s" for CONUS 30s data
# 4) "statsgo.nh.30s" for NH 30s data
# 5) "statsgo.30s" for global 30s data
# For Beijing Normal Univ. data, set to:
# 1) "bnu.30s" for global 30s data.

if [ $gtype = uniform ]; then
export res=96
Expand Down
21 changes: 8 additions & 13 deletions driver_scripts/driver_grid.orion.sh
Original file line number Diff line number Diff line change
Expand Up @@ -5,7 +5,7 @@
#SBATCH --open-mode=truncate
#SBATCH -o log.fv3_grid_driver
#SBATCH -e log.fv3_grid_driver
#SBATCH --nodes=1 --ntasks-per-node=24
#SBATCH --nodes=2 --ntasks-per-node=15
#SBATCH -q debug
#SBATCH -t 00:30:00

Expand Down Expand Up @@ -71,7 +71,7 @@ module list
# Set grid specs here.
#-----------------------------------------------------------------------

export gtype=regional_esg # 'uniform', 'stretch', 'nest',
export gtype=uniform # 'uniform', 'stretch', 'nest',
# 'regional_gfdl', 'regional_esg'

export make_gsl_orog=false # When 'true' will output 'oro' files for
Expand All @@ -83,30 +83,25 @@ export vegsoilt_frac='.false.' # When true, outputs percent of each
# outputs the dominant category. A
# Fortran logical, so include the dots.

export veg_type_src="modis.igbp.0.05" # Vegetation type data.
export veg_type_src="viirs.v3.igbp.30s" # Vegetation type data.
# For viirs-based vegetation type data, set to:
# 1) "viirs.igbp.0.1" for global 0.10-deg data
# 2) "viirs.igbp.0.05" for global 0.05-deg data
# 3) "viirs.igbp.0.03" for global 0.03-deg data
# 4) "viirs.igbp.conus.30s" for CONUS 30s data
# 5) "viirs.igbp.nh.30s" for NH 30s data
# 6) "viirs.igbp.30s" for global 30s data
# 1) "viirs.v3.igbp.30s" for global 30s data
# For the modis-based data, set to:
# 1) "modis.igbp.0.05" for global 0.05-deg data
# 2) "modis.igbp.0.03" for global 0.03-deg data
# 3) "modis.igbp.conus.30s" for CONUS 30s data
# 4) "modis.igbp.nh.30s" for N Hemis 30s data
# 5) "modis.igbp.30s" for global 30s data

export soil_type_src="statsgo.0.05" # Soil type data.
export soil_type_src="bnu.v3.30s" # Soil type data.
# For Beijing Normal Univ. data, set to:
# 1) "bnu.v3.30s" for global 30s data.
# For STATSGO soil type data, set to:
# 1) "statsgo.0.05" for global 0.05-deg data
# 2) "statsgo.0.03" for global 0.03-deg data
# 3) "statsgo.conus.30s" for CONUS 30s data
# 4) "statsgo.nh.30s" for NH 30s data
# 5) "statsgo.30s" for global 30s data
# For Beijing Normal Univ. data, set to:
# 1) "bnu.30s" for global 30s data.

if [ $gtype = uniform ]; then
export res=96
Expand Down Expand Up @@ -166,7 +161,7 @@ export OMP_NUM_THREADS=24
export OMP_STACKSIZE=2048m

ulimit -a
ulimit -s 199000000
ulimit -s unlimited

#-----------------------------------------------------------------------
# Start script.
Expand Down
19 changes: 7 additions & 12 deletions driver_scripts/driver_grid.wcoss2.sh
Original file line number Diff line number Diff line change
Expand Up @@ -4,7 +4,7 @@
#PBS -e log
#PBS -q debug
#PBS -A GFS-DEV
#PBS -l walltime=00:15:00
#PBS -l walltime=00:30:00
#PBS -N make_grid
#PBS -l select=1:ncpus=24:mem=500GB

Expand Down Expand Up @@ -70,7 +70,7 @@ module list
# Set grid specs here.
#-----------------------------------------------------------------------

export gtype=regional_esg # 'uniform', 'stretch', 'nest',
export gtype=uniform # 'uniform', 'stretch', 'nest',
# 'regional_gfdl', 'regional_esg'

export make_gsl_orog=false # When 'true' will output 'oro' files for
Expand All @@ -82,30 +82,25 @@ export vegsoilt_frac='.false.' # When true, outputs percent of each
# outputs the dominant category. A
# Fortran logical, so include the dots.

