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!SURFEX_LIC Copyright 1994-2014 Meteo-France
!SURFEX_LIC This is part of the SURFEX software governed by the CeCILL-C licence
!SURFEX_LIC version 1. See LICENSE, CeCILL-C_V1-en.txt and CeCILL-C_V1-fr.txt
!SURFEX_LIC for details. version 1.
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!#############################################################
SUBROUTINE INIT_SURF_ATM_n(HPROGRAM,HINIT, OLAND_USE, &
KI,KSV,KSW, &
HSV,PCO2,PRHOA, &
PZENITH,PAZIM,PSW_BANDS,PDIR_ALB,PSCA_ALB, &
PEMIS,PTSRAD, &
KYEAR, KMONTH,KDAY, PTIME, &
HATMFILE,HATMFILETYPE, &
HTEST )
!#############################################################
!
!!**** *INIT_SURF_ATM_n* - routine to initialize GROUND
!!
!! PURPOSE
!! -------
!!
!!** METHOD
!! ------
!!
!! EXTERNAL
!! --------
!!
!!
!! IMPLICIT ARGUMENTS
!! ------------------
!!
!! REFERENCE
!! ---------
!!
!!
!! AUTHOR
!! ------
!! V. Masson *Meteo France*
!!
!! MODIFICATIONS
!! -------------
!! Original 01/2003
! (P.Tulet ) 01/11/03 initialisation of the surface chemistry!
!! (D.Gazen) 01/12/03 change emissions handling for surf. externalization
!! (P.LeMoigne) 18/07/05 get 1d mask only if associated tile exists
!! (B.Decharme) 03/2009 New keys read for arrange cover by user
!! (B.Decharme) 04/2009 Read precipitation forcing from the restart file for ARPEGE/ALADIN run
!! (A. Lemonsu) 2009 New key read for urban green areas
!! (B.Decharme) 07/2011 Read pgd+prep
!! (S. Queguiner) 2011 Modif chemistry (2.4)
!! (B. Decharme) 2013 Read grid only once in AROME case
!! (G. Tanguy) 2013 Add IF(ALLOCATED(NMASK_FULL)) before deallocate
!-------------------------------------------------------------------------------
!
!* 0. DECLARATIONS
! ------------
!
USE MODD_READ_NAMELIST, ONLY : LNAM_READ
USE MODD_SURF_CONF, ONLY : CPROGNAME
USE MODD_SURF_ATM_n, ONLY : CSEA, CWATER, CTOWN, CNATURE, &
XSEA, XWATER, XTOWN, XNATURE, &
NSIZE_SEA, NSIZE_WATER, NSIZE_TOWN, NSIZE_NATURE, &
NR_SEA, NR_WATER, NR_TOWN, NR_NATURE, &
XCOVER, XOUT_TSTEP, TTIME, &
NDIM_FULL, NSIZE_FULL, &
NDIM_NATURE, NDIM_SEA, NDIM_WATER, NDIM_TOWN, &
LECOCLIMAP, LWATER_TO_NATURE, LTOWN_TO_ROCK, &
LGARDEN
USE MODD_SURF_ATM_SSO_n, ONLY : CROUGH, XAOSIP, XAOSIM, XAOSJP, XAOSJM, &
XHO2IP, XHO2IM, XHO2JP, XHO2JM, &
XZ0EFFIP, XZ0EFFIM, XZ0EFFJP, XZ0EFFJM, &
XZ0REL, XZ0EFFJPDIR, XFRACZ0, XCOEFBE
USE MODD_CH_SURF_n, ONLY : CCH_NAMES, LCH_EMIS, LRW_CH_EMIS, &
LCH_SURF_EMIS, CCHEM_SURF_FILE, CAER_NAMES,&
CCH_EMIS
USE MODD_SV_n, ONLY : NBEQ, CSV, NSV_CHSBEG, NSV_CHSEND, &
NSV_DSTBEG, NSV_DSTEND, NDSTEQ, &
NSV_SLTBEG, NSV_SLTEND, NSLTEQ, &
NAEREQ, NSV_AERBEG, NSV_AEREND
USE MODD_DST_SURF, ONLY : NDSTMDE, NDST_MDEBEG, LVARSIG_DST, LRGFIX_DST
USE MODD_SLT_SURF, ONLY : NSLTMDE, NSLT_MDEBEG, LVARSIG_SLT, LRGFIX_SLT
USE MODD_SURF_ATM_GRID_n,ONLY : XLAT, XLON, XMESH_SIZE, CGRID, XGRID_PAR, &
NGRID_PAR, XGRID_FULL_PAR
USE MODD_DIAG_SURF_ATM_n,ONLY : N2M, L2M_MIN_ZS, LSURF_BUDGET, &
LRAD_BUDGET, LCOEF, XDIAG_TSTEP, &
LFRAC, LSURF_VARS, LDIAG_GRID, &
LSURF_BUDGETC, LRESET_BUDGETC, &
LPROVAR_TO_DIAG, LSELECT, CSELECT
USE MODD_DATA_COVER_PAR, ONLY : NTILESFC
USE MODD_DATA_COVER_n, ONLY : NYEAR
USE MODD_DATA_COVER, ONLY : LCLIM_LAI, XDATA_LAI_ALL_YEARS, XDATA_LAI, &
NECO2_START_YEAR, NECO2_END_YEAR
!
