Newer
Older
1001
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014
1015
1016
1017
1018
1019
1020
1021
1022
1023
1024
1025
1026
1027
1028
1029
1030
1031
1032
1033
1034
1035
1036
1037
1038
1039
1040
1041
1042
1043
1044
1045
1046
1047
1048
1049
1050
1051
1052
ALLOCATE(XDRVFRC(0,0,0,0))
END IF
IF (L2D_REL_FRC) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: L2D_REL_FRC IS SET TO ',L2D_REL_FRC,' SO RELAXATION FORCING WILL BE SPAWN: NRELFRC=',NRELFRC
ALLOCATE(TDTRELFRC(NRELFRC))
ALLOCATE(XTHREL(IIU,IJU,IKU,NRELFRC))
ALLOCATE(XRVREL(IIU,IJU,IKU,NRELFRC))
WRITE(ILUOUT,*) 'SPAWN_MODEL2: ALLOCATION OF REL FORCING VARIABLES MADE'
ELSE
ALLOCATE(TDTRELFRC(0))
ALLOCATE(XTHREL(0,0,0,0))
ALLOCATE(XRVREL(0,0,0,0))
END IF
!
! 4.11 Turbulent fluxes for 2D (Modif MT)
!
!
IF (LUV_FLX) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: XUV_FLX1 IS SET TO ',XUV_FLX1,' SO XVU_FLUX WILL BE SPAWN'
ALLOCATE(XVU_FLUX_M(IIU,IJU,IKU))
WRITE(ILUOUT,*) 'SPAWN_MODEL2: ALLOCATION OF XVU_FLUX_M MADE'
ELSE
ALLOCATE(XVU_FLUX_M(0,0,0))
END IF
!
IF (LTH_FLX) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: XTH_FLX IS SET TO ',XTH_FLX,' SO XVTH_FLUX and XWTH_FLUX WILL BE SPAWN'
ALLOCATE(XVTH_FLUX_M(IIU,IJU,IKU))
ALLOCATE(XWTH_FLUX_M(IIU,IJU,IKU))
WRITE(ILUOUT,*) 'SPAWN_MODEL2: ALLOCATION OF XVTH_FLUX_M and XWTH_FLUX_M MADE'
ELSE
ALLOCATE(XVTH_FLUX_M(0,0,0))
ALLOCATE(XWTH_FLUX_M(0,0,0))
END IF
!
!-------------------------------------------------------------------------------
!
!* 5. INITIALIZE ALL THE MODEL VARIABLES
! ----------------------------------
!
!* 5.1 Bikhardt interpolation coefficients computation :
!
CALL INI_BIKHARDT_n(NDXRATIO,NDYRATIO,2)
!
CALL SECOND_MNH(ZTIME2)
!
ZMISC = ZTIME2 - ZTIME1
!
!* 5.2 Spatial and Temporal grid (for MODD_GRID2 and MODD_TIME2) :
!
CALL SECOND_MNH(ZTIME1)
!
IF(NPROC.GT.1)THEN
CALL GO_TOMODEL_ll(2, IINFO_ll)
CALL GET_FEEDBACK_COORD_ll(NXOR_TMP,NYOR_TMP,NXEND_TMP,NYEND_TMP,IINFO_ll) !phys domain
ELSE
NXOR_TMP = NXOR
NYOR_TMP = NYOR
NXEND_TMP= NXEND
NYEND_TMP = NYEND
ENDIF
XZS=0.
CALL SPAWN_GRID2 (NXOR,NYOR,NXEND,NYEND,NDXRATIO,NDYRATIO, &
XLONORI,XLATORI,XXHAT,XYHAT,XZHAT,LSLEVE,XLEN1,XLEN2, &
XZS,XZSMT,ZZS_LS,ZZSMT_LS,TDTMOD,TDTCUR )
!
CALL MPPDB_CHECK2D(ZZS_LS,"SPAWN_MOD2:ZZS_LS",PRECISION)
CALL MPPDB_CHECK2D(ZZSMT_LS,"SPAWN_MOD2:ZZSMT_LS",PRECISION)
CALL MPPDB_CHECK2D(XZS,"SPAWN_MOD2:XZS",PRECISION)
CALL MPPDB_CHECK2D(XZSMT,"SPAWN_MOD2:XZSMT",PRECISION)
!
CALL SECOND_MNH(ZTIME2)
!
ZGRID2 = ZTIME2 - ZTIME1
!
!* 5.3 Calculation of the grid
!
ZTIME1 = ZTIME2
!
IF (LCARTESIAN) THEN
CALL SM_GRIDCART(CLUOUT,XXHAT,XYHAT,XZHAT,ZZS_LS,LSLEVE,XLEN1,XLEN2,ZZSMT_LS,XDXHAT,XDYHAT,ZZZ_LS,ZJ)
CALL SM_GRIDCART(CLUOUT,XXHAT,XYHAT,XZHAT,XZS ,LSLEVE,XLEN1,XLEN2,XZSMT ,XDXHAT,XDYHAT,XZZ ,ZJ)
ELSE
CALL SM_GRIDPROJ(CLUOUT,XXHAT,XYHAT,XZHAT,ZZS_LS,LSLEVE,XLEN1,XLEN2,ZZSMT_LS,&
XLATORI,XLONORI,XMAP,XLAT,XLON,XDXHAT,XDYHAT,ZZZ_LS,ZJ)
CALL SM_GRIDPROJ(CLUOUT,XXHAT,XYHAT,XZHAT,XZS ,LSLEVE,XLEN1,XLEN2,XZSMT ,&
XLATORI,XLONORI,XMAP,XLAT,XLON,XDXHAT,XDYHAT,XZZ ,ZJ)
END IF
!
!* 5.4 Compute the metric coefficients
!
CALL ADD3DFIELD_ll(TZFIELDS_ll,XZZ)
CALL UPDATE_HALO_ll(TZFIELDS_ll,IINFO_ll)
CALL CLEANLIST_ll(TZFIELDS_ll)
!
