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- 1970-1-1
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发表于 2024-9-10 15:25:04
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这边复制了一下
taskid: 0 hostname: login01
Namelist logging not found in namelist.input. Using registry defaults for varia
bles in logging.
*** VARIATIONAL ANALYSIS ***
WRFDA V4.5
Ntasks in X 1 , ntasks in Y 1
*************************************
Parent domain
ids,ide,jds,jde 1 90 1 60
ims,ime,jms,jme -4 95 -4 65
ips,ipe,jps,jpe 1 90 1 60
*************************************
DYNAMICS OPTION: Eulerian Mass Coordinate
alloc_space_field: domain 1 , 362725528 bytes allocated
This input data is not V4: OUTPUT FROM REAL_EM V3.9pre#2 PREPROCESSOR
Input data is acceptable to use: fg02
hybrid_opt = -1
use_theta_m = 0
This input data is not V4: OUTPUT FROM REAL_EM V3.9pre#2 PREPROCESSOR
Input data is acceptable to use: fg
hybrid_opt = -1
use_theta_m = 0
This input data is not V4: OUTPUT FROM REAL_EM V3.9pre#2 PREPROCESSOR
Input data is acceptable to use: wrfbdy_d01
Timing for processing lateral boundary for domain 1: 0.00820 elapsed seconds
num_fgat_time is: 7
Tile Strategy is not specified. Assuming 1D-Y
WRF TILE 1 IS 1 IE 89 JS 1 JE 59
WRF NUMBER OF TILES = 1
Domain mapping info:
map_proj = 1
cen_lat = 0.400000E+02
cen_lon = -0.950000E+02
truelat1 = 0.300000E+02
truelat2 = 0.600000E+02
start_lat = 0.207406E+02
start_lon = -0.119501E+03
pole_lat = 0.900000E+02
dsm = 0.600000E+02
Set up observations (ob)
thin_conv_opt = 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
Using ASCII format observation input
Observation summary
ob time 1 num_ob_indexes= 29
sound 85 global, 85 local
synop 531 global, 525 local
pilot 84 global, 84 local
satem 78 global, 78 local
geoamv 730 global, 719 local
airep 128 global, 128 local
gpspw 183 global, 183 local
metar 1294 global, 1288 local
ships 47 global, 46 local
profiler 61 global, 61 local
buoy 265 global, 264 local
sonde_sfc 85 global, 85 local
ob time 2 num_ob_indexes= 29
satem 19 global, 18 local
airep 3 global, 3 local
gpspw 188 global, 188 local
metar 958 global, 957 local
ships 3 global, 3 local
buoy 332 global, 331 local
ob time 3 num_ob_indexes= 29
airep 1 global, 1 local
gpspw 184 global, 184 local
buoy 159 global, 159 local
ob time 4 num_ob_indexes= 29
metar 1 global, 1 local
buoy 3 global, 3 local
ob time 5 num_ob_indexes= 29
metar 2 global, 2 local
ships 1 global, 1 local
buoy 3 global, 3 local
ob time 6 num_ob_indexes= 29
sound 1 global, 1 local
pilot 1 global, 1 local
satem 21 global, 21 local
geoamv 6794 global, 6741 local
airep 33 global, 32 local
gpspw 183 global, 183 local
metar 741 global, 740 local
ships 10 global, 10 local
buoy 329 global, 328 local
sonde_sfc 1 global, 1 local
ob time 7 num_ob_indexes= 29
synop 231 global, 231 local
geoamv 3642 global, 3614 local
airep 630 global, 630 local
gpspw 182 global, 182 local
metar 1813 global, 1813 local
ships 1 global, 1 local
buoy 240 global, 240 local
Set up background errors for regional application for cv_options = 5
ni, nj, nk = 89 59 40
bin_type = 5
-90.0000000000000 90.0000000000000 10.0000000000000
0.000000000000000E+000 20000.0000000000 1000.00000000000
num_bins, num_bins2d = 40 1
bin = 1
bin2d = 1
Using the averaged regression coefficients for unbalanced part
-------- reading eigen vector/value -------
psi 40 1
chi_u 40 1
t_u 40 1
rh 40 1
ps_u 1 1
cloud_cv_options = 0
WRFDA dry control variables are: psi, chi_u, t_u and ps_u
WRFDA Humidity control variable is rh
----- read lengthscale --------
psi
chi_u
t_u
rh
ps_u
Vertical truncation for psi = 16( 99.00%)
Vertical truncation for chi_u = 21( 99.00%)
Vertical truncation for t_u = 29( 99.00%)
Vertical truncation for rh = 22( 99.00%)
Scaling: var, len, ds: psi 0.100000E+01 0.100000E+01 0.600000E+05
Scaling: var, len, ds: chi_u 0.100000E+01 0.100000E+01 0.600000E+05
Scaling: var, len, ds: t_u 0.100000E+01 0.100000E+01 0.600000E+05
Scaling: var, len, ds: rh 0.100000E+01 0.100000E+01 0.600000E+05
Scaling: var, len, ds: ps_u 0.100000E+01 0.100000E+01 0.600000E+05
Quilting with 1 groups of 0 I/O tasks.
Ntasks in X 1 , ntasks in Y 1
Domain # 1: dx = 60000.000 m
WRF V4.5 MODEL
No git found or not a git repository, git commit version not available.
