[524] | 1 | ! |
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[1319] | 2 | ! $Id: etat0_netcdf.F90 1328 2010-03-18 13:26:23Z musat $ |
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[524] | 3 | ! |
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[1319] | 4 | !------------------------------------------------------------------------------- |
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| 5 | ! |
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| 6 | SUBROUTINE etat0_netcdf(ib, masque, letat0) |
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| 7 | ! |
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| 8 | !------------------------------------------------------------------------------- |
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| 9 | ! Purpose: Creates initial states |
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| 10 | !------------------------------------------------------------------------------- |
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| 11 | ! Note: This routine is designed to work for Earth |
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| 12 | !------------------------------------------------------------------------------- |
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| 13 | #ifdef CPP_EARTH |
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| 14 | USE startvar |
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| 15 | USE ioipsl |
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| 16 | USE dimphy |
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| 17 | USE infotrac |
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| 18 | USE fonte_neige_mod |
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| 19 | USE pbl_surface_mod |
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| 20 | USE phys_state_var_mod |
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| 21 | USE filtreg_mod |
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| 22 | USE regr_lat_time_climoz_m, ONLY: regr_lat_time_climoz |
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| 23 | USE conf_phys_m, ONLY: conf_phys |
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| 24 | USE netcdf, ONLY : NF90_OPEN, NF90_NOWRITE, NF90_CLOSE, NF90_NOERR |
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[1146] | 25 | #endif |
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[1319] | 26 | IMPLICIT NONE |
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| 27 | !------------------------------------------------------------------------------- |
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| 28 | ! Arguments: |
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[524] | 29 | #include "dimensions.h" |
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| 30 | #include "paramet.h" |
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[1319] | 31 | #include "iniprint.h" |
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| 32 | LOGICAL, INTENT(IN) :: ib ! barycentric interpolat. |
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| 33 | REAL, DIMENSION(iip1,jjp1), INTENT(INOUT) :: masque ! land mask |
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| 34 | LOGICAL, INTENT(IN) :: letat0 ! F: masque only required |
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| 35 | #ifndef CPP_EARTH |
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| 36 | WRITE(lunout,*)'limit_netcdf: Earth-specific routine, needs Earth physics' |
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| 37 | #else |
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| 38 | !------------------------------------------------------------------------------- |
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| 39 | ! Local variables: |
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[524] | 40 | #include "comgeom2.h" |
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| 41 | #include "comvert.h" |
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| 42 | #include "comconst.h" |
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| 43 | #include "indicesol.h" |
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| 44 | #include "dimsoil.h" |
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| 45 | #include "temps.h" |
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[1319] | 46 | REAL, DIMENSION(klon) :: tsol, qsol |
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| 47 | REAL, DIMENSION(klon) :: sn, rugmer, run_off_lic_0 |
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| 48 | REAL, DIMENSION(iip1,jjp1) :: orog, rugo, psol, phis |
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| 49 | REAL, DIMENSION(iip1,jjp1,llm+1) :: p3d |
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| 50 | REAL, DIMENSION(iip1,jjp1,llm) :: uvent, t3d, tpot, qsat, qd |
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| 51 | REAL, DIMENSION(iip1,jjm ,llm) :: vvent |
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| 52 | REAL, DIMENSION(:,:,:,:), ALLOCATABLE :: q3d |
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| 53 | REAL, DIMENSION(klon,nbsrf) :: qsolsrf, snsrf, evap |
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| 54 | REAL, DIMENSION(klon,nbsrf) :: frugs, agesno |
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| 55 | REAL, DIMENSION(klon,nsoilmx,nbsrf) :: tsoil |
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[1146] | 56 | |
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[1319] | 57 | !--- Local variables for sea-ice reading: |
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| 58 | INTEGER :: iml_lic, jml_lic, llm_tmp |
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| 59 | INTEGER :: ttm_tmp, iret, fid |
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| 60 | INTEGER, DIMENSION(1) :: itaul |
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| 61 | REAL, DIMENSION(1) :: lev |
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| 62 | REAL :: date |
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| 63 | REAL, DIMENSION(:,:), ALLOCATABLE :: lon_lic, lat_lic, fraclic |