CALL METRICS(XMAP,XDXHAT,XDYHAT,XZZ,XDXX,XDYY,XDZX,XDZY,XDZZ)
!
CALL MPPDB_CHECK3D(XDXX,"spawnmod2-beforeupdate_metrics:XDXX",PRECISION)
CALL MPPDB_CHECK3D(XDYY,"spawnmod2-beforeupdate_metrics:XDYY",PRECISION)
CALL MPPDB_CHECK3D(XDZX,"spawnmod2-beforeupdate_metrics:XDZX",PRECISION)
CALL MPPDB_CHECK3D(XDZY,"spawnmod2-beforeupdate_metrics:XDZY",PRECISION)
!
CALL UPDATE_METRICS(CLBCX,CLBCY,XDXX,XDYY,XDZX,XDZY,XDZZ)
!
CALL MPPDB_CHECK3D(XDXX,"spawnmod2-aftrupdate_metrics:XDXX",PRECISION)
CALL MPPDB_CHECK3D(XDYY,"spawnmod2-aftrupdate_metrics:XDYY",PRECISION)
CALL MPPDB_CHECK3D(XDZX,"spawnmod2-aftrupdate_metrics:XDZX",PRECISION)
CALL MPPDB_CHECK3D(XDZY,"spawnmod2-aftrupdate_metrics:XDZY",PRECISION)
!$
1110
1111
1112
1113
1114
1115
1116
1117
1118
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128
1129
1130
!
!* 5.5 3D Reference state variables :
!
CALL SET_REF(0,'NIL',CLUOUT, &
XZZ,XZHAT,ZJ,XDXX,XDYY,CLBCX,CLBCY, &
XREFMASS,XMASS_O_PHI0,XLINMASS, &
XRHODREF,XTHVREF,XRVREF,XEXNREF,XRHODJ)
!
CALL SECOND_MNH(ZTIME2)
!
ZMISC = ZMISC + ZTIME2 - ZTIME1
!
!* 5.6 Prognostic variables and Larger scale fields :
!
ZTIME1 = ZTIME2
!
!* horizontal interpolation
!
ALLOCATE(ZTHVT(IIU,IJU,IKU))
ALLOCATE(ZHUT(IIU,IJU,IKU))
!
MPPDB_CHECK_LB = .TRUE.
IF (GNOSON) THEN
CALL SPAWN_FIELD2 (NXOR,NYOR,NXEND,NYEND,NDXRATIO,NDYRATIO,CTURB, &
XUT,XVT,XWT,ZTHVT,XRT,ZHUT,XTKET,XSVT,XATC, &
XLSUM,XLSVM,XLSWM,XLSTHM,XLSRVM, &
XDTHFRC,XDRVFRC,XTHREL,XRVREL, &
XVU_FLUX_M,XVTH_FLUX_M,XWTH_FLUX_M )
CALL MPPDB_CHECK3D(XUT,"SPAWN_M2 after SPAWN_FIELD2:XUT",PRECISION)
CALL MPPDB_CHECK3D(XUT,"SPAWN_M2 before SPAWN_FIELD2:XUT",PRECISION)
CALL SPAWN_FIELD2 (NXOR,NYOR,NXEND,NYEND,NDXRATIO,NDYRATIO,CTURB, &
XUT,XVT,XWT,ZTHVT,XRT,ZHUT,XTKET,XSVT,XATC, &
XLSUM,XLSVM,XLSWM,XLSTHM,XLSRVM, &
XDTHFRC,XDRVFRC,XTHREL,XRVREL, &
XVU_FLUX_M, XVTH_FLUX_M,XWTH_FLUX_M, &
HSONFILE,IIUSON,IJUSON, &
IIB2,IJB2,IIE2,IJE2, &
IIB1,IJB1,IIE1,IJE1 )
CALL MPPDB_CHECK3D(XUT,"SPAWN_M2 after SPAWN_FIELD2:XUT",PRECISION)
CALL MPPDB_CHECK3D(XUT,"SPAWN_MOD2aftFIELD2:XUT",PRECISION)
CALL MPPDB_CHECK3D(XVT,"SPAWN_MOD2aftFIELD2:XVT",PRECISION)
!$
!* correction of positivity
!
IF (SIZE(XLSRVM,1)>0) XLSRVM = MAX(0.,XLSRVM)
IF (SIZE(XRT,1)>0) XRT = MAX(0.,XRT)
IF (SIZE(ZHUT,1)>0) ZHUT = MIN(MAX(ZHUT,0.),100.)
IF (SIZE(XTKET,1)>0) XTKET = MAX(XTKEMIN,XTKET)
!
CALL SECOND_MNH(ZTIME2)
!
ZFIELD2 = ZTIME2 - ZTIME1
!
ZTIME1 = ZTIME2
!
!* vertical interpolation
!
ZZS_MAX = ABS( MAXVAL(XZS(:,:)))
CALL MPI_ALLREDUCE(ZZS_MAX, ZZS_MAX_ll, 1, MPI_PRECISION, MPI_MAX, &
NMNH_COMM_WORLD,IINFO_ll)
IF ( (ZZS_MAX_ll>0.) .AND. (NDXRATIO/=1 .OR. NDYRATIO/=1) ) THEN
CALL MPPDB_CHECK3D(XUT,"SPAWN_M2 before VER_INTERP_FIELD:XUT",PRECISION)
CALL VER_INTERP_FIELD (CTURB,NRR,NSV,ZZZ_LS,XZZ, &
XUT,XVT,XWT,ZTHVT,XRT,ZHUT,XTKET,XSVT, &
XSRCT,XSIGS, &
XLSUM,XLSVM,XLSWM,XLSTHM,XLSRVM )
!
