[3809] | 1 | ! $Id: phyetat0.F90 2251 2015-03-26 17:28:25Z fhourdin $ |
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| 2 | |
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| 3 | SUBROUTINE phyetat0 (fichnom, clesphy0, tabcntr0) |
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| 4 | |
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| 5 | USE dimphy, only: klon, zmasq, klev, nslay |
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| 6 | USE iophy, ONLY : init_iophy_new |
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| 7 | USE ocean_cpl_mod, ONLY : ocean_cpl_init |
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| 8 | USE fonte_neige_mod, ONLY : fonte_neige_init |
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| 9 | USE pbl_surface_mod, ONLY : pbl_surface_init |
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| 10 | USE surface_data, ONLY : type_ocean, version_ocean |
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| 11 | USE phys_state_var_mod, ONLY : ancien_ok, clwcon, detr_therm, dtime, & |
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| 12 | qsol, fevap, z0m, z0h, agesno, & |
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| 13 | du_gwd_rando, dv_gwd_rando, entr_therm, f0, fm_therm, & |
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| 14 | falb_dir, falb_dif, & |
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| 15 | ftsol, pbl_tke, pctsrf, q_ancien, radpas, radsol, rain_fall, ratqs, & |
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| 16 | rlat, rlon, rnebcon, rugoro, sig1, snow_fall, solaire_etat0, sollw, sollwdown, & |
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| 17 | solsw, t_ancien, u_ancien, v_ancien, w01, wake_cstar, wake_deltaq, & |
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| 18 | wake_deltat, wake_delta_pbl_TKE, delta_tsurf, wake_fip, wake_pe, & |
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| 19 | wake_s, zgam, & |
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| 20 | zmax0, zmea, zpic, zsig, & |
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| 21 | zstd, zthe, zval, ale_bl, ale_bl_trig, alp_bl |
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| 22 | USE iostart, ONLY : close_startphy, get_field, get_var, open_startphy |
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| 23 | USE infotrac, only: nbtr, type_trac, tname, niadv |
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| 24 | USE traclmdz_mod, ONLY : traclmdz_from_restart |
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| 25 | USE carbon_cycle_mod, ONLY : carbon_cycle_tr, carbon_cycle_cpl, co2_send |
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| 26 | USE indice_sol_mod, only: nbsrf, is_ter, epsfra, is_lic, is_oce, is_sic |
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| 27 | USE ocean_slab_mod, ONLY: tslab, seaice, tice, ocean_slab_init |
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| 28 | |
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| 29 | IMPLICIT none |
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| 30 | !====================================================================== |
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| 31 | ! Auteur(s) Z.X. Li (LMD/CNRS) date: 19930818 |
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| 32 | ! Objet: Lecture de l'etat initial pour la physique |
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| 33 | !====================================================================== |
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| 34 | include "dimensions.h" |
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| 35 | include "netcdf.inc" |
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| 36 | include "dimsoil.h" |
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| 37 | include "clesphys.h" |
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| 38 | include "temps.h" |
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| 39 | include "thermcell.h" |
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| 40 | include "compbl.h" |
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| 41 | include "YOMCST.h" |
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| 42 | !====================================================================== |
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| 43 | CHARACTER*(*) fichnom |
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| 44 | |
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| 45 | ! les variables globales lues dans le fichier restart |
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| 46 | |
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| 47 | REAL tsoil(klon, nsoilmx, nbsrf) |
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| 48 | REAL qsurf(klon, nbsrf) |
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| 49 | REAL snow(klon, nbsrf) |
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| 50 | real fder(klon) |
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| 51 | REAL run_off_lic_0(klon) |
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| 52 | REAL fractint(klon) |
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| 53 | REAL trs(klon, nbtr) |
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| 54 | REAL zts(klon) |
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| 55 | |
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| 56 | CHARACTER*6 ocean_in |
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| 57 | LOGICAL ok_veget_in |
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| 58 | |
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| 59 | INTEGER longcles |
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| 60 | PARAMETER ( longcles = 20 ) |
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| 61 | REAL clesphy0( longcles ) |
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| 62 | |
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| 63 | REAL xmin, xmax |
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| 64 | |
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| 65 | INTEGER nid, nvarid |
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| 66 | INTEGER ierr, i, nsrf, isoil , k |