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| 64 | REAL, DIMENSION(:), ALLOCATABLE :: dlon_lic, dlat_lic |
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| 65 | REAL, DIMENSION(iip1,jjp1) :: flic_tmp |
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[524] | 66 | |
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[1319] | 67 | !--- Misc |
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| 68 | CHARACTER(LEN=80) :: x, fmt |
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| 69 | INTEGER :: i, j, l, ji |
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| 70 | REAL, DIMENSION(iip1,jjp1,llm) :: alpha, beta, pk, pls, y |
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| 71 | REAL, DIMENSION(ip1jmp1) :: pks |
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[524] | 72 | |
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| 73 | #include "comdissnew.h" |
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| 74 | #include "control.h" |
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| 75 | #include "serre.h" |
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| 76 | #include "clesphys.h" |
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| 77 | |
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[1319] | 78 | REAL, DIMENSION(iip1,jjp1,llm) :: masse |
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| 79 | INTEGER :: itau, iday |
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| 80 | REAL :: xpn, xps, time, phystep |
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| 81 | REAL, DIMENSION(iim) :: xppn, xpps |
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| 82 | REAL, DIMENSION(ip1jmp1,llm) :: pbaru, phi, w |
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| 83 | REAL, DIMENSION(ip1jm ,llm) :: pbarv |
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| 84 | REAL, DIMENSION(klon) :: fder |
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[524] | 85 | |
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[1319] | 86 | !--- Local variables for ocean mask reading: |
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| 87 | INTEGER :: nid_o2a, iml_omask, jml_omask |
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| 88 | LOGICAL :: couple=.FALSE. |
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| 89 | REAL, DIMENSION(:,:), ALLOCATABLE :: lon_omask, lat_omask, ocemask, ocetmp |
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| 90 | REAL, DIMENSION(:), ALLOCATABLE :: dlon_omask,dlat_omask |
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| 91 | REAL, DIMENSION(klon) :: ocemask_fi |
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| 92 | INTEGER, DIMENSION(klon-2) :: isst |
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| 93 | REAL, DIMENSION(iim,jjp1) :: zx_tmp_2d |
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| 94 | REAL :: dummy |
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| 95 | LOGICAL :: ok_newmicro, ok_journe, ok_mensuel, ok_instan, ok_hf |
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| 96 | LOGICAL :: ok_LES, ok_ade, ok_aie, aerosol_couple, new_aod |
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| 97 | INTEGER :: iflag_radia, flag_aerosol |
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| 98 | REAL :: bl95_b0, bl95_b1, fact_cldcon, facttemps, ratqsbas, ratqshaut |
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| 99 | REAL :: tau_ratqs |
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| 100 | INTEGER :: iflag_cldcon, iflag_ratqs, iflag_coupl, iflag_clos, iflag_wake |
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| 101 | INTEGER :: iflag_thermals, nsplit_thermals |
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| 102 | INTEGER :: iflag_thermals_ed, iflag_thermals_optflux |
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| 103 | REAL :: tau_thermals, solarlong0, seuil_inversion |
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| 104 | INTEGER :: read_climoz ! read ozone climatology |
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| 105 | ! Allowed values are 0, 1 and 2 |
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| 106 | ! 0: do not read an ozone climatology |
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| 107 | ! 1: read a single ozone climatology that will be used day and night |
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| 108 | ! 2: read two ozone climatologies, the average day and night |
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| 109 | ! climatology and the daylight climatology |
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| 110 | !------------------------------------------------------------------------------- |
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| 111 | !--- Constants |
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| 112 | pi = 4. * ATAN(1.) |
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| 113 | rad = 6371229. |
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| 114 | daysec = 86400. |
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| 115 | omeg = 2.*pi/daysec |
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| 116 | g = 9.8 |
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| 117 | kappa = 0.2857143 |
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| 118 | cpp = 1004.70885 |
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| 119 | preff = 101325. |
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| 120 | pa = 50000. |
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| 121 | jmp1 = jjm + 1 |
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[524] | 122 | |
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[1319] | 123 | !--- CONSTRUCT A GRID |
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| 124 | CALL conf_phys( ok_journe, ok_mensuel, ok_instan, ok_hf, ok_LES, & |
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| 125 | solarlong0,seuil_inversion, & |