CALL MPPDB_CHECK3D(XUT,"SPAWN_M2aftVERINTER:XUT",PRECISION)
CALL MPPDB_CHECK3D(XVT,"SPAWN_M2aftVERINTER:XVT",PRECISION)
CALL MPPDB_CHECK3D(XWT,"SPAWN_M2aftVERINTER:XWT",PRECISION)
CALL MPPDB_CHECK3D(ZHUT,"SPAWN_M2aftVERINTER:ZHUT",PRECISION)
CALL MPPDB_CHECK3D(XTKET,"SPAWN_M2aftVERINTER:XTKET",PRECISION)
CALL MPPDB_CHECK3D(XSRCT,"SPAWN_M2aftVERINTER:XSRCT",PRECISION)
ENDIF
!
CALL SECOND_MNH(ZTIME2)
!
ZVER = ZTIME2 - ZTIME1
!
!* 5.7 Absolute pressure :
!
ZTIME1 = ZTIME2
!
CALL SPAWN_PRESSURE2(NXOR,NYOR,NXEND,NYEND,NDXRATIO,NDYRATIO, &
!
IF (.NOT.GNOSON) THEN
ALLOCATE(ZWORK3D(IIUSON,IJUSON,IKU))
CALL FMREAD(HSONFILE,'PABST',CLUOUT,'XY',ZWORK3D,IGRID,ILENCH,YCOMMENT,IRESP)
XPABST(IIB2:IIE2,IJB2:IJE2,:) = ZWORK3D(IIB1:IIE1,IJB1:IJE1,:)
DEALLOCATE(ZWORK3D)
END IF
!
IF (NVERB>=2) THEN
IK4000 = COUNT(XZHAT(:)<4000.)
IIJ = MAXLOC( SUM(ZHUT(IIB:IIE,IJB:IJE,JPVEXT+1:IK4000),3), &
MASK=COUNT(ZHUT(IIB:IIE,IJB:IJE,JPVEXT+1:IKE) &
>=MAXVAL(ZHUT(IIB:IIE,IJB:IJE,JPVEXT+1:IKE))-0.01,DIM=3 ) &
>=1 ) &
+ JPHEXT
WRITE(ILUOUT,*) ' '
WRITE(ILUOUT,*) 'humidity (I=',IIJ(1),';J=',IIJ(2),')'
DO JK=IKB,IKE
WRITE(ILUOUT,'(F6.2,2H %)') ZHUT(IIJ(1),IIJ(2),JK)
END DO
END IF
!* 5.8 Retrieve model thermodynamical variables :
!
ALLOCATE(ZSUMRT(IIU,IJU,IKU))
ZSUMRT(:,:,:) = 0.
IF (NRR==0) THEN
XTHT(:,:,:) = ZTHVT(:,:,:)
ELSE
IF (NDXRATIO/=1 .OR. NDYRATIO/=1) THEN
XRT(:,:,:,1) = SM_PMR_HU(CLUOUT,XPABST(:,:,:), &
ZTHVT(:,:,:)*(XPABST(:,:,:)/XP00)**(XRD/XCPD), &
ZHUT(:,:,:),XRT(:,:,:,:),KITERMAX=100 )
END IF
!
DO JRR=1,NRR
ZSUMRT(:,:,:) = ZSUMRT(:,:,:) + XRT(:,:,:,JRR)
END DO
XTHT(:,:,:) = ZTHVT(:,:,:)/(1.+XRV/XRD*XRT(:,:,:,1))*(1.+ZSUMRT(:,:,:))
CALL MPPDB_CHECK3D(XTHT,"SPAWN_MOD2:XTHT",PRECISION)
END IF
!
DEALLOCATE (ZHUT)
!
CALL SECOND_MNH(ZTIME2)
ZPRESSURE2=ZTIME2-ZTIME1
!
!* 5.9 Large Scale field for lbc treatment:
!
!
1249
1250
1251
1252
1253
1254
1255
1256
1257
1258
1259
1260
1261
1262
1263
1264
1265
1266
1267
1268
1269
1270
1271
1272
1273
1274
1275
1276
1277
1278
1279
1280
1281
1282
1283
1284
1285
1286
1287
1288
1289
1290
1291
1292
1293
1294
1295
1296
1297
1298
1299
1300
1301
1302
1303
1304
1305
1306
1307
1308
1309
1310
1311
1312
1313
1314
1315
1316
1317
1318
1319
1320
1321
1322
1323
1324
1325
!* 5.9.1 West-East LB zones
!
!
!JUAN A REVOIR TODO_JPHEXT
! <<<<<<< spawn_model2.f90
MPPDB_CHECK_LB = .TRUE.
CALL MPPDB_CHECK3D(XUT,"SPAWN_MOD2 before lbc treatment:XUT",PRECISION)
CALL MPPDB_CHECK3D(XVT,"SPAWN_MOD2 before lbc treatment:XVT",PRECISION)
MPPDB_CHECK_LB = .FALSE.
YLBTYPE = 'LBU'
CALL SET_LB_FIELD_ll( YLBTYPE, XUT, XLBXUM, XLBYUM, IIB, IJB, IIE, IJE, 1, 0, 0, 0 )
! copy XUT(IIB:IIB+NRIMX,:,:) instead of XUT(IIB-1:IIB-1+NRIMX,:,:) in XLBXUM
CALL SET_LB_FIELD_ll( YLBTYPE, XVT, XLBXVM, XLBYVM, IIB, IJB, IIE, IJE, 0, 0, 1, 0 )
! copy XVT(:,IJB:IJB+NRIMY,:) instead of XVT(:,IJB-1:IJB-1+NRIMY,:) in XLBYVM
CALL SET_LB_FIELD_ll( YLBTYPE, XWT, XLBXWM, XLBYWM, IIB, IJB, IIE, IJE, 0, 0, 0, 0 )
CALL SET_LB_FIELD_ll( YLBTYPE, XTHT, XLBXTHM, XLBYTHM, IIB, IJB, IIE, IJE, 0, 0, 0, 0 )
IF (HTURB /= 'NONE') THEN
CALL SET_LB_FIELD_ll( YLBTYPE, XTKET, XLBXTKEM, XLBYTKEM, IIB, IJB, IIE, IJE, 0, 0, 0, 0 )
ENDIF
IF (NRR >= 1) THEN
DO JRR =1,NRR
CALL SET_LB_FIELD_ll( YLBTYPE, XRT(:,:,:,JRR), XLBXRM(:,:,:,JRR), XLBYRM(:,:,:,JRR), IIB, IJB, IIE, IJE, 0, 0, 0, 0 )
END DO
END IF
IF (NSV /= 0) THEN
DO JSV = 1, NSV
CALL SET_LB_FIELD_ll( YLBTYPE, XSVT(:,:,:,JSV), XLBXSVM(:,:,:,JSV), XLBYSVM(:,:,:,JSV), IIB, IJB, IIE, IJE, 0, 0, 0, 0 )
END DO
!!$=======
!!$!