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| 67 | INTEGER length |
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| 68 | PARAMETER (length=100) |
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| 69 | INTEGER it, iiq, isw |
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| 70 | REAL tab_cntrl(length), tabcntr0(length) |
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| 71 | CHARACTER*7 str7 |
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| 72 | CHARACTER*2 str2 |
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| 73 | LOGICAL :: found,phyetat0_get,phyetat0_srf |
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| 74 | |
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| 75 | ! FH1D |
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| 76 | ! real iolat(jjm+1) |
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| 77 | real iolat(jjm+1-1/(iim*jjm)) |
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| 78 | |
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| 79 | ! Ouvrir le fichier contenant l'etat initial: |
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| 80 | |
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| 81 | CALL open_startphy(fichnom) |
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| 82 | |
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| 83 | ! Lecture des parametres de controle: |
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| 84 | |
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| 85 | CALL get_var("controle", tab_cntrl) |
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| 86 | |
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| 87 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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| 88 | ! FH 2008/05/09 On elimine toutes les clefs physiques dans la dynamique |
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| 89 | ! Les constantes de la physiques sont lues dans la physique seulement. |
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| 90 | ! Les egalites du type |
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| 91 | ! tab_cntrl( 5 )=clesphy0(1) |
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| 92 | ! sont remplacees par |
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| 93 | ! clesphy0(1)=tab_cntrl( 5 ) |
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| 94 | ! On inverse aussi la logique. |
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| 95 | ! On remplit les tab_cntrl avec les parametres lus dans les .def |
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| 96 | !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! |
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| 97 | |
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| 98 | DO i = 1, length |
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| 99 | tabcntr0( i ) = tab_cntrl( i ) |
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| 100 | ENDDO |
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| 101 | |
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| 102 | tab_cntrl(1)=dtime |
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| 103 | tab_cntrl(2)=radpas |
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| 104 | |
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| 105 | ! co2_ppm : value from the previous time step |
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| 106 | IF (carbon_cycle_tr .OR. carbon_cycle_cpl) THEN |
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| 107 | co2_ppm = tab_cntrl(3) |
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| 108 | RCO2 = co2_ppm * 1.0e-06 * 44.011/28.97 |
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| 109 | ! ELSE : keep value from .def |
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| 110 | END IF |
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| 111 | |
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| 112 | ! co2_ppm0 : initial value of atmospheric CO2 (from create_etat0_limit.e .def) |
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| 113 | co2_ppm0 = tab_cntrl(16) |
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| 114 | |
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| 115 | solaire_etat0 = tab_cntrl(4) |
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| 116 | tab_cntrl(5)=iflag_con |
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| 117 | tab_cntrl(6)=nbapp_rad |
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| 118 | |
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| 119 | if (cycle_diurne) tab_cntrl( 7) =1. |
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| 120 | if (soil_model) tab_cntrl( 8) =1. |
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| 121 | if (new_oliq) tab_cntrl( 9) =1. |
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| 122 | if (ok_orodr) tab_cntrl(10) =1. |
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| 123 | if (ok_orolf) tab_cntrl(11) =1. |
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| 124 | if (ok_limitvrai) tab_cntrl(12) =1. |
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| 125 | |
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| 126 | itau_phy = tab_cntrl(15) |
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| 127 | |
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| 128 | clesphy0(1)=tab_cntrl( 5 ) |
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| 129 | clesphy0(2)=tab_cntrl( 6 ) |
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| 130 | clesphy0(3)=tab_cntrl( 7 ) |
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| 131 | clesphy0(4)=tab_cntrl( 8 ) |
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| 132 | clesphy0(5)=tab_cntrl( 9 ) |
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| 133 | clesphy0(6)=tab_cntrl( 10 ) |
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| 134 | clesphy0(7)=tab_cntrl( 11 ) |
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| 135 | clesphy0(8)=tab_cntrl( 12 ) |
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| 136 | |
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| 137 | ! Lecture des latitudes (coordonnees): |