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| 126 | fact_cldcon, facttemps,ok_newmicro,iflag_radia, & |
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| 127 | iflag_cldcon, & |
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| 128 | iflag_ratqs,ratqsbas,ratqshaut,tau_ratqs, & |
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| 129 | ok_ade, ok_aie, aerosol_couple, & |
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| 130 | flag_aerosol, new_aod, & |
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| 131 | bl95_b0, bl95_b1, & |
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| 132 | iflag_thermals,nsplit_thermals,tau_thermals, & |
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| 133 | iflag_thermals_ed,iflag_thermals_optflux, & |
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| 134 | iflag_coupl,iflag_clos,iflag_wake, read_climoz ) |
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[786] | 135 | |
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[1319] | 136 | ! co2_ppm0 : initial value of atmospheric CO2 from .def file (co2_ppm value) |
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| 137 | co2_ppm0 = co2_ppm |
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[988] | 138 | |
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[1319] | 139 | dtvr = daysec/FLOAT(day_step) |
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| 140 | WRITE(lunout,*)'dtvr',dtvr |
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[988] | 141 | |
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[1319] | 142 | CALL iniconst() |
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| 143 | CALL inigeom() |
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[1279] | 144 | |
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[1319] | 145 | !--- Initializations for tracers |
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| 146 | CALL infotrac_init |
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| 147 | ALLOCATE(q3d(iip1,jjp1,llm,nqtot)) |
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[524] | 148 | |
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[1319] | 149 | CALL inifilr() |
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| 150 | CALL phys_state_var_init(read_climoz) |
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[1279] | 151 | |
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[1319] | 152 | rlat(1) = ASIN(1.0) |
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| 153 | DO j=2,jjm; rlat((j-2)*iim+2:(j-1)*iim+1)=rlatu(j); END DO |
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| 154 | rlat(klon) = - ASIN(1.0) |
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| 155 | rlat(:)=rlat(:)*(180.0/pi) |
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[1279] | 156 | |
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[1319] | 157 | rlon(1) = 0.0 |
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| 158 | DO j=2,jjm; rlon((j-2)*iim+2:(j-1)*iim+1)=rlonv(1:iim); END DO |
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| 159 | rlon(klon) = 0.0 |
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| 160 | rlon(:)=rlon(:)*(180.0/pi) |
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[524] | 161 | |
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[1319] | 162 | ! For a coupled simulation, the ocean mask from ocean model is used to compute |
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| 163 | ! the weights an to insure ocean fractions are the same for atmosphere and ocean |
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| 164 | ! Otherwise, mask is created using Relief file. |
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[1146] | 165 | |
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[1319] | 166 | WRITE(lunout,*)'Essai de lecture masque ocean' |
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| 167 | iret = NF90_OPEN("o2a.nc", NF90_NOWRITE, nid_o2a) |
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| 168 | IF(iret/=NF90_NOERR) THEN |
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| 169 | WRITE(lunout,*)'ATTENTION!! pas de fichier o2a.nc trouve' |
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| 170 | WRITE(lunout,*)'Run force' |
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| 171 | x='masque' |
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| 172 | masque(:,:)=0.0 |
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[1323] | 173 | CALL startget_phys2d(x, iip1, jjp1, rlonv, rlatu, masque, 0.0, jjm, & |
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| 174 | & rlonu, rlatv, ib) |
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[1319] | 175 | WRITE(lunout,*)'MASQUE construit : Masque' |
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| 176 | WRITE(lunout,'(97I1)') nINT(masque) |
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| 177 | CALL gr_dyn_fi(1, iip1, jjp1, klon, masque, zmasq) |
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| 178 | WHERE( zmasq(:)<EPSFRA) zmasq(:)=0. |
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| 179 | WHERE(1.-zmasq(:)<EPSFRA) zmasq(:)=1. |
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| 180 | ELSE |
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[1323] | 181 | WRITE(lunout,*)'ATTENTION!! fichier o2a.nc trouve' |
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| 182 | WRITE(lunout,*)'Run couple' |
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[1319] | 183 | couple=.true. |
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| 184 | iret=NF90_CLOSE(nid_o2a) |
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| 185 | CALL flininfo("o2a.nc", iml_omask, jml_omask, llm_tmp, ttm_tmp, nid_o2a) |
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| 186 | IF(iml_omask/=iim .OR.jml_omask/=jjp1) THEN |
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| 187 | WRITE(lunout,*)'Dimensions non compatibles pour masque ocean' |
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| 188 | WRITE(lunout,*)'iim = ',iim,' iml_omask = ',iml_omask |