!!$XLBXUM(1:NRIMX+JPHEXT,:,:) = XUT(2:NRIMX+JPHEXT+1,:,:)
!!$XLBXUM(NRIMX+JPHEXT+1:2*NRIMX+2*JPHEXT,:,:) = XUT(IIE+1-NRIMX:IIE+JPHEXT,:,:)
!!$IF( .NOT. L2D ) THEN
!!$ XLBYUM(:,1:NRIMY+JPHEXT,:) = XUT(:,1:NRIMY+JPHEXT,:)
!!$ XLBYUM(:,NRIMY+JPHEXT+1:2*NRIMY+2*JPHEXT,:) = XUT(:,IJE+1-NRIMY:IJE+JPHEXT,:)
!!$END IF
!!$!
!!$!* 5.9.2 V variable
!!$!
!!$!
!!$XLBXVM(1:NRIMX+JPHEXT,:,:) = XVT(1:NRIMX+JPHEXT,:,:)
!!$XLBXVM(NRIMX+JPHEXT+1:2*NRIMX+2*JPHEXT,:,:) = XVT(IIE+1-NRIMX:IIE+JPHEXT,:,:)
!!$IF( .NOT. L2D ) THEN
!!$ XLBYVM(:,1:NRIMY+JPHEXT,:) = XVT(:,2:NRIMY+JPHEXT+1,:)
!!$ XLBYVM(:,NRIMY+JPHEXT+1:2*NRIMY+2*JPHEXT,:) = XVT(:,IJE+1-NRIMY:IJE+JPHEXT,:)
!!$END IF
!!$!
!!$!* 5.9.3 W variable
!!$!
!!$!
!!$XLBXWM(1:NRIMX+JPHEXT,:,:) = XWT(1:NRIMX+JPHEXT,:,:)
!!$XLBXWM(NRIMX+JPHEXT+1:2*NRIMX+2*JPHEXT,:,:) = XWT(IIE+1-NRIMX:IIE+JPHEXT,:,:)
!!$IF( .NOT. L2D ) THEN
!!$ XLBYWM(:,1:NRIMY+JPHEXT,:) = XWT(:,1:NRIMY+JPHEXT,:)
!!$ XLBYWM(:,NRIMY+JPHEXT+1:2*NRIMY+2*JPHEXT,:) = XWT(:,IJE+1-NRIMY:IJE+JPHEXT,:)
!!$END IF
!!$!
!!$!* 5.9.4 TH variable
!!$!
!!$!
!!$XLBXTHM(1:NRIMX+JPHEXT,:,:) = XTHT(1:NRIMX+JPHEXT,:,:)
!!$XLBXTHM(NRIMX+JPHEXT+1:2*NRIMX+2*JPHEXT,:,:) = XTHT(IIE+1-NRIMX:IIE+JPHEXT,:,:)
!!$IF( .NOT. L2D ) THEN
!!$ XLBYTHM(:,1:NRIMY+JPHEXT,:) = XTHT(:,1:NRIMY+JPHEXT,:)
!!$ XLBYTHM(:,NRIMY+JPHEXT+1:2*NRIMY+2*JPHEXT,:) = XTHT(:,IJE+1-NRIMY:IJE+JPHEXT,:)
!!$END IF
!!$!
!!$!* 5.9.5 TKE variable
!!$!
!!$!
!!$IF (HTURB /= 'NONE') THEN
!!$ XLBXTKEM(1:NRIMX+JPHEXT,:,:) = XTKET(1:NRIMX+JPHEXT,:,:)
!!$ XLBXTKEM(NRIMX+JPHEXT+1:2*NRIMX+2*JPHEXT,:,:) = XTKET(IIE+1-NRIMX:IIE+JPHEXT,:,:)
!!$ IF( .NOT. L2D ) THEN
!!$ XLBYTKEM(:,1:NRIMY+JPHEXT,:) = XTKET(:,1:NRIMY+JPHEXT,:)
!!$ XLBYTKEM(:,NRIMY+JPHEXT+1:2*NRIMY+2*JPHEXT,:) = XTKET(:,IJE+1-NRIMY:IJE+JPHEXT,:)
!!$>>>>>>> 1.3.2.4.2.2.2.6.2.3.2.6.2.1
1328
1329
1330
1331
1332
1333
1334
1335
1336
1337
1338
1339
1340
1341
1342
1343
1344
1345
1346
1347
1348
1349
1350
1351
1352
1353
1354
1355
1356
1357
1358
1359
1360
1361
! <<<<<<< spawn_model2.f90
CALL MPPDB_CHECKLB(XLBXUM,"SPAWN_MOD2 before SPAWN_SURF2_RAIN",PRECISION,'LBXU',NRIMX)
CALL MPPDB_CHECKLB(XLBXVM,"SPAWN_MOD2 before SPAWN_SURF2_RAIN:XLBXVM",PRECISION,'LBXU',NRIMX)
CALL MPPDB_CHECKLB(XLBXWM,"SPAWN_MOD2 before SPAWN_SURF2_RAIN:XLBXWM",PRECISION,'LBXU',NRIMX)
CALL MPPDB_CHECKLB(XLBYUM,"SPAWN_MOD2 before SPAWN_SURF2_RAIN:XLBYUM",PRECISION,'LBYV',NRIMY)
CALL MPPDB_CHECKLB(XLBYVM,"SPAWN_MOD2 before SPAWN_SURF2_RAIN:XLBYVM",PRECISION,'LBYV',NRIMY)
CALL MPPDB_CHECKLB(XLBYWM,"SPAWN_MOD2 before SPAWN_SURF2_RAIN:XLBYWM",PRECISION,'LBYV',NRIMY)
!!$=======
!!$!* 5.9.6 moist variables
!!$!