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| 138 | |
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| 139 | CALL get_field("latitude", rlat) |
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| 140 | |
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| 141 | ! Lecture des longitudes (coordonnees): |
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| 142 | |
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| 143 | CALL get_field("longitude", rlon) |
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| 144 | |
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| 145 | ! Lecture du masque terre mer |
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| 146 | |
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| 147 | CALL get_field("masque", zmasq, found) |
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| 148 | IF (.NOT. found) THEN |
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| 149 | PRINT*, 'phyetat0: Le champ <masque> est absent' |
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| 150 | PRINT *, 'fichier startphy non compatible avec phyetat0' |
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| 151 | ENDIF |
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| 152 | |
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| 153 | ! Lecture des fractions pour chaque sous-surface |
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| 154 | |
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| 155 | ! initialisation des sous-surfaces |
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| 156 | |
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| 157 | pctsrf = 0. |
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| 158 | |
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| 159 | ! fraction de terre |
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| 160 | |
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| 161 | CALL get_field("FTER", pctsrf(:, is_ter), found) |
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| 162 | IF (.NOT. found) PRINT*, 'phyetat0: Le champ <FTER> est absent' |
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| 163 | |
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| 164 | ! fraction de glace de terre |
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| 165 | |
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| 166 | CALL get_field("FLIC", pctsrf(:, is_lic), found) |
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| 167 | IF (.NOT. found) PRINT*, 'phyetat0: Le champ <FLIC> est absent' |
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| 168 | |
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| 169 | ! fraction d'ocean |
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| 170 | |
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| 171 | CALL get_field("FOCE", pctsrf(:, is_oce), found) |
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| 172 | IF (.NOT. found) PRINT*, 'phyetat0: Le champ <FOCE> est absent' |
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| 173 | |
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| 174 | ! fraction glace de mer |
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| 175 | |
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| 176 | CALL get_field("FSIC", pctsrf(:, is_sic), found) |
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| 177 | IF (.NOT. found) PRINT*, 'phyetat0: Le champ <FSIC> est absent' |
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| 178 | |
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| 179 | ! Verification de l'adequation entre le masque et les sous-surfaces |
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| 180 | |
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| 181 | fractint( 1 : klon) = pctsrf(1 : klon, is_ter) & |
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| 182 | + pctsrf(1 : klon, is_lic) |
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| 183 | DO i = 1 , klon |
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| 184 | IF ( abs(fractint(i) - zmasq(i) ) .GT. EPSFRA ) THEN |
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| 185 | WRITE(*, *) 'phyetat0: attention fraction terre pas ', & |
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| 186 | 'coherente ', i, zmasq(i), pctsrf(i, is_ter) & |
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| 187 | , pctsrf(i, is_lic) |
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| 188 | WRITE(*, *) 'Je force la coherence zmasq=fractint' |
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| 189 | zmasq(i) = fractint(i) |
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| 190 | ENDIF |
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| 191 | END DO |
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| 192 | fractint (1 : klon) = pctsrf(1 : klon, is_oce) & |
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| 193 | + pctsrf(1 : klon, is_sic) |
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| 194 | DO i = 1 , klon |
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| 195 | IF ( abs( fractint(i) - (1. - zmasq(i))) .GT. EPSFRA ) THEN |
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| 196 | WRITE(*, *) 'phyetat0 attention fraction ocean pas ', & |
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| 197 | 'coherente ', i, zmasq(i) , pctsrf(i, is_oce) & |
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| 198 | , pctsrf(i, is_sic) |
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| 199 | WRITE(*, *) 'Je force la coherence zmasq=1.-fractint' |
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| 200 | zmasq(i) = 1. - fractint(i) |
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| 201 | ENDIF |
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| 202 | END DO |
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| 203 | |
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| 204 | ! Lecture des temperatures du sol: |
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| 205 | |
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| 206 | CALL get_field("TS", ftsol(:, 1), found) |
