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啊啊啊啊要疯辽啊,转wrf怎么都是只出现一个时次的wrfout,求大神解答这是为什么啊
分割线下面是运行wrf.exe后的rsl.error.0000文件:
--------------------------------------------------------------------------------------------------------------------------------------------------
taskid: 0 hostname: cmb03n19
module_io_quilt_old.F 2931 F
Quilting with 1 groups of 0 I/O tasks.
Ntasks in X 10 , ntasks in Y 16
--- WARNING: traj_opt is zero, but num_traj is not zero; setting num_traj to zero.
--- NOTE: sst_update is 0, setting io_form_auxinput4 = 0 and auxinput4_interval = 0 for all domains
--- NOTE: grid_fdda is 0 for domain 1, setting gfdda interval and ending time to 0 for that domain.
--- NOTE: both grid_sfdda and pxlsm_soil_nudge are 0 for domain 1, setting sgfdda interval and ending time to 0 for that domain.
--- NOTE: obs_nudge_opt is 0 for domain 1, setting obs nudging interval and ending time to 0 for that domain.
--- NOTE: bl_pbl_physics /= 4, implies mfshconv must be 0, resetting
Need MYNN PBL for icloud_bl = 1, resetting to 0
*************************************
No physics suite selected.
Physics options will be used directly from the namelist.
*************************************
--- NOTE: RRTMG radiation is in use, setting: levsiz=59, alevsiz=12, no_src_types=6
--- NOTE: num_soil_layers has been set to 4
WRF V3.9.1.1 MODEL
wrf: calling alloc_and_configure_domain
*************************************
Parent domain
ids,ide,jds,jde 1 301 1 201
ims,ime,jms,jme -4 37 -4 20
ips,ipe,jps,jpe 1 30 1 13
*************************************
DYNAMICS OPTION: Eulerian Mass Coordinate
alloc_space_field: domain 1 , 222745060 bytes allocated
wrf: calling model_to_grid_config_rec
wrf: calling set_scalar_indices_from_config
wrf: calling init_wrfio
Entering ext_gr1_ioinit
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
DEBUG wrf_timetoa(): returning with str = [2013-06-13_00:00:00]
DEBUG wrf_timeinttoa(): returning with str = [0000000000_000:000:018]
DEBUG setup_timekeeping(): clock after creation, clock start time = 2013-06-03_00:00:00
DEBUG setup_timekeeping(): clock after creation, clock current time = 2013-06-03_00:00:00
DEBUG setup_timekeeping(): clock after creation, clock stop time = 2013-06-13_00:00:00
DEBUG setup_timekeeping(): clock after creation, clock time step = 0000000000_000:000:018
setup_timekeeping: set xtime to 0.0000000000E+00
setup_timekeeping: set julian to 153.0000000
setup_timekeeping: returning...
wrf main: calling open_r_dataset for wrfinput
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
med_initialdata_input: calling input_input
mminlu = 'USGS'
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
DEBUG wrf_timetoa(): returning with str = [2013-06-13_00:00:00]
DEBUG wrf_timeinttoa(): returning with str = [0000000000_000:000:018]
DEBUG input_wrf(): get CurrTime from clock, clock start time = 2013-06-03_00:00:00
DEBUG input_wrf(): get CurrTime from clock, clock current time = 2013-06-03_00:00:00
DEBUG input_wrf(): get CurrTime from clock, clock stop time = 2013-06-13_00:00:00
DEBUG input_wrf(): get CurrTime from clock, clock time step = 0000000000_000:000:018
med_initialdata_input: back from input_input
Timing for processing wrfinput file (stream 0) for domain 1: 2.97569 elapsed seconds
checking boundary conditions for grid
boundary conditions OK for grid
Max map factor in domain 1 = 1.01. Scale the dt in the model accordingly.
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
DEBUG wrf_timetoa(): returning with str = [2013-06-13_00:00:00]
DEBUG wrf_timeinttoa(): returning with str = [0000000000_000:000:018]
DEBUG domain_setgmtetc(): get simStartTime from clock, clock start time = 2013-06-03_00:00:00
DEBUG domain_setgmtetc(): get simStartTime from clock, clock current time = 2013-06-03_00:00:00
DEBUG domain_setgmtetc(): get simStartTime from clock, clock stop time = 2013-06-13_00:00:00
DEBUG domain_setgmtetc(): get simStartTime from clock, clock time step = 0000000000_000:000:018
DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
DEBUG domain_setgmtetc(): simulation start time = [2013-06-03_00:00:00]
DEBUG domain_setgmtetc(): julyr,hr,mn,sec,ms,julday = 2013 0 0 0 0 154
DEBUG domain_setgmtetc(): gmt = 0.0000000000E+00
start_domain_em: Before call to phy_init
WRF TILE 1 IS 1 IE 30 JS 1 JE 13
set_tiles3: NUMBER OF TILES = 1
top of phy_init
phy_init: start_of_simulation = T
calling nl_get_iswater, nl_get_isice, nl_get_mminlu_loc
after nl_get_iswater, nl_get_isice, nl_get_mminlu_loc
module_start: phy_init: Before call to landuse_init
top of landuse_init
INPUT LandUse = "USGS"
LANDUSE TYPE = "USGS" FOUND 33 CATEGORIES 2 SEASONS WATER CATEGORY = 16 SNOW CATEGORY = 24
returning from of landuse_init
module_start: phy_init: Before call to ra_init
Do not have ozone. Must read it in.