!!$IF (NRR >= 1) THEN
!!$ DO JRR =1,NRR
!!$ XLBXRM(1:NRIMX+JPHEXT,:,:,JRR) = XRT(1:NRIMX+JPHEXT,:,:,JRR)
!!$ XLBXRM(NRIMX+JPHEXT+1:2*NRIMX+2*JPHEXT,:,:,JRR) = XRT(IIE+1-NRIMX:IIE+JPHEXT,:,:,JRR)
!!$ IF( .NOT. L2D ) THEN
!!$ XLBYRM(:,1:NRIMY+JPHEXT,:,JRR) = XRT(:,1:NRIMY+JPHEXT,:,JRR)
!!$ XLBYRM(:,NRIMY+JPHEXT+1:2*NRIMY+2*JPHEXT,:,JRR) = XRT(:,IJE+1-NRIMY:IJE+JPHEXT,:,JRR)
!!$ END IF
!!$ END DO
!!$END IF
!!$!
!!$!* 5.9.7 scalar variables
!!$!
!!$IF (NSV /= 0) THEN
!!$ DO JSV = 1, NSV
!!$ XLBXSVM(1:NRIMX+JPHEXT,:,:,JSV) = XSVT(1:NRIMX+JPHEXT,:,:,JSV)
!!$ XLBXSVM(NRIMX+JPHEXT+1:2*NRIMX+2*JPHEXT,:,:,JSV) = XSVT(IIE+1-NRIMX:IIE+JPHEXT,:,:,JSV)
!!$ IF( .NOT. L2D ) THEN
!!$ XLBYSVM(:,1:NRIMY+JPHEXT,:,JSV) = XSVT(:,1:NRIMY+JPHEXT,:,JSV)
!!$ XLBYSVM(:,NRIMY+JPHEXT+1:2*NRIMY+2*JPHEXT,:,JSV) = XSVT(:,IJE+1-NRIMY:IJE+JPHEXT,:,JSV)
!!$ END IF
!!$ END DO
!!$ENDIF
!!$>>>>>>> 1.3.2.4.2.2.2.6.2.3.2.6.2.1
!
!* 5.10 Surface precipitation computation
!
IF (SIZE(XINPRR) /= 0 ) THEN
IF (GNOSON) &
CALL SPAWN_SURF2_RAIN (NXOR,NYOR,NXEND,NYEND,NDXRATIO,NDYRATIO, &
XINPRC,XACPRC,XINDEP,XACDEP,XINPRR,XINPRR3D,XEVAP3D, &
XACPRR,XINPRS,XACPRS,XINPRG,XACPRG,&
XINPRH,XACPRH )
IF (.NOT.GNOSON) &
CALL SPAWN_SURF2_RAIN (NXOR,NYOR,NXEND,NYEND,NDXRATIO,NDYRATIO, &
XINPRC,XACPRC,XINDEP,XACDEP,XINPRR,XINPRR3D,XEVAP3D, &
XACPRR,XINPRS,XACPRS,XINPRG,XACPRG,XINPRH,XACPRH, &
HSONFILE,IIUSON,IJUSON, &
IIB2,IJB2,IIE2,IJE2, &
IIB1,IJB1,IIE1,IJE1 )
ENDIF
!
!* 5.11 Total mass of dry air Md computation :
!
ZTIME1 = ZTIME2
!
ALLOCATE(ZRHOD(IIU,IJU,IKU))
ZRHOD(:,:,:)=XPABST(:,:,:)/(XPABST(:,:,:)/XP00)**(XRD/XCPD) &
/(XRD*ZTHVT(:,:,:)*(1.+ZSUMRT(:,:,:)))
!$20140709
CALL MPPDB_CHECK3D(ZRHOD,"SPAWN_MOD2:ZRHOD",PRECISION)
CALL MPPDB_CHECK3D(XPABST,"SPAWN_MOD2:XPABST",PRECISION)
CALL MPPDB_CHECK3D(ZSUMRT,"SPAWN_MOD2:ZSUMRT",PRECISION)
!$20140710 until here all ok after UPHALO(XZZ)
1392
1393
1394
1395
1396
1397
1398
1399
1400
1401
1402
1403
1404
1405
1406
1407
1408
1409
1410
1411
1412
1413
1414
1415
1416
!
CALL TOTAL_DMASS(CLUOUT,ZJ,ZRHOD,XDRYMASST)
!
DEALLOCATE (ZRHOD)
DEALLOCATE (ZSUMRT,ZTHVT)
!
CALL SECOND_MNH(ZTIME2)
!
ZMISC = ZMISC + ZTIME2 - ZTIME1
!
!* 5.12 Deallocation of model 1 variables :
!
ZTIME1 = ZTIME2
!
CALL DEALLOCATE_MODEL1(3)
!
CALL SECOND_MNH(ZTIME2)
!
ZMISC = ZMISC + ZTIME2 - ZTIME1
!
!* 5.13 Anelastic correction :
!
CALL SECOND_MNH(ZTIME1)
!