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| 207 | IF (.NOT. found) THEN |
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| 208 | PRINT*, 'phyetat0: Le champ <TS> est absent' |
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| 209 | PRINT*, ' Mais je vais essayer de lire TS**' |
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| 210 | DO nsrf = 1, nbsrf |
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| 211 | IF (nsrf.GT.99) THEN |
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| 212 | PRINT*, "Trop de sous-mailles" |
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| 213 | call abort_gcm("phyetat0", "", 1) |
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| 214 | ENDIF |
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| 215 | WRITE(str2, '(i2.2)') nsrf |
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| 216 | CALL get_field("TS"//str2, ftsol(:, nsrf)) |
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| 217 | |
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| 218 | xmin = 1.0E+20 |
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| 219 | xmax = -1.0E+20 |
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| 220 | DO i = 1, klon |
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| 221 | xmin = MIN(ftsol(i, nsrf), xmin) |
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| 222 | xmax = MAX(ftsol(i, nsrf), xmax) |
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| 223 | ENDDO |
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| 224 | PRINT*, 'Temperature du sol TS**:', nsrf, xmin, xmax |
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| 225 | ENDDO |
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| 226 | ELSE |
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| 227 | PRINT*, 'phyetat0: Le champ <TS> est present' |
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| 228 | PRINT*, ' J ignore donc les autres temperatures TS**' |
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| 229 | xmin = 1.0E+20 |
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| 230 | xmax = -1.0E+20 |
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| 231 | DO i = 1, klon |
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| 232 | xmin = MIN(ftsol(i, 1), xmin) |
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| 233 | xmax = MAX(ftsol(i, 1), xmax) |
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| 234 | ENDDO |
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| 235 | PRINT*, 'Temperature du sol <TS>', xmin, xmax |
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| 236 | DO nsrf = 2, nbsrf |
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| 237 | DO i = 1, klon |
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| 238 | ftsol(i, nsrf) = ftsol(i, 1) |
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| 239 | ENDDO |
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| 240 | ENDDO |
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| 241 | ENDIF |
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| 242 | |
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| 243 | !=================================================================== |
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| 244 | ! Lecture des albedo difus et direct |
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| 245 | |
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| 246 | DO nsrf = 1, nbsrf |
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| 247 | DO isw=1, nsw |
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| 248 | IF (isw.GT.99 .AND. nsrf.GT.99) THEN |
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| 249 | PRINT*, "Trop de bandes SW ou sous-mailles" |
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| 250 | call abort_gcm("phyetat0", "", 1) |
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| 251 | ENDIF |
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| 252 | WRITE(str7, '(i2.2, "srf", i2.2)') isw, nsrf |
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| 253 | |
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| 254 | CALL get_field('A_dir_SW'//str7, falb_dir(:, isw, nsrf), found) |
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| 255 | IF (.NOT. found) THEN |
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| 256 | PRINT*, "phyetat0: Le champ <A_dir_SW"//str7//"> est absent" |
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| 257 | PRINT*, " Il prend donc la valeur de surface" |
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| 258 | DO i=1, klon |
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| 259 | falb_dir(i, isw, nsrf)=0.2 |
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| 260 | ENDDO |
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| 261 | ENDIF |
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| 262 | CALL get_field('A_dif_SW'//str7, falb_dif(:, isw, nsrf), found) |
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| 263 | IF (.NOT. found) THEN |
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| 264 | PRINT*, "phyetat0: Le champ <A_dif_SW"//str7//"> est absent" |
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| 265 | PRINT*, " Il prend donc la valeur de surface" |
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| 266 | DO i=1, klon |
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| 267 | falb_dif(i, isw, nsrf)=0.2 |
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| 268 | ENDDO |
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| 269 | ENDIF |
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| 270 | ENDDO |
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| 271 | ENDDO |
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| 272 | |
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| 273 | !=================================================================== |
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| 274 | ! Lecture des temperatures du sol profond: |
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| 275 | |
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| 276 | DO nsrf = 1, nbsrf |
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| 277 | DO isoil=1, nsoilmx |