Master rank reads ozone.
num_months = 13
Broadcast ozone to other ranks.
module_start: phy_init: Before call to bl_init
SOIL TEXTURE CLASSIFICATION = STAS FOUND 19 CATEGORIES
USING DEFAULT URBAN MORPHOLOGY
WARNING, FRC_URB2D = 0 BUT IVGTYP IS URBAN
WARNING, THE URBAN FRACTION WILL BE READ FROM URBPARM.TBL
USING DEFAULT URBAN MORPHOLOGY
WARNING, FRC_URB2D = 0 BUT IVGTYP IS URBAN
WARNING, THE URBAN FRACTION WILL BE READ FROM URBPARM.TBL
module_start: phy_init: Before call to cu_init
module_start: phy_init: Before call to shcu_init
module_start: phy_init: Before call to mp_init
Apparently there are no initial CCN aerosols.
checked column at point (i,j) = 1 1
Apparently there are no initial IN aerosols.
checked column at point (i,j) = 1 1
aerosol surface flux emission scale factor is: 0.1511718780
CREATING MICROPHYSICS LOOKUP TABLES ...
using: mu_c=12.00 mu_i= 0.00 mu_r= 0.00 mu_g= 0.00
calling table_ccnAct routine
module_mp_thompson: opening CCN_ACTIVATE.BIN on unit 20
creating qc collision eff tables
creating rain evap table
creating rain collecting graupel table
ThompMP: read qr_acr_qg.dat stead of computing
creating rain collecting snow table
ThompMP: read qr_acr_qs.dat instead of computing
creating freezing of water drops table
ThompMP: read freezeH2O.dat stead of computing
creating ice converting to snow table
... DONE microphysical lookup tables
module_start: phy_init: Before call to fg_init
module_start: phy_init: Before call to fdob_init
start_domain_em: After call to phy_init
start_em: calling lightning_init
start_em: after calling lightning_init
calling inc/HALO_EM_INIT_1_inline.inc
calling inc/HALO_EM_INIT_2_inline.inc
calling inc/HALO_EM_INIT_3_inline.inc
calling inc/HALO_EM_INIT_4_inline.inc
calling inc/HALO_EM_INIT_5_inline.inc
calling inc/PERIOD_BDY_EM_INIT_inline.inc
calling inc/PERIOD_BDY_EM_MOIST_inline.inc
calling inc/PERIOD_BDY_EM_TKE_inline.inc
calling inc/PERIOD_BDY_EM_SCALAR_inline.inc
calling inc/PERIOD_BDY_EM_CHEM_inline.inc
calling inc/HALO_EM_INIT_1_inline.inc
calling inc/HALO_EM_INIT_2_inline.inc
calling inc/HALO_EM_INIT_3_inline.inc
calling inc/HALO_EM_INIT_4_inline.inc
calling inc/HALO_EM_INIT_5_inline.inc
calling inc/PERIOD_BDY_EM_INIT_inline.inc
calling inc/PERIOD_BDY_EM_MOIST_inline.inc
calling inc/PERIOD_BDY_EM_TKE_inline.inc
calling inc/PERIOD_BDY_EM_SCALAR_inline.inc
calling inc/PERIOD_BDY_EM_CHEM_inline.inc
start_domain_em: Returning
wrf: calling integrate
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-13_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timeinttoa(): returning with str = [0000000000_000:000:018]
DEBUG: top of integrate(), clock start time = 2013-06-03_00:00:00
DEBUG: top of integrate(), clock current time = 2013-06-03_00:00:00
DEBUG: top of integrate(), clock stop time = 2013-06-13_00:00:00
DEBUG: top of integrate(), clock time step = 0000000000_000:000:018
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 open_hist_w : opening /cmb/g7/JOB_TMP/luoyl/sxy_control/wrfout_d01_2013-06-03_00:00:00 for writing.