USE MODD_SURF_PAR, ONLY : XUNDEF, NUNDEF
USE MODD_CHS_AEROSOL, ONLY : LVARSIGI, LVARSIGJ
USE MODD_WRITE_SURF_ATM, ONLY : LNOWRITE_CANOPY, LNOWRITE_TEXFILE
!
USE MODD_SURFEX_MPI, ONLY : XTIME_INIT_SEA, XTIME_INIT_WATER, XTIME_INIT_NATURE, XTIME_INIT_TOWN, &
NRANK, NPIO, NWG_LAYER_TOT, NSIZE
USE MODD_SURFEX_OMP, ONLY : NINDX2, NWORK, XWORK, XWORK2, XWORK3, NWORK_FULL, XWORK_FULL, XWORK2_FULL
!
USE MODD_MASK, ONLY: NMASK_FULL
!
USE MODI_INIT_IO_SURF_n
USE MODI_DEFAULT_SSO
USE MODI_DEFAULT_CH_SURF_ATM
USE MODI_DEFAULT_DIAG_SURF_ATM
USE MODI_READ_DEFAULT_SURF_ATM_n
USE MODI_READ_SURF_ATM_CONF_n
USE MODI_READ_SURF_ATM_DATE
USE MODI_READ_NAM_PREP_SURF_n
USE MODI_READ_SURF
USE MODI_GET_SIZE_FULL_n
USE MODI_READ_COVER_n
USE MODI_READ_SSO_n
USE MODI_SUBSCALE_Z0EFF
USE MODI_READ_SSO_CANOPY_n
USE MODI_READ_DUMMY_n
USE MODI_READ_GRID
USE MODI_READ_GRIDTYPE
USE MODI_END_IO_SURF_n
USE MODI_PREP_CTRL_SURF_ATM
USE MODI_AVERAGE_RAD
USE MODI_WRITE_COVER_TEX_START
USE MODI_WRITE_COVER_TEX_END
USE MODI_INIT_CHEMICAL_n
USE MODI_CH_INIT_DEPCONST
USE MODI_CH_INIT_EMISSION_n
USE MODI_CH_INIT_SNAP_n
USE MODI_OPEN_NAMELIST
USE MODI_CLOSE_NAMELIST
USE MODI_READ_PRECIP_n
USE MODI_ABOR1_SFX
USE MODI_ALLOC_DIAG_SURF_ATM_n
USE MODI_GET_1D_MASK
USE MODI_INI_DATA_COVER
USE MODI_INIT_INLAND_WATER_n
USE MODI_INIT_NATURE_n
USE MODI_INIT_SEA_n
USE MODI_INIT_TOWN_n
USE MODI_READ_ARRANGE_COVER
USE MODI_READ_COVER_GARDEN
USE MODI_READ_ECO2_IRRIG
USE MODI_READ_LCLIM_LAI
USE MODI_READ_LECOCLIMAP
USE MODI_SURF_VERSION
USE MODI_WRITE_COVER_TEX_COVER
USE MODI_GET_LUOUT
USE MODI_SET_SURFEX_FILEIN
!
USE YOMHOOK ,ONLY : LHOOK, DR_HOOK
USE PARKIND1 ,ONLY : JPRB
!
IMPLICIT NONE
!
#ifndef NOMPI
INCLUDE 'mpif.h'
#endif
!
!* 0.1 Declarations of arguments
! -------------------------
!
CHARACTER(LEN=6), INTENT(IN) :: HPROGRAM ! program calling surf. schemes
CHARACTER(LEN=3), INTENT(IN) :: HINIT ! choice of fields to initialize
LOGICAL, INTENT(IN) :: OLAND_USE !