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| 278 | IF (isoil.GT.99 .AND. nsrf.GT.99) THEN |
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| 279 | PRINT*, "Trop de couches ou sous-mailles" |
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| 280 | call abort_gcm("phyetat0", "", 1) |
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| 281 | ENDIF |
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| 282 | WRITE(str7, '(i2.2, "srf", i2.2)') isoil, nsrf |
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| 283 | |
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| 284 | CALL get_field('Tsoil'//str7, tsoil(:, isoil, nsrf), found) |
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| 285 | IF (.NOT. found) THEN |
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| 286 | PRINT*, "phyetat0: Le champ <Tsoil"//str7//"> est absent" |
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| 287 | PRINT*, " Il prend donc la valeur de surface" |
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| 288 | DO i=1, klon |
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| 289 | tsoil(i, isoil, nsrf)=ftsol(i, nsrf) |
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| 290 | ENDDO |
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| 291 | ENDIF |
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| 292 | ENDDO |
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| 293 | ENDDO |
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| 294 | |
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| 295 | !=================================================================== |
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| 296 | ! Lecture de l'humidite de l'air juste au dessus du sol: |
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| 297 | |
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| 298 | CALL get_field("QS", qsurf(:, 1), found) |
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| 299 | IF (.NOT. found) THEN |
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| 300 | PRINT*, 'phyetat0: Le champ <QS> est absent' |
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| 301 | PRINT*, ' Mais je vais essayer de lire QS**' |
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| 302 | DO nsrf = 1, nbsrf |
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| 303 | IF (nsrf.GT.99) THEN |
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| 304 | PRINT*, "Trop de sous-mailles" |
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| 305 | call abort_gcm("phyetat0", "", 1) |
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| 306 | ENDIF |
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| 307 | WRITE(str2, '(i2.2)') nsrf |
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| 308 | CALL get_field("QS"//str2, qsurf(:, nsrf)) |
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| 309 | xmin = 1.0E+20 |
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| 310 | xmax = -1.0E+20 |
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| 311 | DO i = 1, klon |
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| 312 | xmin = MIN(qsurf(i, nsrf), xmin) |
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| 313 | xmax = MAX(qsurf(i, nsrf), xmax) |
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| 314 | ENDDO |
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| 315 | PRINT*, 'Humidite pres du sol QS**:', nsrf, xmin, xmax |
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| 316 | ENDDO |
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| 317 | ELSE |
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| 318 | PRINT*, 'phyetat0: Le champ <QS> est present' |
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| 319 | PRINT*, ' J ignore donc les autres humidites QS**' |
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| 320 | xmin = 1.0E+20 |
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| 321 | xmax = -1.0E+20 |
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| 322 | DO i = 1, klon |
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| 323 | xmin = MIN(qsurf(i, 1), xmin) |
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| 324 | xmax = MAX(qsurf(i, 1), xmax) |
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| 325 | ENDDO |
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| 326 | PRINT*, 'Humidite pres du sol <QS>', xmin, xmax |
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| 327 | DO nsrf = 2, nbsrf |
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| 328 | DO i = 1, klon |
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| 329 | qsurf(i, nsrf) = qsurf(i, 1) |
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| 330 | ENDDO |
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| 331 | ENDDO |
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| 332 | ENDIF |
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| 333 | |
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| 334 | ! Eau dans le sol (pour le modele de sol "bucket") |
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| 335 | |
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| 336 | CALL get_field("QSOL", qsol, found) |
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| 337 | IF (.NOT. found) THEN |
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| 338 | PRINT*, 'phyetat0: Le champ <QSOL> est absent' |
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| 339 | PRINT*, ' Valeur par defaut nulle' |
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| 340 | qsol(:)=0. |
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| 341 | ENDIF |
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| 342 | |
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| 343 | xmin = 1.0E+20 |
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| 344 | xmax = -1.0E+20 |
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| 345 | DO i = 1, klon |
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| 346 | xmin = MIN(qsol(i), xmin) |
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| 347 | xmax = MAX(qsol(i), xmax) |
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| 348 | ENDDO |