IF (.NOT. L1D) THEN
CALL BOUNDARIES ( &
0.,CLBCX,CLBCY,NRR,NSV,1, &
XLBXUM,XLBXVM,XLBXWM,XLBXTHM,XLBXTKEM,XLBXRM,XLBXSVM, &
XLBYUM,XLBYVM,XLBYWM,XLBYTHM,XLBYTKEM,XLBYRM,XLBYSVM, &
XLBXUM,XLBXVM,XLBXWM,XLBXTHM,XLBXTKEM,XLBXRM,XLBXSVM, &
XLBYUM,XLBYVM,XLBYWM,XLBYTHM,XLBYTKEM,XLBYRM,XLBYSVM, &
XRHODJ, &
XUT, XVT, XWT, XTHT, XTKET, XRT, XSVT, XSRCT )
1426
1427
1428
1429
1430
1431
1432
1433
1434
1435
1436
1437
1438
1439
1440
1441
1442
1443
1444
1445
1446
1447
1448
1449
1450
1451
1452
1453
1454
END IF
!
CALL SECOND_MNH(ZTIME2)
!
ZANEL = ZTIME2 - ZTIME1
!
!
!
!-------------------------------------------------------------------------------
!
!* 6. WRITE THE FMFILE
! ----------------
!
CALL SECOND_MNH(ZTIME1)
!
INPRAR = 22 + 2*(4+NRR+NSV) ! 22 = number of grid variables + reference state
! variables +dimension variables
! 2*(4+NRR+NSV) = number of prognostic variables
! at time t and t-dt
ITYPE=1
!
IF ( ( LEN_TRIM(HSPAFILE) /= 0 ) .AND. ( ADJUSTL(HSPAFILE) /= ADJUSTL(CINIFILE) ) ) THEN
CMY_NAME(2)=HSPAFILE
ELSE
CMY_NAME(2)=ADJUSTL(ADJUSTR(CINIFILE)//'.spa'//ADJUSTL(HSPANBR))
IF (.NOT.GNOSON) &
CMY_NAME(2)=ADJUSTL(ADJUSTR(CINIFILE)//'.spr'//ADJUSTL(HSPANBR))
END IF
!
TZFILE%CNAME = CMY_NAME(2)
TZFILE%CTYPE = 'SPAWNING'
IF (LIOCDF4) THEN
IF (.NOT.LLFIOUT) THEN
TZFILE%CFORMAT='NETCDF4'
ELSE
TZFILE%CFORMAT='LFICDF4'
TZFILE%NLFINPRAR= INPRAR
END IF
ELSE IF (LLFIOUT) THEN
TZFILE%CFORMAT='LFI'
TZFILE%NLFINPRAR= INPRAR
ELSE

WAUTELET Philippe
committed
CALL PRINT_MSG(NVERB_FATAL,'IO','SPAWN_MODEL2','unknown backup/output fileformat')
ENDIF
TZFILE%CMODE = 'WRITE'
TZFILE%NLFITYPE = ITYPE
TZFILE%NLFIVERB = NVERB
!
CALL IO_FILE_OPEN_ll(TZFILE,CLUOUT,IRESP)
1475
1476
1477
1478
1479
1480
1481
1482
1483
1484
1485
1486
1487
1488
1489
1490
1491
1492
1493
1494
1495
1496
1497
1498
1499
1500
1501
!
YDESFM=ADJUSTL(ADJUSTR(CMY_NAME(2))//'.des')
!
CALL WRITE_DESFM_n(2,YDESFM,CLUOUT)
!
IF (LBAL_ONLY) THEN ! same relation with its DAD for model2 and for model1
NDXRATIO_ALL(2) = NDXRATIO_ALL(1)
NDYRATIO_ALL(2) = NDYRATIO_ALL(1)
NXOR_ALL(2) = NXOR_ALL(1)
NYOR_ALL(2) = NYOR_ALL(1)
NXEND_ALL(2) = NXEND_ALL(1)
NYEND_ALL(2) = NYEND_ALL(1)
CDAD_NAME(2) = CDAD_NAME(1)
IF (CDADSPAFILE == '' ) THEN
IF (NDXRATIO_ALL(1) == 1 .AND. NDYRATIO_ALL(1) == 1 &
.AND. NXOR_ALL(1) == 1 .AND. NYOR_ALL(1) == 1 ) THEN
! for spawning with ratio=1
! if the DAD of model 1 is itself, the DAD of model 2 also.
CDAD_NAME(2)=CMY_NAME(2)
ENDIF
ENDIF
! case of model with DAD
IF (CDADSPAFILE /='') CDAD_NAME(2)=CDADSPAFILE
ELSE
CDAD_NAME(2)=CMY_NAME(1) ! model 1 becomes the DAD of model 2 (spawned one)
ENDIF
!
CALL WRITE_LFIFM_n(TZFILE,CDAD_NAME(2))
!
CALL SECOND_MNH(ZTIME2)
!
ZWRITE = ZTIME2 - ZTIME1
!
!-------------------------------------------------------------------------------
!
!* 7. Surface variables :
!
ZTIME1 = ZTIME2
!

WAUTELET Philippe
committed
TFILE_SURFEX => TZFILE
CALL SPAWN_SURF(HINIFILE,HINIFILEPGD,OSPAWN_SURF)

WAUTELET Philippe
committed
NULLIFY(TFILE_SURFEX)
!
CALL SECOND_MNH(ZTIME2)
!
ZSURF2 = ZTIME2 - ZTIME1
!
!-------------------------------------------------------------------------------
!
!* 8. CLOSES THE FMFILE
! -----------------
!