INTEGER, INTENT(IN) :: KI ! number of points
INTEGER, INTENT(IN) :: KSV ! number of scalars
INTEGER, INTENT(IN) :: KSW ! number of short-wave spectral bands
CHARACTER(LEN=6), DIMENSION(KSV), INTENT(IN) :: HSV ! name of all scalar variables
REAL, DIMENSION(KI), INTENT(IN) :: PCO2 ! CO2 concentration (kg/m3)
REAL, DIMENSION(KI), INTENT(IN) :: PRHOA ! air density
REAL, DIMENSION(KI), INTENT(IN) :: PZENITH ! solar zenithal angle
REAL, DIMENSION(KI), INTENT(IN) :: PAZIM ! solar azimuthal angle (rad from N, clock)
REAL, DIMENSION(KSW), INTENT(IN) :: PSW_BANDS ! middle wavelength of each band
REAL, DIMENSION(KI,KSW),INTENT(OUT) :: PDIR_ALB ! direct albedo for each band
REAL, DIMENSION(KI,KSW),INTENT(OUT) :: PSCA_ALB ! diffuse albedo for each band
REAL, DIMENSION(KI), INTENT(OUT) :: PEMIS ! emissivity
REAL, DIMENSION(KI), INTENT(OUT) :: PTSRAD ! radiative temperature
INTEGER, INTENT(IN) :: KYEAR ! current year (UTC)
INTEGER, INTENT(IN) :: KMONTH ! current month (UTC)
INTEGER, INTENT(IN) :: KDAY ! current day (UTC)
REAL, INTENT(IN) :: PTIME ! current time since
! midnight (UTC, s)
!
CHARACTER(LEN=28), INTENT(IN) :: HATMFILE ! atmospheric file name
CHARACTER(LEN=6), INTENT(IN) :: HATMFILETYPE! atmospheric file type
CHARACTER(LEN=2), INTENT(IN) :: HTEST ! must be equal to 'OK'
!
!* 0.2 Declarations of local variables
! -------------------------------
!
CHARACTER(LEN=3) :: YREAD
!
INTEGER :: ISWB ! number of shortwave bands
INTEGER :: JTILE ! loop counter on tiles
INTEGER :: IRESP ! error return code
INTEGER :: ILUOUT ! unit of output listing file
INTEGER :: ICH ! unit of input chemical file
INTEGER :: IVERSION, IBUGFIX ! surface version
!
REAL, DIMENSION(:,:), ALLOCATABLE :: ZFRAC_TILE ! fraction of each surface type
REAL, DIMENSION(KI,KSW,NTILESFC) :: ZDIR_ALB_TILE ! direct albedo
REAL, DIMENSION(KI,KSW,NTILESFC) :: ZSCA_ALB_TILE ! diffuse albedo
REAL, DIMENSION(KI,NTILESFC) :: ZEMIS_TILE ! emissivity
REAL, DIMENSION(KI,NTILESFC) :: ZTSRAD_TILE ! radiative temperature
!
REAL, DIMENSION(:), ALLOCATABLE :: ZP_ZENITH ! zenithal angle
REAL, DIMENSION(:), ALLOCATABLE :: ZP_AZIM ! azimuthal angle
REAL, DIMENSION(:), ALLOCATABLE :: ZP_CO2 ! air CO2 concentration
REAL, DIMENSION(:), ALLOCATABLE :: ZP_RHOA ! air density
REAL, DIMENSION(:,:), ALLOCATABLE :: ZP_DIR_ALB ! direct albedo
REAL, DIMENSION(:,:), ALLOCATABLE :: ZP_SCA_ALB ! diffuse albedo
REAL, DIMENSION(:), ALLOCATABLE :: ZP_EMIS ! emissivity
REAL, DIMENSION(:), ALLOCATABLE :: ZP_TSRAD ! radiative temperature
!
REAL :: XTIME0
!
REAL(KIND=JPRB) :: ZHOOK_HANDLE
!-------------------------------------------------------------------------------
!
IF (LHOOK) CALL DR_HOOK('INIT_SURF_ATM_N',0,ZHOOK_HANDLE)
!
!
CPROGNAME=HPROGRAM
!
IF (HTEST/='OK') THEN
CALL ABOR1_SFX('INIT_SURF_ATMN: FATAL ERROR DURING ARGUMENT TRANSFER')
END IF
!
!-------------------------------------------------------------------------------
!
CALL SURF_VERSION
!
!-------------------------------------------------------------------------------
!
CALL GET_LUOUT(HPROGRAM,ILUOUT)
!
IF (LNAM_READ) THEN
!
!* 0. Defaults
! --------
!
! 0.1. Hard defaults
!
CALL DEFAULT_SSO(CROUGH,XFRACZ0,XCOEFBE)
CALL DEFAULT_CH_SURF_ATM(CCHEM_SURF_FILE,LCH_SURF_EMIS)
CALL DEFAULT_DIAG_SURF_ATM(N2M,LSURF_BUDGET,L2M_MIN_ZS,LRAD_BUDGET, &
LCOEF,LSURF_VARS,LSURF_BUDGETC, &
LRESET_BUDGETC,LSELECT, LPROVAR_TO_DIAG, &
LDIAG_GRID, LFRAC, XDIAG_TSTEP )
!
ENDIF
!