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| 349 | PRINT*, 'Eau dans le sol (mm) <QSOL>', xmin, xmax |
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| 350 | |
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| 351 | ! Lecture de neige au sol: |
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| 352 | |
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| 353 | CALL get_field("SNOW", snow(:, 1), found) |
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| 354 | IF (.NOT. found) THEN |
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| 355 | PRINT*, 'phyetat0: Le champ <SNOW> est absent' |
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| 356 | PRINT*, ' Mais je vais essayer de lire SNOW**' |
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| 357 | DO nsrf = 1, nbsrf |
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| 358 | IF (nsrf.GT.99) THEN |
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| 359 | PRINT*, "Trop de sous-mailles" |
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| 360 | call abort_gcm("phyetat0", "", 1) |
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| 361 | ENDIF |
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| 362 | WRITE(str2, '(i2.2)') nsrf |
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| 363 | CALL get_field( "SNOW"//str2, snow(:, nsrf)) |
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| 364 | xmin = 1.0E+20 |
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| 365 | xmax = -1.0E+20 |
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| 366 | DO i = 1, klon |
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| 367 | xmin = MIN(snow(i, nsrf), xmin) |
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| 368 | xmax = MAX(snow(i, nsrf), xmax) |
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| 369 | ENDDO |
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| 370 | PRINT*, 'Neige du sol SNOW**:', nsrf, xmin, xmax |
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| 371 | ENDDO |
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| 372 | ELSE |
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| 373 | PRINT*, 'phyetat0: Le champ <SNOW> est present' |
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| 374 | PRINT*, ' J ignore donc les autres neiges SNOW**' |
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| 375 | xmin = 1.0E+20 |
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| 376 | xmax = -1.0E+20 |
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| 377 | DO i = 1, klon |
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| 378 | xmin = MIN(snow(i, 1), xmin) |
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| 379 | xmax = MAX(snow(i, 1), xmax) |
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| 380 | ENDDO |
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| 381 | PRINT*, 'Neige du sol <SNOW>', xmin, xmax |
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| 382 | DO nsrf = 2, nbsrf |
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| 383 | DO i = 1, klon |
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| 384 | snow(i, nsrf) = snow(i, 1) |
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| 385 | ENDDO |
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| 386 | ENDDO |
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| 387 | ENDIF |
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| 388 | |
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| 389 | ! Lecture de evaporation: |
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| 390 | |
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| 391 | CALL get_field("EVAP", fevap(:, 1), found) |
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| 392 | IF (.NOT. found) THEN |
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| 393 | PRINT*, 'phyetat0: Le champ <EVAP> est absent' |
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| 394 | PRINT*, ' Mais je vais essayer de lire EVAP**' |
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| 395 | DO nsrf = 1, nbsrf |
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| 396 | IF (nsrf.GT.99) THEN |
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| 397 | PRINT*, "Trop de sous-mailles" |
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| 398 | call abort_gcm("phyetat0", "", 1) |
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| 399 | ENDIF |
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| 400 | WRITE(str2, '(i2.2)') nsrf |
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| 401 | CALL get_field("EVAP"//str2, fevap(:, nsrf)) |
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| 402 | xmin = 1.0E+20 |
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| 403 | xmax = -1.0E+20 |
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| 404 | DO i = 1, klon |
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| 405 | xmin = MIN(fevap(i, nsrf), xmin) |
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| 406 | xmax = MAX(fevap(i, nsrf), xmax) |
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| 407 | ENDDO |
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| 408 | PRINT*, 'fevap du sol EVAP**:', nsrf, xmin, xmax |
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| 409 | ENDDO |
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| 410 | ELSE |
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| 411 | PRINT*, 'phyetat0: Le champ <EVAP> est present' |
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| 412 | PRINT*, ' J ignore donc les autres EVAP**' |
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| 413 | xmin = 1.0E+20 |
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| 414 | xmax = -1.0E+20 |
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| 415 | DO i = 1, klon |
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| 416 | xmin = MIN(fevap(i, 1), xmin) |
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| 417 | xmax = MAX(fevap(i, 1), xmax) |
---|
| 418 | ENDDO |
---|
| 419 | PRINT*, 'Evap du sol <EVAP>', xmin, xmax |
---|
| 420 | DO nsrf = 2, nbsrf |
---|
| 421 | DO i = 1, klon |
---|
| 422 | fevap(i, nsrf) = fevap(i, 1) |
---|
| 423 | ENDDO |
---|