d01 2013-06-03_00:00:00 calling wrf_open_for_write_begin in open_w_dataset
d01 2013-06-03_00:00:00 module_io.F: in wrf_open_for_write_begin, FileName = /cmb/g7/JOB_TMP/luoyl/sxy_control/wrfout_d01_2013-06-03_00:00:00
d01 2013-06-03_00:00:00 calling outsub in open_w_dataset
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-13_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timeinttoa(): returning with str = [0000000000_000:000:018]
DEBUG output_wrf(): before call to domain_clock_get, clock start time = 2013-06-03_00:00:00
DEBUG output_wrf(): before call to domain_clock_get, clock current time = 2013-06-03_00:00:00
DEBUG output_wrf(): before call to domain_clock_get, clock stop time = 2013-06-13_00:00:00
DEBUG output_wrf(): before call to domain_clock_get, clock time step = 0000000000_000:000:018
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 back from outsub in open_w_dataset
d01 2013-06-03_00:00:00 calling wrf_open_for_write_commit in open_w_dataset
d01 2013-06-03_00:00:00 Information: NOFILL being set for writing to /cmb/g7/JOB_TMP/luoyl/sxy_control/wrfout_d01_2013-06-03_00:00:00
d01 2013-06-03_00:00:00 back from wrf_open_for_write_commit in open_w_dataset
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-13_00:00:00]
d01 2013-06-03_00:00:00 DEBUG wrf_timeinttoa(): returning with str = [0000000000_000:000:018]
DEBUG output_wrf(): before call to domain_clock_get, clock start time = 2013-06-03_00:00:00
DEBUG output_wrf(): before call to domain_clock_get, clock current time = 2013-06-03_00:00:00
DEBUG output_wrf(): before call to domain_clock_get, clock stop time = 2013-06-13_00:00:00
DEBUG output_wrf(): before call to domain_clock_get, clock time step = 0000000000_000:000:018
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 med_hist_out: opened /cmb/g7/JOB_TMP/luoyl/sxy_control/wrfout_d01_2013-06-03_00:00:00 as DATASET=HISTORY
mediation_integrate.G 1728 DATASET=HISTORY
mediation_integrate.G 1729 grid%id 1 grid%oid 1
Timing for Writing /cmb/g7/JOB_TMP/luoyl/sxy_control/wrfout_d01_2013-06-03_00:00:00 for domain 1: 3.14825 elapsed seconds
d01 2013-06-03_00:00:00 in med_latbound_in
d01 2013-06-03_00:00:00 in med_latbound_in preparing to read
d01 2013-06-03_00:00:00 Opening: wrfbdy_d01
d01 2013-06-03_00:00:00 med_latbound_in: calling input_boundary
d01 2013-06-03_00:00:00 mminlu = 'USGS'
Timing for processing lateral boundary for domain 1: 4.27272 elapsed seconds
d01 2013-06-03_00:00:00 module_integrate: calling solve interface
Tile Strategy is not specified. Assuming 1D-Y
WRF TILE 1 IS 1 IE 30 JS 1 JE 13
WRF NUMBER OF TILES = 1
d01 2013-06-03_00:00:00 grid spacing, dt, time_step_sound= 3000.000000 18.00000000 4
d01 2013-06-03_00:00:00 call rk_step_prep
d01 2013-06-03_00:00:00 calling inc/HALO_EM_A_inline.inc
d01 2013-06-03_00:00:00 calling inc/PERIOD_BDY_EM_A_inline.inc
d01 2013-06-03_00:00:00 call rk_phys_bc_dry_1
d01 2013-06-03_00:00:00 call init_zero_tendency
d01 2013-06-03_00:00:00 calling inc/HALO_EM_PHYS_A_inline.inc
d01 2013-06-03_00:00:00 call phy_prep
d01 2013-06-03_00:00:00 DEBUG wrf_timetoa(): returning with str = [2013-06-03_00:00:00]
d01 2013-06-03_00:00:00 call radiation_driver
d01 2013-06-03_00:00:00 Grid spacing in km 3000.000000 3000.000000 4.242640972
d01 2013-06-03_00:00:00 Top of Radiation Driver
d01 2013-06-03_00:00:00 DEBUG: using gthompsn cloud fraction scheme
d01 2013-06-03_00:00:00 CALL rrtmg_lw
d01 2013-06-03_00:00:00 CALL rrtmg_sw
d01 2013-06-03_00:00:00 calling inc/HALO_PWP_inline.inc
d01 2013-06-03_00:00:00 call surface_driver
d01 2013-06-03_00:00:00 in MYJSFC
d01 2013-06-03_00:00:00 in NOAHMP DRV
d01 2013-06-03_00:00:00 call pbl_driver
d01 2013-06-03_00:00:00 in MYJPBL
d01 2013-06-03_00:00:00 call cumulus_driver
d01 2013-06-03_00:00:00 call shallow_cumulus_driver
d01 2013-06-03_00:00:00 calling inc/HALO_EM_FDDA_SFC_inline.inc
d01 2013-06-03_00:00:00 call fddagd_driver
d01 2013-06-03_00:00:00 call calculate_phy_tend
d01 2013-06-03_00:00:00 call compute_diff_metrics
d01 2013-06-03_00:00:00 calling inc/HALO_EM_TKE_C_inline.inc
d01 2013-06-03_00:00:00 calling inc/PERIOD_BDY_EM_A1_inline.inc
d01 2013-06-03_00:00:00 call bc for diffusion_metrics
d01 2013-06-03_00:00:00 call cal_deform_and_div
d01 2013-06-03_00:00:00 calling inc/HALO_EM_HELICITY_inline.inc
Communication statistics of task 0 is associated with task key: 416306652_0
搜到论坛里一个帖子,说是将前面的气象场重新处理一遍,可是我把前面的重新做过之后还是这样只出现一个时次的wrfout,求助啊
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