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| 189 | WRITE(lunout,*)'jjp1 = ',jjp1,' jml_omask = ',jml_omask |
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| 190 | CALL abort_gcm('etat0_netcdf','Dimensions non compatibles pour masque oc& |
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| 191 | &ean',1) |
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| 192 | END IF |
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| 193 | ALLOCATE( ocemask(iml_omask,jml_omask), ocetmp(iml_omask,jml_omask)) |
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| 194 | ALLOCATE( lon_omask(iml_omask,jml_omask),lat_omask(iml_omask,jml_omask)) |
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| 195 | ALLOCATE(dlon_omask(iml_omask), dlat_omask(jml_omask)) |
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[1323] | 196 | CALL flinopen("o2a.nc", .FALSE., iml_omask, jml_omask, llm_tmp, lon_omask,& |
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| 197 | & lat_omask, lev, ttm_tmp, itaul, date, dt, fid) |
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| 198 | CALL flinget(fid, 'OceMask', iml_omask, jml_omask, llm_tmp, ttm_tmp, & |
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| 199 | & 1, 1, ocetmp) |
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[1319] | 200 | CALL flinclo(fid) |
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| 201 | dlon_omask(1:iml_omask) = lon_omask(1:iml_omask,1) |
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| 202 | dlat_omask(1:jml_omask) = lat_omask(1,1:jml_omask) |
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| 203 | ocemask = ocetmp |
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| 204 | IF(dlat_omask(1)<dlat_omask(jml_omask)) THEN |
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| 205 | DO j=1,jml_omask |
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| 206 | ocemask(:,j) = ocetmp(:,jml_omask-j+1) |
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| 207 | END DO |
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| 208 | END IF |
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| 209 | ! |
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| 210 | ! Ocean mask to physical grid |
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| 211 | !******************************************************************************* |
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| 212 | WRITE(lunout,*)'ocemask ' |
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| 213 | WRITE(fmt,"(i4,'i1)')")iml_omask ; fmt='('//ADJUSTL(fmt) |
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| 214 | WRITE(lunout,fmt)int(ocemask) |
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| 215 | ocemask_fi(1)=ocemask(1,1) |
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[1328] | 216 | DO j=2,jjm; ocemask_fi((j-2)*iim+2:(j-1)*iim+1)=ocemask(1:iim,j); END DO |
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[1319] | 217 | ocemask_fi(klon)=ocemask(1,jjp1) |
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| 218 | zmasq=1.-ocemask_fi |
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| 219 | END IF |
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[1146] | 220 | |
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[1319] | 221 | CALL gr_fi_dyn(1,klon,iip1,jjp1,zmasq,masque) |
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[524] | 222 | |
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[1319] | 223 | ! The startget calls need to be replaced by a call to restget to get the |
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| 224 | ! values in the restart file |
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| 225 | x = 'relief'; orog(:,:) = 0.0 |
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[1323] | 226 | CALL startget_phys2d(x,iip1,jjp1,rlonv,rlatu, orog, 0.0,jjm,rlonu,rlatv,ib,& |
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| 227 | & masque) |
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[524] | 228 | |
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[1319] | 229 | x = 'rugosite'; rugo(:,:) = 0.0 |
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[1323] | 230 | CALL startget_phys2d(x,iip1,jjp1,rlonv,rlatu, rugo, 0.0,jjm, rlonu,rlatv,ib) |
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[1319] | 231 | ! WRITE(lunout,'(49I1)') INT(orog(:,:)*10) |
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| 232 | ! WRITE(lunout,'(49I1)') INT(rugo(:,:)*10) |
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[524] | 233 | |
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[1319] | 234 | ! Sub-surfaces initialization |
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| 235 | !******************************************************************************* |
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| 236 | pctsrf=0. |
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| 237 | x = 'psol'; psol(:,:) = 0.0 |
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[1323] | 238 | CALL startget_phys2d(x,iip1,jjp1,rlonv,rlatu,psol,0.0,jjm,rlonu,rlatv,ib) |
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[1319] | 239 | ! WRITE(lunout,*) 'PSOL :', psol(10,20) |
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| 240 | ! WRITE(lunout,*) ap(:), bp(:) |
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[524] | 241 | |
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[1319] | 242 | ! Mid-levels pressure computation |
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| 243 | !******************************************************************************* |
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| 244 | CALL pression(ip1jmp1, ap, bp, psol, p3d) |
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| 245 | CALL exner_hyb(ip1jmp1, psol, p3d, alpha, beta, pks, pk, y) |
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| 246 | pls(:,:,:)=preff*(pk(:,:,:)/cpp)**(1./kappa) |
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| 247 | ! WRITE(lunout,*) 'P3D :', p3d(10,20,:) |