! 0.2. Defaults from file header
!
CALL READ_DEFAULT_SURF_ATM_n(HPROGRAM)
!
!* 1. Reading of configuration
! ------------------------
!
! 1.1. general options (diagnostics, etc...)
!
CALL READ_SURF_ATM_CONF_n(HPROGRAM)
!
CALL WRITE_COVER_TEX_START(HPROGRAM)
!
! 1.2. Date
!
SELECT CASE (HINIT)
CASE ('PGD')
TTIME%TDATE%YEAR = NUNDEF
TTIME%TDATE%MONTH= NUNDEF
TTIME%TDATE%DAY = NUNDEF
TTIME%TIME = XUNDEF
CASE ('PRE')
! check that diagnostics are off if hinit=='pre'
CALL PREP_CTRL_SURF_ATM(N2M,LSURF_BUDGET,L2M_MIN_ZS,LRAD_BUDGET,LCOEF,LSURF_VARS, &
LSURF_BUDGETC,LRESET_BUDGETC,LNOWRITE_TEXFILE,LSELECT,ILUOUT,&
LPROVAR_TO_DIAG)
! preparation of fields (date not present in PGD file)
IF (LNAM_READ) CALL READ_NAM_PREP_SURF_n(HPROGRAM)
CALL READ_SURF_ATM_DATE(HPROGRAM,HINIT,ILUOUT,HATMFILE,HATMFILETYPE,KYEAR,KMONTH,KDAY,PTIME,TTIME)
CASE DEFAULT
CALL INIT_IO_SURF_n(HPROGRAM,'FULL ','SURF ','READ ')
CALL READ_SURF(HPROGRAM,'DTCUR',TTIME,IRESP)
CALL END_IO_SURF_n(HPROGRAM)
END SELECT
!
!-----------------------------------------------------------------------------------------------------
! READ PGD FILE
!-----------------------------------------------------------------------------------------------------
!
! 1.3. Schemes used
!
! Initialisation for IO
!
CALL SET_SURFEX_FILEIN(HPROGRAM,'PGD ') ! change input file name to pgd name
CALL INIT_IO_SURF_n(HPROGRAM,'FULL ','SURF ','READ ')
!
CALL READ_SURF(HPROGRAM,'VERSION',IVERSION,IRESP)
CALL READ_SURF(HPROGRAM,'BUG',IBUGFIX,IRESP)
!
IF (IVERSION>7 .OR. IVERSION==7 .AND.IBUGFIX>=2) THEN
CALL READ_SURF(HPROGRAM,'STORAGETYPE',YREAD,IRESP)
ENDIF
! reading
!
CALL READ_SURF(HPROGRAM,'SEA ',CSEA ,IRESP)
CALL READ_SURF(HPROGRAM,'WATER ',CWATER ,IRESP)
CALL READ_SURF(HPROGRAM,'NATURE',CNATURE,IRESP)
CALL READ_SURF(HPROGRAM,'TOWN ',CTOWN ,IRESP)
!
CALL READ_SURF(HPROGRAM,'DIM_FULL ',NDIM_FULL, IRESP)
IF (HINIT=='PRE') THEN
!Initialize full dimension
NINDX2 = NDIM_FULL
NSIZE = NDIM_FULL
CALL END_IO_SURF_n(HPROGRAM)
!Initialize full mask with good dimension
IF ( ALLOCATED(NMASK_FULL) ) DEALLOCATE(NMASK_FULL)
CALL SET_SURFEX_FILEIN(HPROGRAM,'PGD ')
CALL INIT_IO_SURF_n(HPROGRAM,'FULL ','SURF ','READ ')
ALLOCATE(NWORK(NDIM_FULL))
ALLOCATE(XWORK(NDIM_FULL))
ALLOCATE(XWORK2(NDIM_FULL,2))
ALLOCATE(XWORK3(NDIM_FULL,10,10))
IF (NRANK==NPIO) THEN
ALLOCATE(NWORK_FULL(NDIM_FULL))
ALLOCATE(XWORK_FULL(NDIM_FULL))
ALLOCATE(XWORK2_FULL(NDIM_FULL,10))
ELSE
ALLOCATE(NWORK_FULL(0))
ALLOCATE(XWORK_FULL(0))
ALLOCATE(XWORK2_FULL(0,0))
ENDIF
ENDIF
CALL READ_SURF(HPROGRAM,'DIM_SEA ',NDIM_SEA, IRESP)
CALL READ_SURF(HPROGRAM,'DIM_NATURE',NDIM_NATURE,IRESP)
CALL READ_SURF(HPROGRAM,'DIM_WATER ',NDIM_WATER, IRESP)
CALL READ_SURF(HPROGRAM,'DIM_TOWN ',NDIM_TOWN, IRESP)
CALL READ_LECOCLIMAP(HPROGRAM,LECOCLIMAP)
CALL READ_ARRANGE_COVER(HPROGRAM,LWATER_TO_NATURE,LTOWN_TO_ROCK)
CALL READ_COVER_GARDEN(HPROGRAM,LGARDEN)
!