export veg_type_src="modis.igbp.0.05" # Vegetation type data.
export veg_type_src="viirs.v3.igbp.30s" # Vegetation type data.
# For viirs-based vegetation type data, set to:
# 1) "viirs.igbp.0.1" for global 0.10-deg data
# 2) "viirs.igbp.0.05" for global 0.05-deg data
# 3) "viirs.igbp.0.03" for global 0.03-deg data
# 4) "viirs.igbp.conus.30s" for CONUS 30s data
# 5) "viirs.igbp.nh.30s" for NH 30s data
# 6) "viirs.igbp.30s" for global 30s data
# 1) "viirs.v3.igbp.30s" for global 30s data
# For the modis-based data, set to:
# 1) "modis.igbp.0.05" for global 0.05-deg data
# 2) "modis.igbp.0.03" for global 0.03-deg data
# 3) "modis.igbp.conus.30s" for CONUS 30s data
# 4) "modis.igbp.nh.30s" for N Hemis 30s data
# 5) "modis.igbp.30s" for global 30s data

export soil_type_src="statsgo.0.05" # Soil type data
export soil_type_src="bnu.v3.30s" # Soil type data
# For Beijing Normal Univ. data, set to:
# 1) "bnu.v3.30s" for global 30s data.
# For STATSGO soil type data, set to:
# 1) "statsgo.0.05" for global 0.05-deg data
# 2) "statsgo.0.03" for global 0.03-deg data
# 3) "statsgo.conus.30s" for CONUS 30s data
# 4) "statsgo.nh.30s" for NH 30s data
# 5) "statsgo.30s" for global 30s data
# For Beijing Normal Univ. data, set to:
# 1) "bnu.30s" for global 30s data.

if [ $gtype = uniform ]; then
export res=96
Expand Down
2 changes: 1 addition & 1 deletion fix/link_fixdirs.sh
Original file line number Diff line number Diff line change
Expand Up @@ -58,7 +58,7 @@ fi

am_ver=${am_ver:-20220805}
orog_ver=${orog_ver:-20220805}
sfc_climo_ver=${sfc_climo_ver:-20221017}
sfc_climo_ver=${sfc_climo_ver:-20230925}

for dir in am orog orog_raw sfc_climo; do
if [ -d $dir ]; then
Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -2,19 +2,20 @@

#-----------------------------------------------------------------------
# Create a C96 global uniform grid using VIIRS-based vegetation type
# data. Compare output to a set of baseline files using the
# 'nccmp' utility. This script is run by the machine specific
# driver script.
# data and BNU soil type data. Compare output to a set of baseline
# files using the 'nccmp' utility. This script is run by the machine
# specific driver script.
#-----------------------------------------------------------------------

set -x

export TEMP_DIR=${WORK_DIR}/c96.viirs.vegt.work
export out_dir=${WORK_DIR}/c96.viirs.vegt
export TEMP_DIR=${WORK_DIR}/c96.viirs.bnu.work
export out_dir=${WORK_DIR}/c96.viirs.bnu

export res=96
export gtype=uniform
export veg_type_src="viirs.igbp.0.05"
export veg_type_src="viirs.v3.igbp.30s"
export soil_type_src="bnu.v3.30s"

NCCMP=${NCCMP:-$(which nccmp)}

Expand All @@ -29,7 +30,7 @@ $home_dir/ush/fv3gfs_driver_grid.sh
iret=$?
if [ $iret -ne 0 ]; then
set +x
echo "<<< C96 VIIRS VEGT FAILED. <<<"
echo "<<< C96 VIIRS BNU FAILED. <<<"
exit $iret
fi

Expand All @@ -46,7 +47,7 @@ for files in *tile*.nc ./fix_sfc/*tile*.nc
do
if [ -f $files ]; then
echo CHECK $files
$NCCMP -dmfqS $files $HOMEreg/c96.viirs.vegt/$files
$NCCMP -dmfqS $files $HOMEreg/c96.viirs.bnu/$files
iret=$?
if [ $iret -ne 0 ]; then
test_failed=1
Expand All @@ -56,12 +57,12 @@ done

set +x
if [ $test_failed -ne 0 ]; then
echo "<<< C96 VIIRS VEGT TEST FAILED. >>>"
echo "<<< C96 VIIRS BNU TEST FAILED. >>>"
if [ "$UPDATE_BASELINE" = "TRUE" ]; then
$home_dir/reg_tests/update_baseline.sh "${HOMEreg}/.." "c96.viirs.vegt" $commit_num
$home_dir/reg_tests/update_baseline.sh "${HOMEreg}/.." "c96.viirs.bnu" $commit_num
fi
else
echo "<<< C96 VIIRS VEGT TEST PASSED. >>>"
echo "<<< C96 VIIRS BNU TEST PASSED. >>>"
fi

exit 0
6 changes: 3 additions & 3 deletions reg_tests/grid_gen/driver.hera.sh
Original file line number Diff line number Diff line change
Expand Up @@ -70,12 +70,12 @@ TEST1=$(sbatch --parsable --ntasks-per-node=24 --nodes=1 -t 0:10:00 -A $PROJECT_
-o $LOG_FILE1 -e $LOG_FILE1 ./c96.uniform.sh)

#-----------------------------------------------------------------------------
# C96 uniform grid using viirs vegetation data.
# C96 uniform grid using viirs vegetation and bnu soil data.
#-----------------------------------------------------------------------------

LOG_FILE2=${LOG_FILE}02
TEST2=$(sbatch --parsable --ntasks-per-node=24 --nodes=1 -t 0:10:00 -A $PROJECT_CODE -q $QUEUE -J c96.viirs.vegt \
-o $LOG_FILE2 -e $LOG_FILE2 ./c96.viirs.vegt.sh)
TEST2=$(sbatch --parsable --ntasks-per-node=24 --nodes=1 -t 0:15:00 -A $PROJECT_CODE -q $QUEUE -J c96.viirs.bnu \
--partition=bigmem -o $LOG_FILE2 -e $LOG_FILE2 ./c96.viirs.bnu.sh)