| 424 | ENDDO |
---|
| 425 | ENDIF |
---|
| 426 | |
---|
| 427 | ! Lecture precipitation liquide: |
---|
| 428 | |
---|
| 429 | CALL get_field("rain_f", rain_fall) |
---|
| 430 | xmin = 1.0E+20 |
---|
| 431 | xmax = -1.0E+20 |
---|
| 432 | DO i = 1, klon |
---|
| 433 | xmin = MIN(rain_fall(i), xmin) |
---|
| 434 | xmax = MAX(rain_fall(i), xmax) |
---|
| 435 | ENDDO |
---|
| 436 | PRINT*, 'Precipitation liquide rain_f:', xmin, xmax |
---|
| 437 | |
---|
| 438 | ! Lecture precipitation solide: |
---|
| 439 | |
---|
| 440 | CALL get_field("snow_f", snow_fall) |
---|
| 441 | xmin = 1.0E+20 |
---|
| 442 | xmax = -1.0E+20 |
---|
| 443 | DO i = 1, klon |
---|
| 444 | xmin = MIN(snow_fall(i), xmin) |
---|
| 445 | xmax = MAX(snow_fall(i), xmax) |
---|
| 446 | ENDDO |
---|
| 447 | PRINT*, 'Precipitation solide snow_f:', xmin, xmax |
---|
| 448 | |
---|
| 449 | ! Lecture rayonnement solaire au sol: |
---|
| 450 | |
---|
| 451 | CALL get_field("solsw", solsw, found) |
---|
| 452 | IF (.NOT. found) THEN |
---|
| 453 | PRINT*, 'phyetat0: Le champ <solsw> est absent' |
---|
| 454 | PRINT*, 'mis a zero' |
---|
| 455 | solsw(:) = 0. |
---|
| 456 | ENDIF |
---|
| 457 | xmin = 1.0E+20 |
---|
| 458 | xmax = -1.0E+20 |
---|
| 459 | DO i = 1, klon |
---|
| 460 | xmin = MIN(solsw(i), xmin) |
---|
| 461 | xmax = MAX(solsw(i), xmax) |
---|
| 462 | ENDDO |
---|
| 463 | PRINT*, 'Rayonnement solaire au sol solsw:', xmin, xmax |
---|
| 464 | |
---|
| 465 | ! Lecture rayonnement IF au sol: |
---|
| 466 | |
---|
| 467 | CALL get_field("sollw", sollw, found) |
---|
| 468 | IF (.NOT. found) THEN |
---|
| 469 | PRINT*, 'phyetat0: Le champ <sollw> est absent' |
---|
| 470 | PRINT*, 'mis a zero' |
---|
| 471 | sollw = 0. |
---|
| 472 | ENDIF |
---|
| 473 | xmin = 1.0E+20 |
---|
| 474 | xmax = -1.0E+20 |
---|
| 475 | DO i = 1, klon |
---|
| 476 | xmin = MIN(sollw(i), xmin) |
---|
| 477 | xmax = MAX(sollw(i), xmax) |
---|
| 478 | ENDDO |
---|
| 479 | PRINT*, 'Rayonnement IF au sol sollw:', xmin, xmax |
---|
| 480 | |
---|
| 481 | CALL get_field("sollwdown", sollwdown, found) |
---|
| 482 | IF (.NOT. found) THEN |
---|
| 483 | PRINT*, 'phyetat0: Le champ <sollwdown> est absent' |
---|
| 484 | PRINT*, 'mis a zero' |
---|
| 485 | sollwdown = 0. |
---|
| 486 | zts=0. |
---|
| 487 | do nsrf=1,nbsrf |
---|
| 488 | zts(:)=zts(:)+ftsol(:,nsrf)*pctsrf(:,nsrf) |
---|
| 489 | enddo |
---|
| 490 | sollwdown(:)=sollw(:)+RSIGMA*zts(:)**4 |
---|
| 491 | ENDIF |
---|
| 492 | ! print*,'TS SOLL',zts(klon/2),sollw(klon/2),sollwdown(klon/2) |
---|
| 493 | xmin = 1.0E+20 |
---|
| 494 | xmax = -1.0E+20 |
---|
| 495 | DO i = 1, klon |
---|
| 496 | xmin = MIN(sollwdown(i), xmin) |
---|
| 497 | xmax = MAX(sollwdown(i), xmax) |
---|
| 498 | ENDDO |
---|
| 499 | PRINT*, 'Rayonnement IF au sol sollwdown:', xmin, xmax |
---|
| 500 | |
---|
| 501 | |
---|
| 502 | ! Lecture derive des flux: |
---|
| 503 | |
---|
| 504 | CALL get_field("fder", fder, found) |
---|
| 505 | IF (.NOT. found) THEN |
---|
| 506 | PRINT*, 'phyetat0: Le champ <fder> est absent' |
---|
| 507 | PRINT*, 'mis a zero' |
---|
| 508 | fder = 0. |
---|
| 509 | ENDIF |
---|
| 510 | xmin = 1.0E+20 |
---|
| 511 | xmax = -1.0E+20 |
---|
| 512 | DO i = 1, klon |
---|
| 513 | xmin = MIN(fder(i), xmin) |
---|
| 514 | xmax = MAX(fder(i), xmax) |
---|
| 515 | ENDDO |
---|
| 516 | PRINT*, 'Derive des flux fder:', xmin, xmax |
---|
| 517 | |
---|
| 518 | ! Lecture du rayonnement net au sol: |
---|
| 519 | |
---|
| 520 | CALL get_field("RADS", radsol) |
---|
| 521 | xmin = 1.0E+20 |
---|
| 522 | xmax = -1.0E+20 |
---|
| 523 | DO i = 1, klon |
---|
| 524 | xmin = MIN(radsol(i), xmin) |
---|
| 525 | xmax = MAX(radsol(i), xmax) |
---|
| 526 | ENDDO |
---|
| 527 | PRINT*, 'Rayonnement net au sol radsol:', xmin, xmax |
---|
| 528 | |
---|
| 529 | ! Lecture de la longueur de rugosite |
---|
| 530 | |
---|
| 531 | IF (1==0) THEN ! A DERTRUIRE TOUT DE SUITE |
---|
| 532 | DO nsrf = 1, nbsrf |
---|
| 533 | IF (nsrf.GT.99) THEN |
---|
| 534 | PRINT*, "Trop de sous-mailles" |
---|
| 535 | call abort_gcm("phyetat0", "", 1) |
---|
| 536 | ENDIF |
---|
| 537 | WRITE(str2, '(i2.2)') nsrf |
---|
| 538 | ! Retrocompatibilite. A nettoyer fin 2015 |
---|
| 539 | CALL get_field("RUG"//str2, z0m(:, nsrf),found) |
---|
| 540 | IF (found) THEN |
---|
| 541 | z0h(:,nsrf)=z0m(:,nsrf) |
---|
| 542 | PRINT*,'Lecture de ',"RUG"//str2,' -> z0m/z0h (obsolete)' |
---|
| 543 | ELSE |
---|
| 544 | CALL get_field("Z0m"//str2, z0m(:, nsrf), found) |
---|
| 545 | IF (.NOT.found) Z0m=1.e-3 ! initialisation à 1mm au cas ou. |
---|
| 546 | CALL get_field("Z0h"//str2, z0h(:, nsrf), found) |
---|
| 547 | IF (.NOT.found) Z0h=1.e-3 ! initialisation à 1mm au cas ou. |
---|
| 548 | ENDIF |
---|
| 549 | PRINT*, 'rugosite Z0m',nsrf,minval(z0m(:, nsrf)),maxval(z0m(:, nsrf)) |
---|
| 550 | PRINT*, 'rugosite Z0h',nsrf,minval(z0h(:, nsrf)),maxval(z0h(:, nsrf)) |
---|
| 551 | |
---|
| 552 | ENDDO |
---|
| 553 | ELSE |
---|
| 554 | found=phyetat0_srf(1,z0m,"RUG","Z0m ancien",0.001) |
---|
| 555 | IF (found) THEN |
---|
| 556 | z0h(:,1:nbsrf)=z0m(:,1:nbsrf) |
---|
| 557 | ELSE |
---|
| 558 | found=phyetat0_srf(1,z0m,"Z0m","Roughness length, momentum ",0.001) |
---|
| 559 | found=phyetat0_srf(1,z0h,"Z0h","Roughness length, enthalpy ",0.001) |
---|
| 560 | ENDIF |
---|
| 561 | ENDIF |
---|
| 562 | |
---|
| 563 | ! Lecture de l'age de la neige: |
---|
| 564 | |
---|
| 565 | CALL get_field("AGESNO", agesno(:, 1), found) |
---|
| 566 | IF (.NOT. found) THEN |
---|
| 567 | PRINT*, 'phyetat0: Le champ <AGESNO> est absent' |
---|
| 568 | PRINT*, ' Mais je vais essayer de lire AGESNO**' |
---|
| 569 | DO nsrf = 1, nbsrf |
---|
| 570 | IF (nsrf.GT.99) THEN |
---|
| 571 | PRINT*, "Trop de sous-mailles" |
---|
| 572 | call abort_gcm("phyetat0", "", 1) |
---|
| 573 | ENDIF |
---|
| 574 | WRITE(str2, '(i2.2)') nsrf |
---|
| 575 | CALL get_field("AGESNO"//str2, agesno(:, nsrf), found) |
---|
| 576 | IF (.NOT. found) THEN |
---|
| 577 | PRINT*, "phyetat0: Le champ <AGESNO"//str2//"> est absent" |
---|
| 578 | agesno = 50.0 |
---|
| 579 | ENDIF |
---|
| 580 | PRINT*, 'agesno',nsrf,minval(agesno(:, nsrf)),maxval(agesno(:, nsrf)) |
---|
| 581 | ENDDO |
---|
| 582 | ELSE |
---|