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| 248 | ! WRITE(lunout,*) 'PK:', pk(10,20,:) |
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| 249 | ! WRITE(lunout,*) 'PLS :', pls(10,20,:) |
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[524] | 250 | |
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[1319] | 251 | x = 'surfgeo'; phis(:,:) = 0.0 |
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[1323] | 252 | CALL startget_phys2d(x,iip1,jjp1,rlonv,rlatu,phis, 0.0,jjm, rlonu,rlatv,ib) |
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[524] | 253 | |
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[1319] | 254 | x = 'u'; uvent(:,:,:) = 0.0 |
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[1323] | 255 | CALL startget_dyn(x,rlonu,rlatu,pls,y,uvent,0.0, & |
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| 256 | & rlonv,rlatv,ib) |
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[524] | 257 | |
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[1319] | 258 | x = 'v'; vvent(:,:,:) = 0.0 |
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[1323] | 259 | CALL startget_dyn(x, rlonv,rlatv,pls(:, :jjm, :),y(:, :jjm, :),vvent,0.0, & |
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| 260 | & rlonu,rlatu(:jjm),ib) |
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[1279] | 261 | |
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[1319] | 262 | x = 't'; t3d(:,:,:) = 0.0 |
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[1323] | 263 | CALL startget_dyn(x,rlonv,rlatu,pls,y,t3d,0.0, & |
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| 264 | & rlonu,rlatv,ib) |
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[1279] | 265 | |
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[1319] | 266 | x = 'tpot'; tpot(:,:,:) = 0.0 |
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[1323] | 267 | CALL startget_dyn(x,rlonv,rlatu,pls,pk,tpot,0.0, & |
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| 268 | & rlonu,rlatv,ib) |
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[524] | 269 | |
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[1319] | 270 | WRITE(lunout,*) 'T3D min,max:',minval(t3d(:,:,:)),maxval(t3d(:,:,:)) |
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| 271 | WRITE(lunout,*) 'PLS min,max:',minval(pls(:,:,:)),maxval(pls(:,:,:)) |
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[524] | 272 | |
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[1319] | 273 | ! Humidity at saturation computation |
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| 274 | !******************************************************************************* |
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| 275 | WRITE(lunout,*) 'avant q_sat' |
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| 276 | CALL q_sat(llm*jjp1*iip1, t3d, pls, qsat) |
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| 277 | WRITE(lunout,*) 'apres q_sat' |
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| 278 | WRITE(lunout,*) 'QSAT min,max:',minval(qsat(:,:,:)),maxval(qsat(:,:,:)) |
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| 279 | ! WRITE(lunout,*) 'QSAT :',qsat(10,20,:) |
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[524] | 280 | |
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[1319] | 281 | x = 'q'; qd (:,:,:) = 0.0 |
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[1323] | 282 | CALL startget_dyn(x,rlonv,rlatu,pls,qsat,qd,0.0, rlonu,rlatv,ib) |
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[1319] | 283 | q3d(:,:,:,:) = 0.0 ; q3d(:,:,:,1) = qd(:,:,:) |
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[524] | 284 | |
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[1319] | 285 | !--- OZONE CLIMATOLOGY |
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| 286 | IF(read_climoz>=1) CALL regr_lat_time_climoz(read_climoz) |
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[524] | 287 | |
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[1319] | 288 | x = 'tsol'; tsol(:) = 0.0 |
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[1323] | 289 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,tsol,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 290 | |
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[1319] | 291 | x = 'qsol'; qsol(:) = 0.0 |
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[1323] | 292 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,qsol,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 293 | |
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[1319] | 294 | x = 'snow'; sn(:) = 0.0 |
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[1323] | 295 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,sn,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 296 | |
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[1319] | 297 | x = 'rads'; radsol(:) = 0.0 |
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[1323] | 298 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,radsol,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 299 | |
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[1319] | 300 | x = 'rugmer'; rugmer(:) = 0.0 |
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[1323] | 301 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,rugmer,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 302 | |
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[1319] | 303 | x = 'zmea'; zmea(:) = 0.0 |
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[1323] | 304 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,zmea,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 305 | |
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[1319] | 306 | x = 'zstd'; zstd(:) = 0.0 |
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[1323] | 307 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,zstd,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 308 | |
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[1319] | 309 | x = 'zsig'; zsig(:) = 0.0 |