!* reads if climatological LAI is used or not for ecoclimap2. If not, looks for year to be used.
CALL READ_LCLIM_LAI(HPROGRAM,LCLIM_LAI)
IF (.NOT. LCLIM_LAI .AND. TTIME%TDATE%YEAR >= NECO2_START_YEAR &
.AND. TTIME%TDATE%YEAR <= NECO2_END_YEAR ) NYEAR=TTIME%TDATE%YEAR
CALL INI_DATA_COVER
CALL READ_ECO2_IRRIG(HPROGRAM)
!
CALL WRITE_COVER_TEX_COVER
!
!* 2. Cover fields and grid:
! ---------------------
!
! 2.0. Get number of points on this proc
!
CALL GET_SIZE_FULL_n(HPROGRAM,NDIM_FULL,NSIZE_FULL)
!
! 2.1. Read cover
!
CALL READ_COVER_n(HPROGRAM)
!
! 2.2. Read grid
!
ALLOCATE(XLAT (NSIZE_FULL))
ALLOCATE(XLON (NSIZE_FULL))
ALLOCATE(XMESH_SIZE (NSIZE_FULL))
ALLOCATE(XZ0EFFJPDIR(NSIZE_FULL))
CALL READ_GRID(HPROGRAM,CGRID,XGRID_PAR,XLAT,XLON,XMESH_SIZE,IRESP,XZ0EFFJPDIR)
NGRID_PAR=SIZE(XGRID_PAR)
!
IF (HPROGRAM/='AROME '.AND.NRANK==NPIO) THEN
!
IF (.NOT.ASSOCIATED(XGRID_FULL_PAR)) THEN
CALL READ_GRIDTYPE(HPROGRAM,CGRID,NGRID_PAR,NDIM_FULL,.FALSE.,HDIR='A')
ALLOCATE(XGRID_FULL_PAR(NGRID_PAR))
CALL READ_GRIDTYPE(HPROGRAM,CGRID,NGRID_PAR,NDIM_FULL,.TRUE.,&
XGRID_FULL_PAR,IRESP,HDIR='A')
ENDIF
!
ENDIF
!
!* 2.4 Allocation of chemical species name, chemical index of HSV array
!
CALL INIT_CHEMICAL_n(ILUOUT, KSV, HSV, NBEQ, CSV, NAEREQ, &
NSV_CHSBEG, NSV_CHSEND, NSV_AERBEG, NSV_AEREND, &
CCH_NAMES, CAER_NAMES, NDSTEQ, NSV_DSTBEG, &
NSV_DSTEND, NSLTEQ, NSV_SLTBEG, NSV_SLTEND )
!
! 2.4 Initialize Chemical Emissions
!
CALL READ_SURF(HPROGRAM,'CH_EMIS',LCH_EMIS,IRESP)
!
IF (LCH_EMIS) THEN
!
IF ( IVERSION<7 .OR. IVERSION==7 .AND. IBUGFIX<3 ) THEN
CCH_EMIS='AGGR'
ELSE
CALL READ_SURF(HPROGRAM,'CH_EMIS_OPT',CCH_EMIS,IRESP)
END IF
!
IF (CCH_EMIS=='AGGR') LRW_CH_EMIS = .TRUE.
!
IF (NBEQ > 0) THEN
!
CALL OPEN_NAMELIST(HPROGRAM,ICH,HFILE=CCHEM_SURF_FILE)
!
IF (LCH_SURF_EMIS) THEN
IF (CCH_EMIS=='AGGR') THEN
CALL CH_INIT_EMISSION_n(HPROGRAM,NSIZE_FULL,ICH,PRHOA)
ELSE
CALL CH_INIT_SNAP_n(HPROGRAM,NSIZE_FULL,HINIT,ICH,PRHOA)
END IF
ENDIF
!
!* 2.5 Initialization of dry deposition scheme (chemistry)
!
IF (HINIT=='ALL') CALL CH_INIT_DEPCONST(ICH,ILUOUT,CSV(NSV_CHSBEG:NSV_CHSEND))
!
CALL CLOSE_NAMELIST(HPROGRAM,ICH)
!
ENDIF
!
END IF
!
!* 2.5 Subgrid orography
!
CALL READ_SSO_n(HPROGRAM)
!
!* 2.6 Orographic roughness length
!
ALLOCATE(XZ0EFFIP(NSIZE_FULL))
ALLOCATE(XZ0EFFIM(NSIZE_FULL))
ALLOCATE(XZ0EFFJP(NSIZE_FULL))
ALLOCATE(XZ0EFFJM(NSIZE_FULL))
ALLOCATE(XZ0REL (NSIZE_FULL))
!