#-----------------------------------------------------------------------------
# gfdl regional grid
Expand Down
6 changes: 3 additions & 3 deletions reg_tests/grid_gen/driver.jet.sh
Original file line number Diff line number Diff line change
Expand Up @@ -68,12 +68,12 @@ TEST1=$(sbatch --parsable --ntasks-per-node=24 --nodes=1 -t 0:10:00 -A $PROJECT_
--partition=xjet -o $LOG_FILE1 -e $LOG_FILE1 ./c96.uniform.sh)

#-----------------------------------------------------------------------------
# C96 uniform grid using viirs vegetation type data.
# C96 uniform grid using viirs vegetation type and bnu soil type data.
#-----------------------------------------------------------------------------

LOG_FILE2=${LOG_FILE}02
TEST2=$(sbatch --parsable --ntasks-per-node=24 --nodes=1 -t 0:10:00 -A $PROJECT_CODE -q $QUEUE -J c96.viirs.vegt \
--partition=xjet -o $LOG_FILE2 -e $LOG_FILE2 ./c96.viirs.vegt.sh)
TEST2=$(sbatch --parsable --ntasks-per-node=10 --nodes=3 -t 0:15:00 -A $PROJECT_CODE -q $QUEUE -J c96.viirs.bnu \
--partition=xjet -o $LOG_FILE2 -e $LOG_FILE2 ./c96.viirs.bnu.sh)

#-----------------------------------------------------------------------------
# gfdl regional grid
Expand Down
6 changes: 3 additions & 3 deletions reg_tests/grid_gen/driver.orion.sh
Original file line number Diff line number Diff line change
Expand Up @@ -66,12 +66,12 @@ TEST1=$(sbatch --parsable --ntasks-per-node=24 --nodes=1 -t 0:15:00 -A $PROJECT_
-o $LOG_FILE1 -e $LOG_FILE1 ./c96.uniform.sh)

#-----------------------------------------------------------------------------
# C96 uniform grid using viirs vegetation type data.
# C96 uniform grid using viirs vegetation and bnu soil type data.
#-----------------------------------------------------------------------------

LOG_FILE2=${LOG_FILE}02
TEST2=$(sbatch --parsable --ntasks-per-node=24 --nodes=1 -t 0:15:00 -A $PROJECT_CODE -q $QUEUE -J c96.viirs.vegt \
-o $LOG_FILE2 -e $LOG_FILE2 ./c96.viirs.vegt.sh)
TEST2=$(sbatch --parsable --ntasks-per-node=15 --nodes=2 -t 0:15:00 -A $PROJECT_CODE -q $QUEUE -J c96.viirs.bnu \
-o $LOG_FILE2 -e $LOG_FILE2 ./c96.viirs.bnu.sh)

#-----------------------------------------------------------------------------
# GFDL regional grid
Expand Down
6 changes: 3 additions & 3 deletions reg_tests/grid_gen/driver.wcoss2.sh
Original file line number Diff line number Diff line change
Expand Up @@ -71,12 +71,12 @@ TEST1=$(qsub -V -o $LOG_FILE1 -e $LOG_FILE1 -q $QUEUE -A $PROJECT_CODE -l wallti
-N c96.uniform -l select=1:ncpus=30:mem=40GB $PWD/c96.uniform.sh)

#-----------------------------------------------------------------------------
# C96 uniform grid using viirs vegetation data.
# C96 uniform grid using viirs vegetation and bnu soil type data.
#-----------------------------------------------------------------------------

LOG_FILE2=${LOG_FILE}02
TEST2=$(qsub -V -o $LOG_FILE2 -e $LOG_FILE2 -q $QUEUE -A $PROJECT_CODE -l walltime=00:10:00 \
-N c96.viirs.vegt -l select=1:ncpus=30:mem=40GB $PWD/c96.viirs.vegt.sh)
TEST2=$(qsub -V -o $LOG_FILE2 -e $LOG_FILE2 -q $QUEUE -A $PROJECT_CODE -l walltime=00:15:00 \
-N c96.viirs.bnu -l select=1:ncpus=30:mem=250GB $PWD/c96.viirs.bnu.sh)

#-----------------------------------------------------------------------------
# gfdl regional grid
Expand Down
2 changes: 1 addition & 1 deletion sorc/sfc_climo_gen.fd/search.f90
Original file line number Diff line number Diff line change
Expand Up @@ -76,7 +76,7 @@ subroutine search (field, mask, idim, jdim, tile, field_name)
case ('vegetation_type') ! vegetation type
default_value = float(3)
case default
print*,'- FATAL ERROR IN ROUTINE SEARCH. UNIDENTIFIED FIELD : ', field
print*,'- FATAL ERROR IN ROUTINE SEARCH. UNIDENTIFIED FIELD : ', field_name
call mpi_abort(mpi_comm_world, 77, ierr)
end select

Expand Down
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