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[1323] | 310 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,zsig,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 311 | |
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[1319] | 312 | x = 'zgam'; zgam(:) = 0.0 |
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[1323] | 313 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,zgam,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 314 | |
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[1319] | 315 | x = 'zthe'; zthe(:) = 0.0 |
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[1323] | 316 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,zthe,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 317 | |
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[1319] | 318 | x = 'zpic'; zpic(:) = 0.0 |
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[1323] | 319 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,zpic,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 320 | |
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[1319] | 321 | x = 'zval'; zval(:) = 0.0 |
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[1323] | 322 | CALL startget_phys1d(x,iip1,jjp1,rlonv,rlatu,klon,zval,0.0,jjm,rlonu,rlatv,ib) |
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[524] | 323 | |
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[1319] | 324 | ! WRITE(lunout,'(48I3)') 'TSOL :', INT(tsol(2:klon)-273) |
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[524] | 325 | |
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[1319] | 326 | ! Soil ice file reading for soil fraction and soil ice fraction |
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| 327 | !******************************************************************************* |
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| 328 | CALL flininfo("landiceref.nc", iml_lic, jml_lic, llm_tmp, ttm_tmp, fid) |
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| 329 | ALLOCATE( lat_lic(iml_lic,jml_lic),lon_lic(iml_lic, jml_lic)) |
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| 330 | ALLOCATE(dlat_lic(jml_lic), dlon_lic(iml_lic)) |
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| 331 | ALLOCATE( fraclic(iml_lic,jml_lic)) |
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[1323] | 332 | CALL flinopen("landiceref.nc", .FALSE., iml_lic, jml_lic, llm_tmp, & |
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| 333 | & lon_lic, lat_lic, lev, ttm_tmp, itaul, date, dt, fid) |
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[1319] | 334 | CALL flinget(fid, 'landice', iml_lic, jml_lic, llm_tmp, ttm_tmp, 1,1, fraclic) |
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| 335 | CALL flinclo(fid) |
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[524] | 336 | |
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[1319] | 337 | ! Interpolation on model T-grid |
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| 338 | !******************************************************************************* |
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| 339 | WRITE(lunout,*)'dimensions de landice iml_lic, jml_lic : ',iml_lic,jml_lic |
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| 340 | ! conversion if coordinates are in degrees |
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| 341 | IF(MAXVAL(lon_lic)>pi) lon_lic=lon_lic*pi/180. |
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| 342 | IF(MAXVAL(lat_lic)>pi) lat_lic=lat_lic*pi/180. |
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| 343 | dlon_lic(:)=lon_lic(:,1) |
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| 344 | dlat_lic(:)=lat_lic(1,:) |
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[1323] | 345 | CALL grille_m( iml_lic, jml_lic, dlon_lic, dlat_lic, fraclic, iim,jjp1, & |
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| 346 | & rlonv, rlatu, flic_tmp(1:iim,:) ) |
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[1319] | 347 | flic_tmp(iip1,:)=flic_tmp(1,:) |
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[524] | 348 | |
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[1319] | 349 | !--- To the physical grid |
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| 350 | CALL gr_dyn_fi(1, iip1, jjp1, klon, flic_tmp, pctsrf(:,is_lic)) |
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[886] | 351 | |
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[1319] | 352 | !--- Adequation with soil/sea mask |
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| 353 | WHERE(pctsrf(:,is_lic)<EPSFRA) pctsrf(:,is_lic)=0. |
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| 354 | WHERE(zmasq(:)<EPSFRA) pctsrf(:,is_lic)=0. |
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| 355 | pctsrf(:,is_ter)=zmasq(:) |
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| 356 | DO ji=1,klon |
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| 357 | IF(zmasq(ji)>EPSFRA) THEN |
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| 358 | IF(pctsrf(ji,is_lic)>=zmasq(ji)) THEN |
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| 359 | pctsrf(ji,is_lic)=zmasq(ji) |
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| 360 | pctsrf(ji,is_ter)=0. |
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| 361 | ELSE |
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| 362 | pctsrf(ji,is_ter)=zmasq(ji)-pctsrf(ji,is_lic) |
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| 363 | IF(pctsrf(ji,is_ter)<EPSFRA) THEN |
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| 364 | pctsrf(ji,is_ter)=0. |
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| 365 | pctsrf(ji,is_lic)=zmasq(ji) |
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| 366 | END IF |
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| 367 | END IF |
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| 368 | END IF |
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| 369 | END DO |
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[786] | 370 | |