CALL SUBSCALE_Z0EFF(XAOSIP,XAOSIM,XAOSJP,XAOSJM, &
XHO2IP,XHO2IM,XHO2JP,XHO2JM,0., &
XZ0EFFIP,XZ0EFFIM,XZ0EFFJP,XZ0EFFJM, &
XZ0REL )
!
!* 2.7 Dummy fields
!
CALL READ_DUMMY_n(HPROGRAM)
!
! End of IO
!
CALL END_IO_SURF_n(HPROGRAM)
CALL SET_SURFEX_FILEIN(HPROGRAM,'PREP') ! restore input file name
!
!-----------------------------------------------------------------------------------------------------
! END READ PGD FILE
!-----------------------------------------------------------------------------------------------------
!
!
! Initialisation for IO
!
CALL INIT_IO_SURF_n(HPROGRAM,'FULL ','SURF ','READ ')
!
!* 2.8 Allocations and Initialization of diagnostics
!
IF (HINIT=='ALL') CALL ALLOC_DIAG_SURF_ATM_n(HPROGRAM,KSW)
!
!
!* Canopy fields if Beljaars et al 2004 parameterization is used
!
IF (CROUGH=='BE04') CALL READ_SSO_CANOPY_n(HPROGRAM,HINIT)
!
!* Precip fields (for ARPEGE/ALADIN run)
!
CALL READ_PRECIP_n(HPROGRAM,HINIT)
!
! End of IO
!
CALL END_IO_SURF_n(HPROGRAM)
!
!-----------------------------------------------------------------------------------------------------
!
!* 4. Initialization of masks for each surface
! ----------------------------------------
!
!* number of geographical points
NSIZE_NATURE = COUNT(XNATURE(:) > 0.0)
NSIZE_TOWN = COUNT(XTOWN(:) > 0.0)
NSIZE_WATER = COUNT(XWATER(:) > 0.0)
NSIZE_SEA = COUNT(XSEA(:) > 0.0)
!
ALLOCATE(NR_NATURE (NSIZE_NATURE))
ALLOCATE(NR_TOWN (NSIZE_TOWN ))
ALLOCATE(NR_WATER (NSIZE_WATER ))
ALLOCATE(NR_SEA (NSIZE_SEA ))
!
IF (NSIZE_SEA >0)CALL GET_1D_MASK( NSIZE_SEA, NSIZE_FULL, XSEA , NR_SEA )
IF (NSIZE_WATER >0)CALL GET_1D_MASK( NSIZE_WATER, NSIZE_FULL, XWATER , NR_WATER )
IF (NSIZE_TOWN >0)CALL GET_1D_MASK( NSIZE_TOWN, NSIZE_FULL, XTOWN , NR_TOWN )
IF (NSIZE_NATURE>0)CALL GET_1D_MASK( NSIZE_NATURE, NSIZE_FULL, XNATURE, NR_NATURE)
!
!* number of shortwave spectral bands
ISWB=SIZE(PSW_BANDS)
!
!* tile number
ALLOCATE(ZFRAC_TILE(NSIZE_FULL,NTILESFC))
JTILE = 0
!
!
!* 5. Default values
! --------------
!
ZDIR_ALB_TILE = XUNDEF
ZSCA_ALB_TILE = XUNDEF
ZEMIS_TILE = XUNDEF
ZTSRAD_TILE = XUNDEF
!
#ifndef NOMPI
XTIME0 = MPI_WTIME()
#endif
!
!* 6. Initialization of sea
! ---------------------
!
JTILE = JTILE + 1
ZFRAC_TILE(:,JTILE) = XSEA(:)
!
! pack variables which are arguments to this routine
CALL PACK_SURF_INIT_ARG(NSIZE_SEA,NR_SEA)
!
! initialization
IF (NDIM_SEA>0) &
CALL INIT_SEA_n(HPROGRAM,HINIT,NSIZE_SEA,KSV,KSW, &
HSV,ZP_CO2,ZP_RHOA, &
ZP_ZENITH,ZP_AZIM,PSW_BANDS,ZP_DIR_ALB,ZP_SCA_ALB, &
ZP_EMIS,ZP_TSRAD, &
KYEAR,KMONTH,KDAY,PTIME, HATMFILE,HATMFILETYPE, &
'OK' )
!
!
CALL UNPACK_SURF_INIT_ARG(JTILE,NSIZE_SEA,NR_SEA)
!
#ifndef NOMPI
XTIME_INIT_SEA = XTIME_INIT_SEA + (MPI_WTIME() - XTIME0)*100./MAX(1,NSIZE_SEA)
XTIME0 = MPI_WTIME()
#endif
!