CALL IO_FILE_CLOSE_ll(TZFILE,CLUOUT,IRESP)
1528
1529
1530
1531
1532
1533
1534
1535
1536
1537
1538
1539
1540
1541
1542
1543
1544
1545
1546
1547
1548
1549
1550
1551
1552
1553
1554
1555
1556
1557
1558
1559
1560
1561
1562
1563
1564
1565
1566
1567
1568
1569
1570
1571
1572
1573
1574
1575
1576
1577
1578
1579
1580
1581
1582
1583
1584
1585
1586
1587
1588
1589
1590
1591
1592
1593
1594
1595
1596
1597
1598
1599
1600
1601
1602
1603
1604
1605
1606
1607
1608
1609
1610
1611
1612
1613
1614
1615
1616
1617
1618
1619
1620
1621
1622
1623
1624
1625
1626
1627
1628
1629
1630
1631
1632
1633
1634
1635
1636
1637
1638
1639
1640
1641
1642
1643
1644
1645
1646
1647
1648
1649
1650
1651
1652
1653
1654
1655
1656
1657
1658
1659
1660
1661
1662
1663
1664
1665
1666
1667
1668
1669
1670
1671
1672
1673
1674
1675
1676
1677
1678
1679
1680
1681
1682
1683
1684
1685
1686
1687
1688
1689
1690
1691
1692
1693
1694
1695
1696
1697
1698
1699
1700
1701
1702
1703
IF (LEN_TRIM(HSONFILE) /= 0 ) THEN
CALL FMCLOS_ll(HSONFILE,'KEEP',CLUOUT,IRESP)
END IF
!
!-------------------------------------------------------------------------------
!
!* 9. PRINTS ON OUTPUT-LISTING
! ------------------------
!
WRITE(ILUOUT,FMT=9900) XZHAT(1)
!
DO JLOOP = 2,IKU
WRITE(ILUOUT,FMT=9901) JLOOP,XZHAT(JLOOP),XZHAT(JLOOP)-XZHAT(JLOOP-1)
END DO
!
IF (NVERB >= 5) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: LUSERV,LUSERC=',LUSERV,LUSERC
WRITE(ILUOUT,*) 'SPAWN_MODEL2: LUSERR,LUSERI,LUSERS=',LUSERR,LUSERI,LUSERS
WRITE(ILUOUT,*) 'SPAWN_MODEL2: LUSERG,LUSERH,NSV=',LUSERG,LUSERH,NSV
WRITE(ILUOUT,*) 'SPAWN_MODEL2: NRR=',NRR
WRITE(ILUOUT,*) 'SPAWN_MODEL2: NVERB=',NVERB
WRITE(ILUOUT,*) 'SPAWN_MODEL2: XLON0,XLAT0,XBETA=',XLON0,XLAT0,XBETA
WRITE(ILUOUT,*) 'SPAWN_MODEL2: LCARTESIAN=',LCARTESIAN
IF(LCARTESIAN) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: No map projection used.'
ELSE
WRITE(ILUOUT,*) 'SPAWN_MODEL2: XRPK,XLONORI,XLATORI=',XRPK,XLONORI,XLATORI
IF (ABS(XRPK) == 1.) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Polar stereo used.'
ELSE IF (XRPK == 0.) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Mercator used.'
ELSE
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Lambert used, cone factor=',XRPK
END IF
END IF
END IF
!
IF (NVERB >= 10) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: IIB, IJB, IKB=',IIB,IJB,IKB
WRITE(ILUOUT,*) 'SPAWN_MODEL2: IIU, IJU, IKU=',IIU,IJU,IKU
END IF
!
IF(NVERB >= 10) THEN !Value control
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Some XZS values:'
WRITE(ILUOUT,*) XZS(1,IJU),XZS((IIU-1)/2,IJU),XZS(IIU,IJU)
WRITE(ILUOUT,*) XZS(1,(IJU-1)/2),XZS((IIU-1)/2,(IJU-1)/2),XZS(IIU,(IJU-1)/2)
WRITE(ILUOUT,*) XZS(1,1) ,XZS((IIU-1)/2,1) ,XZS(IIU,1)
END IF
!
IF(NVERB >= 10) THEN !Value control
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Some XUT values:'
WRITE(ILUOUT,*) ' (1,IJU/2,JK) (IIU/2,1,JK) (IIU/2,IJU/2,JK) &
&(IIU/2,IJU,JK) (IIU,IJU/2,JK)'
DO JKLOOP=1,IKU
WRITE(ILUOUT,*) 'JK = ',JKLOOP
WRITE(ILUOUT,*) XUT(1,IJU/2,JKLOOP),XUT(IIU/2,1,JKLOOP), &
XUT(IIU/2,IJU/2,JKLOOP),XUT(IIU/2,IJU,JKLOOP), &
XUT(IIU,IJU/2,JKLOOP)
END DO
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Some XVT values:'
WRITE(ILUOUT,*) ' (1,IJU/2,JK) (IIU/2,1,JK) (IIU/2,IJU/2,JK) &
&(IIU/2,IJU,JK) (IIU,IJU/2,JK)'
DO JKLOOP=1,IKU
WRITE(ILUOUT,*) 'JK = ',JKLOOP
WRITE(ILUOUT,*) XVT(1,IJU/2,JKLOOP),XVT(IIU/2,1,JKLOOP), &
XVT(IIU/2,IJU/2,JKLOOP),XVT(IIU/2,IJU,JKLOOP), &
XVT(IIU,IJU/2,JKLOOP)
END DO
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Some XWT values:'
WRITE(ILUOUT,*) ' (1,IJU/2,JK) (IIU/2,1,JK) (IIU/2,IJU/2,JK) &
&(IIU/2,IJU,JK) (IIU,IJU/2,JK)'
DO JKLOOP=1,IKU
WRITE(ILUOUT,*) 'JK = ',JKLOOP
WRITE(ILUOUT,*) XWT(1,IJU/2,JKLOOP),XWT(IIU/2,1,JKLOOP), &
XWT(IIU/2,IJU/2,JKLOOP),XWT(IIU/2,IJU,JKLOOP), &
XWT(IIU,IJU/2,JKLOOP)
END DO
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Some XTHT values:'
WRITE(ILUOUT,*) ' (1,IJU/2,JK) (IIU/2,1,JK) (IIU/2,IJU/2,JK) &
&(IIU/2,IJU,JK) (IIU,IJU/2,JK)'
DO JKLOOP=1,IKU
WRITE(ILUOUT,*) 'JK = ',JKLOOP
WRITE(ILUOUT,*) XTHT(1,IJU/2,JKLOOP),XTHT(IIU/2,1,JKLOOP), &
XTHT(IIU/2,IJU/2,JKLOOP),XTHT(IIU/2,IJU,JKLOOP), &
XTHT(IIU,IJU/2,JKLOOP)
END DO
IF(NRR >= 1) THEN
WRITE(ILUOUT,*) 'SPAWN_MODEL2: Some XRT values:'
WRITE(ILUOUT,*) ' (1,IJU/2,JK) (IIU/2,1,JK) (IIU/2,IJU/2,JK) &
&(IIU/2,IJU,JK) (IIU,IJU/2,JK)'
DO JKLOOP=1,IKU
WRITE(ILUOUT,*) 'JK = ',JKLOOP
WRITE(ILUOUT,*) XRT(1,IJU/2,JKLOOP,1),XRT(IIU/2,1,JKLOOP,1), &
XRT(IIU/2,IJU/2,JKLOOP,1),XRT(IIU/2,IJU,JKLOOP,1), &
XRT(IIU,IJU/2,JKLOOP,1)
END DO
END IF
!