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[1319] | 371 | ! sub-surface ocean and sea ice (sea ice set to zero for start) |
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| 372 | !******************************************************************************* |
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| 373 | pctsrf(:,is_oce)=(1.-zmasq(:)) |
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| 374 | WHERE(pctsrf(:,is_oce)<EPSFRA) pctsrf(:,is_oce)=0. |
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| 375 | IF(couple) pctsrf(:,is_oce)=ocemask_fi(:) |
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| 376 | isst=0 |
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| 377 | WHERE(pctsrf(2:klon-1,is_oce)>0.) isst=1 |
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[524] | 378 | |
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[1319] | 379 | ! It is checked that the sub-surfaces sum is equal to 1 |
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| 380 | !******************************************************************************* |
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| 381 | ji=COUNT((ABS(SUM(pctsrf(:,:),dim=2))-1.0)>EPSFRA) |
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| 382 | IF(ji/=0) WRITE(lunout,*) 'pb repartition sous maille pour ',ji,' points' |
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| 383 | CALL gr_fi_ecrit(1, klon, iim, jjp1, zmasq, zx_tmp_2d) |
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| 384 | ! WRITE(fmt,"(i3,')')")iim; fmt='(i'//ADJUSTL(fmt) |
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| 385 | ! WRITE(lunout,*)'zmasq = ' |
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| 386 | ! WRITE(lunout,TRIM(fmt))NINT(zx_tmp_2d) |
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| 387 | CALL gr_fi_dyn(1, klon, iip1, jjp1, zmasq, masque) |
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| 388 | WRITE(fmt,"(i4,'i1)')")iip1 ; fmt='('//ADJUSTL(fmt) |
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| 389 | WRITE(lunout,*) 'MASQUE construit : Masque' |
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| 390 | WRITE(lunout,TRIM(fmt))NINT(masque(:,:)) |
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[786] | 391 | |
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[1319] | 392 | ! Intermediate computation |
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| 393 | !******************************************************************************* |
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| 394 | CALL massdair(p3d,masse) |
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| 395 | WRITE(lunout,*)' ALPHAX ',alphax |
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| 396 | DO l=1,llm |
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| 397 | xppn(:)=aire(1:iim,1 )*masse(1:iim,1 ,l) |
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| 398 | xpps(:)=aire(1:iim,jjp1)*masse(1:iim,jjp1,l) |
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| 399 | xpn=SUM(xppn)/apoln |
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| 400 | xps=SUM(xpps)/apols |
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| 401 | masse(:,1 ,l)=xpn |
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| 402 | masse(:,jjp1,l)=xps |
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| 403 | END DO |
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| 404 | q3d(iip1,:,:,:)=q3d(1,:,:,:) |
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| 405 | phis(iip1,:) = phis(1,:) |
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[786] | 406 | |
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[1319] | 407 | IF(.NOT.letat0) RETURN |
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[1146] | 408 | |
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[1319] | 409 | ! Writing |
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| 410 | !******************************************************************************* |
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| 411 | CALL inidissip(lstardis,nitergdiv,nitergrot,niterh,tetagdiv,tetagrot,tetatemp) |
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| 412 | WRITE(lunout,*)'sortie inidissip' |
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| 413 | itau=0 |
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| 414 | itau_dyn=0 |
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| 415 | itau_phy=0 |
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| 416 | iday=dayref+itau/day_step |
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| 417 | time=FLOAT(itau-(iday-dayref)*day_step)/day_step |
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| 418 | IF(time>1.) THEN |
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| 419 | time=time-1 |
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| 420 | iday=iday+1 |
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| 421 | END IF |
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| 422 | day_ref=dayref |
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| 423 | annee_ref=anneeref |
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| 424 | |
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| 425 | CALL geopot( ip1jmp1, tpot, pk, pks, phis, phi ) |
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| 426 | WRITE(lunout,*)'sortie geopot' |
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| 427 | |
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| 428 | CALL caldyn0( itau, uvent, vvent, tpot, psol, masse, pk, phis, & |
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| 429 | phi, w, pbaru, pbarv, time+iday-dayref) |
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| 430 | WRITE(lunout,*)'sortie caldyn0' |
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| 431 | CALL dynredem0( "start.nc", dayref, phis) |
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| 432 | WRITE(lunout,*)'sortie dynredem0' |
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| 433 | CALL dynredem1( "start.nc", 0.0, vvent, uvent, tpot, q3d, masse, psol) |