!* 7. Initialization of lakes
! -----------------------
!
!
JTILE = JTILE + 1
ZFRAC_TILE(:,JTILE) = XWATER(:)
!
! pack variables which are arguments to this routine
CALL PACK_SURF_INIT_ARG(NSIZE_WATER,NR_WATER)
!
! initialization
IF (NDIM_WATER>0) &
CALL INIT_INLAND_WATER_n(HPROGRAM,HINIT,NSIZE_WATER,KSV,KSW, &
HSV,ZP_CO2,ZP_RHOA, &
ZP_ZENITH,ZP_AZIM,PSW_BANDS,ZP_DIR_ALB,ZP_SCA_ALB, &
ZP_EMIS,ZP_TSRAD, &
KYEAR,KMONTH,KDAY,PTIME, HATMFILE,HATMFILETYPE, &
'OK' )
!
CALL UNPACK_SURF_INIT_ARG(JTILE,NSIZE_WATER,NR_WATER)
!
#ifndef NOMPI
XTIME_INIT_WATER = XTIME_INIT_WATER + (MPI_WTIME() - XTIME0)*100./MAX(1,NSIZE_WATER)
XTIME0 = MPI_WTIME()
#endif
!
!* 8. Initialization of vegetation scheme
! -----------------------------------
!
!
JTILE = JTILE + 1
ZFRAC_TILE(:,JTILE) = XNATURE(:)
!
! pack variables which are arguments to this routine
CALL PACK_SURF_INIT_ARG(NSIZE_NATURE,NR_NATURE)
!
!$OMP SINGLE
IF ( ALLOCATED(NWG_LAYER_TOT) ) DEALLOCATE(NWG_LAYER_TOT)
ALLOCATE(NWG_LAYER_TOT(NDIM_FULL,1))
!$OMP END SINGLE
!
! initialization
IF (NDIM_NATURE>0) &
CALL INIT_NATURE_n(HPROGRAM,HINIT,OLAND_USE,NSIZE_NATURE,KSV,KSW, &
HSV,ZP_CO2,ZP_RHOA, &
ZP_ZENITH,ZP_AZIM,PSW_BANDS,ZP_DIR_ALB,ZP_SCA_ALB, &
ZP_EMIS,ZP_TSRAD, &
KYEAR,KMONTH,KDAY,PTIME, HATMFILE,HATMFILETYPE, &
'OK' )
!
!
CALL UNPACK_SURF_INIT_ARG(JTILE,NSIZE_NATURE,NR_NATURE)
!
#ifndef NOMPI
XTIME_INIT_NATURE = XTIME_INIT_NATURE + (MPI_WTIME() - XTIME0)*100./MAX(1,NSIZE_NATURE)
XTIME0 = MPI_WTIME()
#endif
!
!* 9. Initialization of urban scheme
! ------------------------------
!
!
JTILE = JTILE + 1
ZFRAC_TILE(:,JTILE) = XTOWN(:)
!
! pack variables which are arguments to this routine
CALL PACK_SURF_INIT_ARG(NSIZE_TOWN,NR_TOWN)
!
! initialization
IF (NDIM_TOWN>0) &
CALL INIT_TOWN_n(HPROGRAM,HINIT,NSIZE_TOWN,KSV,KSW, &
HSV,ZP_CO2,ZP_RHOA, &
ZP_ZENITH,ZP_AZIM,PSW_BANDS,ZP_DIR_ALB,ZP_SCA_ALB, &
ZP_EMIS,ZP_TSRAD, &
KYEAR,KMONTH,KDAY,PTIME, HATMFILE,HATMFILETYPE, &
'OK' )
!
!
CALL UNPACK_SURF_INIT_ARG(JTILE,NSIZE_TOWN,NR_TOWN)
!
#ifndef NOMPI
XTIME_INIT_TOWN = XTIME_INIT_TOWN + (MPI_WTIME() - XTIME0)*100./MAX(1,NSIZE_TOWN)
#endif
!
!
!* 10. Output radiative fields
! -----------------------
!
IF (SIZE(PDIR_ALB)>0) &
CALL AVERAGE_RAD(ZFRAC_TILE, &
ZDIR_ALB_TILE, ZSCA_ALB_TILE, ZEMIS_TILE, ZTSRAD_TILE, &
PDIR_ALB, PSCA_ALB, PEMIS, PTSRAD )
DEALLOCATE(ZFRAC_TILE)
!
!
!
!* 11. check diagnostics flag
! -----------------------
!
