=======================================================================
Node 0: Using process grid (1,1,1)
Node 0: Well Information
Node 0: No Wells.
Using drv_clmin.dat start time 2018.0000000000000
CLM Start Time: 2018 1 1 0 0 0
Write CLM Active Restart: istep_pf = 1
CLM Active Restart Written: clm.rst.
=======================================================================
= BAD TERMINATION OF ONE OF YOUR APPLICATION PROCESSES
= RANK 0 PID 113054 RUNNING AT localhost.localdomain
= KILLED BY SIGNAL: 6 (Aborted)
=======================================================================
I used the same CLM parameter as in the washita case, where drv_clmin.dat changed the simulation time, drv_vegm.alluv.dat to my study area and write the relevant data, drv_vegp.dat hasn't changed anything,
The relevant CLM part of my TCL script is shown below.
#-----------------------------------------------------------------------------
# CLM Settings (based on Washita example)
#-----------------------------------------------------------------------------
pfset Solver.LSM CLM
pfset Solver.CLM.CLMFileDir "/home/zhuang/Parflow_dataset/5-Parflow-CLM/clm_output"
pfset Solver.CLM.Print1dOut True
pfset Solver.BinaryOutDir True
pfset Solver.CLM.CLMDumpInterval 8
pfset Solver.CLM.DailyRST True
pfset Solver.CLM.SingleFile True
pfset Solver.CLM.MetForcing 3D
pfset Solver.CLM.MetFileName "CMFD"
pfset Solver.CLM.MetFilePath "."
pfset Solver.CLM.MetFileNT 8
pfset Solver.CLM.IstepStart 1
pfset Solver.CLM.EvapBeta Linear
pfset Solver.CLM.VegWaterStress Saturation
pfset Solver.CLM.ResSat 0.1
pfset Solver.CLM.WiltingPoint 0.12
pfset Solver.CLM.FieldCapacity 0.98
pfset Solver.CLM.IrrigationType none
pfset Solver.CLM.RootZoneNZ 4
pfset Solver.CLM.SoiLayer 4
I look forward to your help and suggestions in your busy schedule, thank you very much.^v^ ^v^ ^v^