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| 434 | WRITE(lunout,*)'sortie dynredem1' |
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| 435 | |
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| 436 | ! Physical initial state writting |
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| 437 | !******************************************************************************* |
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| 438 | WRITE(lunout,*)'phystep ',dtvr,iphysiq,nbapp_rad |
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| 439 | phystep = dtvr * FLOAT(iphysiq) |
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| 440 | radpas = NINT (86400./phystep/ FLOAT(nbapp_rad) ) |
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| 441 | WRITE(lunout,*)'phystep =', phystep, radpas |
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| 442 | |
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| 443 | ! Init: tsol, qsol, sn, evap, tsoil, rain_fall, snow_fall, solsw, sollw, frugs |
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| 444 | !******************************************************************************* |
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| 445 | DO i=1,nbsrf; ftsol(:,i) = tsol; END DO |
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| 446 | DO i=1,nbsrf; snsrf(:,i) = sn; END DO |
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| 447 | falb1(:,is_ter) = 0.08; falb1(:,is_lic) = 0.6 |
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| 448 | falb1(:,is_oce) = 0.5; falb1(:,is_sic) = 0.6 |
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| 449 | falb2 = falb1 |
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| 450 | evap(:,:) = 0. |
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| 451 | DO i=1,nbsrf; qsolsrf(:,i)=150.; END DO |
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| 452 | DO i=1,nbsrf; DO j=1,nsoilmx; tsoil(:,j,i) = tsol; END DO; END DO |
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| 453 | rain_fall = 0.; snow_fall = 0. |
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| 454 | solsw = 165.; sollw = -53. |
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| 455 | t_ancien = 273.15 |
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| 456 | q_ancien = 0. |
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| 457 | agesno = 0. |
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| 458 | frugs(:,is_oce) = rugmer(:) |
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| 459 | frugs(:,is_ter) = MAX(1.0e-05,zstd(:)*zsig(:)/2.0) |
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| 460 | frugs(:,is_lic) = MAX(1.0e-05,zstd(:)*zsig(:)/2.0) |
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| 461 | frugs(:,is_sic) = 0.001 |
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| 462 | fder = 0.0 |
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| 463 | clwcon = 0.0 |
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| 464 | rnebcon = 0.0 |
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| 465 | ratqs = 0.0 |
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| 466 | run_off_lic_0 = 0.0 |
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| 467 | rugoro = 0.0 |
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| 468 | |
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| 469 | ! Before phyredem calling, surface modules and values to be saved in startphy.nc |
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| 470 | ! are initialized |
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| 471 | !******************************************************************************* |
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| 472 | dummy = 1.0 |
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| 473 | pbl_tke(:,:,:) = 1.e-8 |
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| 474 | zmax0(:) = 40. |
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| 475 | f0(:) = 1.e-5 |
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| 476 | ema_work1(:,:) = 0. |
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| 477 | ema_work2(:,:) = 0. |
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| 478 | wake_deltat(:,:) = 0. |
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| 479 | wake_deltaq(:,:) = 0. |
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| 480 | wake_s(:) = 0. |
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| 481 | wake_cstar(:) = 0. |
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| 482 | wake_fip(:) = 0. |
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| 483 | CALL fonte_neige_init(run_off_lic_0) |
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| 484 | CALL pbl_surface_init( qsol, fder, snsrf, qsolsrf, evap, frugs, agesno, tsoil ) |
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| 485 | CALL phyredem( "startphy.nc" ) |
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| 486 | |
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[1323] | 487 | ! WRITE(lunout,*)'CCCCCCCCCCCCCCCCCC REACTIVER SORTIE VISU DANS ETAT0' |
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| 488 | ! WRITE(lunout,*)'entree histclo' |
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[1319] | 489 | CALL histclo() |
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| 490 | |
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[1146] | 491 | #endif |
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| 492 | !#endif of #ifdef CPP_EARTH |
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[1319] | 493 | RETURN |
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| 494 | |
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| 495 | END SUBROUTINE etat0_netcdf |
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| 496 | ! |
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| 497 | !------------------------------------------------------------------------------- |
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