IF (LUV_FLX) THEN
WRITE(ILUOUT,*)'SPAWN_MODEL2: Some EDDY_FLUX values XVU_FLUX(IIU/2,2,:)=',XVU_FLUX_M(IIU/2,2,:)
END IF
!
IF (LTH_FLX) THEN
WRITE(ILUOUT,*)'SPAWN_MODEL2: Some EDDY_FLUX values XVTH_FLUX(IIU/2,2,:)=',XVTH_FLUX_M(IIU/2,2,:)
WRITE(ILUOUT,*)'SPAWN_MODEL2: Some EDDY_FLUX values XWTH_FLUX(IIU/2,2,:)=',XWTH_FLUX_M(IIU/2,2,:)
END IF
!
END IF
!
WRITE(ILUOUT,*) 'SPAWN_MODEL2: SPAWN_MODEL2 ENDS CORRECTLY.'
!
CALL SECOND_MNH (ZEND)
!
ZTOT = ZEND - ZSTART ! for computing time analysis
!
ZALL = ZGRID2 + ZSURF2 + ZMISC + ZFIELD2 + ZVER + ZPRESSURE2 + ZANEL + ZWRITE
!
ZPERCALL = 100.*ZALL/ZTOT
!
ZPERCGRID2 = 100.*ZGRID2/ZTOT
ZPERCSURF2 = 100.*ZSURF2/ZTOT
ZPERCMISC = 100.*ZMISC/ZTOT
ZPERCFIELD2 = 100.*ZFIELD2/ZTOT
ZPERCVER = 100.*ZVER/ZTOT
ZPERCPRESSURE2 = 100.*ZPRESSURE2/ZTOT
ZPERCANEL = 100.*ZANEL/ZTOT
ZPERCWRITE = 100.*ZWRITE/ZTOT
!
WRITE(ILUOUT,*)
WRITE(ILUOUT,*) ' ------------------------------------------------------------ '
WRITE(ILUOUT,*) '| |'
WRITE(ILUOUT,*) '| COMPUTING TIME ANALYSIS in SPAWN_MODEL2 |'
WRITE(ILUOUT,*) '| |'
WRITE(ILUOUT,*) '|------------------------------------------------------------|'
WRITE(ILUOUT,*) '| | | |'
WRITE(ILUOUT,*) '| ROUTINE NAME | CPU-TIME | PERCENTAGE % |'
WRITE(ILUOUT,*) '| | | |'
WRITE(ILUOUT,*) '|---------------------|-------------------|------------------|'
WRITE(ILUOUT,*) '| | | |'
WRITE(UNIT=ILUOUT,FMT=1) ZGRID2 ,ZPERCGRID2
WRITE(UNIT=ILUOUT,FMT=3) ZFIELD2,ZPERCFIELD2
WRITE(UNIT=ILUOUT,FMT=8) ZVER,ZPERCVER
WRITE(UNIT=ILUOUT,FMT=7) ZPRESSURE2,ZPERCPRESSURE2
WRITE(UNIT=ILUOUT,FMT=2) ZSURF2 ,ZPERCSURF2
WRITE(UNIT=ILUOUT,FMT=4) ZANEL ,ZPERCANEL
WRITE(UNIT=ILUOUT,FMT=5) ZWRITE ,ZPERCWRITE
WRITE(UNIT=ILUOUT,FMT=9) ZMISC ,ZPERCMISC
WRITE(UNIT=ILUOUT,FMT=6) ZTOT ,ZPERCALL
WRITE(ILUOUT,*) ' ------------------------------------------------------------ '
!
! FORMATS
! -------
!
1 FORMAT(' | SPAWN_GRID2 | ',F8.3,' | ',F8.3,' |')
3 FORMAT(' | SPAWN_FIELD2 | ',F8.3,' | ',F8.3,' |')
8 FORMAT(' | VER_INTERP_FIELD | ',F8.3,' | ',F8.3,' |')
7 FORMAT(' | SPAWN_PRESSURE2 | ',F8.3,' | ',F8.3,' |')
2 FORMAT(' | SPAWN_SURF2 | ',F8.3,' | ',F8.3,' |')
4 FORMAT(' | ANEL_BALANCE2 | ',F8.3,' | ',F8.3,' |')
5 FORMAT(' | WRITE | ',F8.3,' | ',F8.3,' |')
9 FORMAT(' | MISCELLANEOUS | ',F8.3,' | ',F8.3,' |')
6 FORMAT(' | SPAWN_MODEL2 | ',F8.3,' | ',F8.3,' |')
!
!
CALL CLOSE_ll(CLUOUT,IOSTAT=IRESP)
!
9900 FORMAT(' K = 001 ZHAT = ',E14.7)
9901 FORMAT(' K = ',I3.3,' ZHAT = ',E14.7,' DZ = ' ,E14.7)
!
!-------------------------------------------------------------------------------
!
!
! Switch back to model index of calling routine
CALL GOTO_MODEL(IMI)
!
END SUBROUTINE SPAWN_MODEL2