*************************************
Parent domain
ids,ide,jds,jde 1 90 1 60
ims,ime,jms,jme -4 95 -4 65
ips,ipe,jps,jpe 1 90 1 60
*************************************
DYNAMICS OPTION: Eulerian Mass Coordinate
alloc_space_field: domain 1 , 863652868 bytes allocated
med_initialdata_input: calling input_input
This input data is not V4: OUTPUT FROM REAL_EM V3.9pre#2 PREPROCESSOR
Input data is acceptable to use: wrfinput_d01
CURRENT DATE = 2008-02-05_12:00:00
SIMULATION START DATE = 2008-02-05_12:00:00
Timing for processing wrfinput file (stream 0) for domain 1: 0.02315 elapsed seconds
Max map factor in domain 1 = 1.05. Scale the dt in the model accordingly.
D01: Time step = 360.000000000000 (s)
D01: Grid Distance = 60.0000000000000 (km)
D01: Grid Distance Ratio dt/dx = 6.00000000000000 (s/km)
D01: Ratio Including Maximum Map Factor = 6.31612801551819 (s/km)
D01: NML defined reasonable_time_step_ratio = 6.00000000000000
INPUT LandUse = "MODIFIED_IGBP_MODIS_NOAH"
LANDUSE TYPE = "MODIFIED_IGBP_MODIS_NOAH" FOUND 61 CATEGORIES 2 SEASONS WATER CATEGORY = 17 SNOW CATEGORY = 15
xtraj linked list is initialized
ad_forcing linked list is initialized
tl_pert linked list is initialized
In dolph, deltat = 360.00 taus = 3600.00
In dolph: M,N = 30 61
In dolph: THETAS (STOP-BAND EDGE) = 0.628
In dolph: R,DB = 0.000 -160.466
In dolph: TIME, W = 0.000000 0.5612023E-01
In dolph: TIME, W = 1.000000 0.5558921E-01
In dolph: TIME, W = 2.000000 0.5402456E-01
In dolph: TIME, W = 3.000000 0.5150921E-01
In dolph: TIME, W = 4.000000 0.4817360E-01
In dolph: TIME, W = 5.000000 0.4418507E-01
In dolph: TIME, W = 6.000000 0.3973453E-01
In dolph: TIME, W = 7.000000 0.3502203E-01
In dolph: TIME, W = 8.000000 0.3024247E-01
In dolph: TIME, W = 9.000000 0.2557311E-01
In dolph: TIME, W = 10.000000 0.2116353E-01
In dolph: TIME, W = 11.000000 0.1712911E-01
In dolph: TIME, W = 12.000000 0.1354809E-01
In dolph: TIME, W = 13.000000 0.1046196E-01
In dolph: TIME, W = 14.000000 0.7878942E-02
In dolph: TIME, W = 15.000000 0.5779498E-02
In dolph: TIME, W = 16.000000 0.4123162E-02
In dolph: TIME, W = 17.000000 0.2855761E-02
In dolph: TIME, W = 18.000000 0.1916250E-02
In dolph: TIME, W = 19.000000 0.1242581E-02
In dolph: TIME, W = 20.000000 0.7762616E-03
In dolph: TIME, W = 21.000000 0.4654370E-03
In dolph: TIME, W = 22.000000 0.2665784E-03
In dolph: TIME, W = 23.000000 0.1449647E-03
In dolph: TIME, W = 24.000000 0.7425032E-04
In dolph: TIME, W = 25.000000 0.3543180E-04
In dolph: TIME, W = 26.000000 0.1550860E-04
In dolph: TIME, W = 27.000000 0.6080120E-05
In dolph: TIME, W = 28.000000 0.2051719E-05
In dolph: TIME, W = 29.000000 0.5513138E-06
In dolph: TIME, W = 30.000000 0.9622389E-07
In dolph: SUM OF WEIGHTS W2 = 1.0000
Max map factor in domain 1 = 1.05. Scale the dt in the model accordingly.
D01: Time step = 360.000000000000 (s)
D01: Grid Distance = 60.0000000000000 (km)
D01: Grid Distance Ratio dt/dx = 6.00000000000000 (s/km)
D01: Ratio Including Maximum Map Factor = 6.31612801551819 (s/km)
D01: NML defined reasonable_time_step_ratio = 6.00000000000000
INPUT LandUse = "MODIFIED_IGBP_MODIS_NOAH"
LANDUSE TYPE = "MODIFIED_IGBP_MODIS_NOAH" FOUND 61 CATEGORIES 2 SEASONS WATER CATEGORY = 17 SNOW CATEGORY = 15
d01 2008-02-05_12:00:00 This input data is not V4: OUTPUT FROM REAL_EM V3.9pre#2 PREPROCESSOR
d01 2008-02-05_12:00:00 Input data is acceptable to use: wrfbdy_d01
Timing for processing lateral boundary for domain 1: 0.00848 elapsed seconds
Tile Strategy is not specified. Assuming 1D-Y
WRF TILE 1 IS 1 IE 90 JS 1 JE 60
WRF NUMBER OF TILES = 1
d01 2008-02-05_12:00:00 ----------------------------------------
d01 2008-02-05_12:00:00 W-DAMPING BEGINS AT W-COURANT NUMBER = 1.00000000000000
d01 2008-02-05_12:00:00 ----------------------------------------
d01 2008-02-05_12:00:00 381 points exceeded v_cfl = 2 in domain d01 at time 2008-02-05_12:00:00 hours
d01 2008-02-05_12:00:00 Max W: 2 58 40 W: 17.94 w-cfl: 5.74 dETA: 0.01
Timing for main: time 2008-02-05_12:06:00 on domain 1: 1.60526 elapsed seconds
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