IF(LPROVAR_TO_DIAG)THEN
IF (NDIM_WATER>0.AND.CWATER=='FLAKE ') THEN
CALL ABOR1_SFX('For the moment LPROVAR_TO_DIAG can not be activated with CWATER=FLAKE')
ENDIF
IF (NDIM_TOWN>0.AND.CTOWN=='TEB') THEN
CALL ABOR1_SFX('For the moment LPROVAR_TO_DIAG can not be activated with CTOWN=TEB')
ENDIF
ENDIF
!
!-------------------------------------------------------------------------------
CALL WRITE_COVER_TEX_END(HPROGRAM)
!-------------------------------------------------------------------------------
!==============================================================================
IF (LHOOK) CALL DR_HOOK('INIT_SURF_ATM_N',1,ZHOOK_HANDLE)
CONTAINS
!==============================================================================
SUBROUTINE PACK_SURF_INIT_ARG(KSIZE,KMASK)
!
INTEGER, INTENT(IN) :: KSIZE
INTEGER, INTENT(IN), DIMENSION(:) :: KMASK
INTEGER :: JJ
REAL(KIND=JPRB) :: ZHOOK_HANDLE
!
! input arguments:
!
IF (LHOOK) CALL DR_HOOK('PACK_SURF_INIT_ARG',0,ZHOOK_HANDLE)
ALLOCATE(ZP_CO2 (KSIZE))
ALLOCATE(ZP_RHOA (KSIZE))
ALLOCATE(ZP_ZENITH (KSIZE))
ALLOCATE(ZP_AZIM (KSIZE))
!
!
! output arguments:
!
ALLOCATE(ZP_DIR_ALB(KSIZE,ISWB))
ALLOCATE(ZP_SCA_ALB(KSIZE,ISWB))
ALLOCATE(ZP_EMIS (KSIZE))
ALLOCATE(ZP_TSRAD (KSIZE))
!
IF (KSIZE>0) THEN
ZP_CO2 = 6.E-4
ZP_RHOA = 1.2
ZP_ZENITH = 0.
ZP_AZIM = 0.
ZP_DIR_ALB = XUNDEF
ZP_SCA_ALB = XUNDEF
ZP_EMIS = XUNDEF
ZP_TSRAD = XUNDEF
END IF
!
DO JJ=1,KSIZE
IF (SIZE(PCO2)>0) &
ZP_CO2 (JJ) = PCO2 (KMASK(JJ))
IF (SIZE(PRHOA)>0) &
ZP_RHOA (JJ) = PRHOA (KMASK(JJ))
IF (SIZE(PZENITH)>0) &
ZP_ZENITH(JJ) = PZENITH (KMASK(JJ))
IF (SIZE(PAZIM )>0) &
ZP_AZIM (JJ) = PAZIM (KMASK(JJ))
ENDDO
IF (LHOOK) CALL DR_HOOK('PACK_SURF_INIT_ARG',1,ZHOOK_HANDLE)
!
END SUBROUTINE PACK_SURF_INIT_ARG
!==============================================================================
SUBROUTINE UNPACK_SURF_INIT_ARG(KTILE,KSIZE,KMASK)
!
INTEGER, INTENT(IN) :: KTILE, KSIZE
!
INTEGER, INTENT(IN), DIMENSION(:) :: KMASK
!
INTEGER :: JJ ! loop counter
REAL(KIND=JPRB) :: ZHOOK_HANDLE
!
!
IF (LHOOK) CALL DR_HOOK('UNPACK_SURF_INIT_ARG',0,ZHOOK_HANDLE)
DO JJ=1,KSIZE
IF (SIZE(ZTSRAD_TILE)>0) &
ZTSRAD_TILE (KMASK(JJ),KTILE) = ZP_TSRAD (JJ)
IF (SIZE(ZDIR_ALB_TILE)>0) &
ZDIR_ALB_TILE(KMASK(JJ),:,KTILE)= ZP_DIR_ALB (JJ,:)
IF (SIZE(ZSCA_ALB_TILE)>0) &
ZSCA_ALB_TILE(KMASK(JJ),:,KTILE)= ZP_SCA_ALB (JJ,:)
IF (SIZE(ZEMIS_TILE)>0) &
ZEMIS_TILE (KMASK(JJ),KTILE) = ZP_EMIS (JJ)
ENDDO
!
DEALLOCATE(ZP_CO2 )
DEALLOCATE(ZP_RHOA )
DEALLOCATE(ZP_ZENITH )
DEALLOCATE(ZP_AZIM )
DEALLOCATE(ZP_DIR_ALB)
DEALLOCATE(ZP_SCA_ALB)
DEALLOCATE(ZP_EMIS )
DEALLOCATE(ZP_TSRAD )
IF (LHOOK) CALL DR_HOOK('UNPACK_SURF_INIT_ARG',1,ZHOOK_HANDLE)
!
END SUBROUTINE UNPACK_SURF_INIT_ARG
!==============================================================================
!
END SUBROUTINE INIT_SURF_ATM_n