| 583 | PRINT*, 'phyetat0: Le champ <AGESNO> est present' |
---|
| 584 | PRINT*, ' J ignore donc les autres AGESNO**' |
---|
| 585 | xmin = 1.0E+20 |
---|
| 586 | xmax = -1.0E+20 |
---|
| 587 | DO i = 1, klon |
---|
| 588 | xmin = MIN(agesno(i, 1), xmin) |
---|
| 589 | xmax = MAX(agesno(i, 1), xmax) |
---|
| 590 | ENDDO |
---|
| 591 | PRINT*, 'Age de la neige <AGESNO>', xmin, xmax |
---|
| 592 | DO nsrf = 2, nbsrf |
---|
| 593 | DO i = 1, klon |
---|
| 594 | agesno(i, nsrf) = agesno(i, 1) |
---|
| 595 | ENDDO |
---|
| 596 | ENDDO |
---|
| 597 | ENDIF |
---|
| 598 | |
---|
| 599 | ! CALL get_field("ZMEA", zmea) |
---|
| 600 | ! PRINT*, 'OROGRAPHIE SOUS-MAILLE zmea:',minval(zmea(:)),maxval(zmea(:)) |
---|
| 601 | found=phyetat0_get(1,zmea,"ZMEA","mean orography",0.) |
---|
| 602 | |
---|
| 603 | CALL get_field("ZSTD", zstd) |
---|
| 604 | PRINT*, 'OROGRAPHIE SOUS-MAILLE zstd:',minval(zstd(:)),maxval(zstd(:)) |
---|
| 605 | |
---|
| 606 | CALL get_field("ZSIG", zsig) |
---|
| 607 | PRINT*, 'OROGRAPHIE SOUS-MAILLE zsig:',minval(zsig(:)),maxval(zsig(:)) |
---|
| 608 | |
---|
| 609 | CALL get_field("ZGAM", zgam) |
---|
| 610 | PRINT*, 'OROGRAPHIE SOUS-MAILLE zgam:',minval(zgam(:)),maxval(zgam(:)) |
---|
| 611 | |
---|
| 612 | CALL get_field("ZTHE", zthe) |
---|
| 613 | PRINT*, 'OROGRAPHIE SOUS-MAILLE zthe:',minval(zthe(:)),maxval(zthe(:)) |
---|
| 614 | |
---|
| 615 | CALL get_field("ZPIC", zpic) |
---|
| 616 | PRINT*, 'OROGRAPHIE SOUS-MAILLE zpic:',minval(zpic(:)),maxval(zpic(:)) |
---|
| 617 | |
---|
| 618 | CALL get_field("ZVAL", zval) |
---|
| 619 | PRINT*, 'OROGRAPHIE SOUS-MAILLE zval:',minval(zval(:)),maxval(zval(:)) |
---|
| 620 | |
---|
| 621 | CALL get_field("RUGSREL", rugoro) |
---|
| 622 | PRINT*, 'Rugosite relief (ecart-type) rugsrel:',minval(rugoro(:)),maxval(rugoro(:)) |
---|
| 623 | |
---|
| 624 | ancien_ok = .TRUE. |
---|
| 625 | |
---|
| 626 | CALL get_field("TANCIEN", t_ancien, found) |
---|
| 627 | IF (.NOT. found) THEN |
---|
| 628 | PRINT*, "phyetat0: Le champ <TANCIEN> est absent" |
---|
| 629 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 630 | ancien_ok = .FALSE. |
---|
| 631 | ENDIF |
---|
| 632 | |
---|
| 633 | CALL get_field("QANCIEN", q_ancien, found) |
---|
| 634 | IF (.NOT. found) THEN |
---|
| 635 | PRINT*, "phyetat0: Le champ <QANCIEN> est absent" |
---|
| 636 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 637 | ancien_ok = .FALSE. |
---|
| 638 | ENDIF |
---|
| 639 | |
---|
| 640 | CALL get_field("UANCIEN", u_ancien, found) |
---|
| 641 | IF (.NOT. found) THEN |
---|
| 642 | PRINT*, "phyetat0: Le champ <UANCIEN> est absent" |
---|
| 643 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 644 | ancien_ok = .FALSE. |
---|
| 645 | ENDIF |
---|
| 646 | |
---|
| 647 | CALL get_field("VANCIEN", v_ancien, found) |
---|
| 648 | IF (.NOT. found) THEN |
---|
| 649 | PRINT*, "phyetat0: Le champ <VANCIEN> est absent" |
---|
| 650 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 651 | ancien_ok = .FALSE. |
---|
| 652 | ENDIF |
---|
| 653 | |
---|
| 654 | clwcon=0. |
---|
| 655 | CALL get_field("CLWCON", clwcon, found) |
---|
| 656 | IF (.NOT. found) THEN |
---|
| 657 | PRINT*, "phyetat0: Le champ CLWCON est absent" |
---|
| 658 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 659 | ENDIF |
---|
| 660 | PRINT*,'Eau liquide convective (ecart-type) clwcon:',MINval(clwcon),MAXval(clwcon) |
---|
| 661 | |
---|
| 662 | |
---|
| 663 | rnebcon = 0. |
---|
| 664 | CALL get_field("RNEBCON", rnebcon, found) |
---|
| 665 | IF (.NOT. found) THEN |
---|
| 666 | PRINT*, "phyetat0: Le champ RNEBCON est absent" |
---|
| 667 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 668 | ENDIF |
---|
| 669 | PRINT*, 'Nebulosite convective (ecart-type) rnebcon:',MINval(rnebcon),MAXval(rnebcon) |
---|
| 670 | |
---|
| 671 | ! Lecture ratqs |
---|
| 672 | |
---|
| 673 | ratqs=0. |
---|
| 674 | CALL get_field("RATQS", ratqs, found) |
---|
| 675 | IF (.NOT. found) THEN |
---|
| 676 | PRINT*, "phyetat0: Le champ <RATQS> est absent" |
---|
| 677 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 678 | ENDIF |
---|
| 679 | PRINT*, '(ecart-type) ratqs:', MINval(ratqs),MAXval(ratqs) |
---|
| 680 | |
---|
| 681 | ! Lecture run_off_lic_0 |
---|
| 682 | |
---|
| 683 | CALL get_field("RUNOFFLIC0", run_off_lic_0, found) |
---|
| 684 | IF (.NOT. found) THEN |
---|
| 685 | PRINT*, "phyetat0: Le champ <RUNOFFLIC0> est absent" |
---|
| 686 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 687 | run_off_lic_0 = 0. |
---|
| 688 | ENDIF |
---|
| 689 | PRINT*, '(ecart-type) run_off_lic_0:', MINval(run_off_lic_0),MAXval(run_off_lic_0) |
---|
| 690 | |
---|
| 691 | ! Lecture de l'energie cinetique turbulente |
---|
| 692 | |
---|
| 693 | IF (iflag_pbl>1) then |
---|
| 694 | DO nsrf = 1, nbsrf |
---|
| 695 | IF (nsrf.GT.99) THEN |
---|
| 696 | PRINT*, "Trop de sous-mailles" |
---|
| 697 | call abort_gcm("phyetat0", "", 1) |
---|
| 698 | ENDIF |
---|
| 699 | WRITE(str2, '(i2.2)') nsrf |
---|
| 700 | CALL get_field("TKE"//str2, pbl_tke(:, 1:klev+1, nsrf), found) |
---|
| 701 | IF (.NOT. found) THEN |
---|
| 702 | PRINT*, "phyetat0: <TKE"//str2//"> est absent" |
---|
| 703 | pbl_tke(:, :, nsrf)=1.e-8 |
---|
| 704 | ENDIF |
---|
| 705 | PRINT*, 'Turbulent kinetic energyl TKE**:', nsrf, minval(pbl_tke(:,:,nsrf)),maxval(pbl_tke(:,:, nsrf)) |
---|
| 706 | |
---|
| 707 | ENDDO |
---|
| 708 | ENDIF |
---|
| 709 | |
---|
| 710 | ! Lecture de l'ecart de TKE (w) - (x) |
---|
| 711 | ! |
---|
| 712 | IF (iflag_pbl>1 .AND. iflag_wake>=1 & |
---|
| 713 | .AND. iflag_pbl_split >=1 ) then |
---|
| 714 | DO nsrf = 1, nbsrf |
---|
| 715 | IF (nsrf.GT.99) THEN |
---|
| 716 | PRINT*, "Trop de sous-mailles" |
---|
| 717 | call abort_gcm("phyetat0", "", 1) |
---|
| 718 | ENDIF |
---|
| 719 | WRITE(str2,'(i2.2)') nsrf |
---|
| 720 | CALL get_field("DELTATKE"//str2, & |
---|
| 721 | wake_delta_pbl_tke(:,1:klev+1,nsrf),found) |
---|
| 722 | IF (.NOT. found) THEN |
---|
| 723 | PRINT*, "phyetat0: <DELTATKE"//str2//"> est absent" |
---|
| 724 | wake_delta_pbl_tke(:,:,nsrf)=0. |
---|
| 725 | ENDIF |
---|
| 726 | PRINT*,'TKE difference (w)-(x) DELTATKE**:', nsrf, & |
---|
| 727 | minval(wake_delta_pbl_tke(:,:,nsrf)),maxval(wake_delta_pbl_tke(:,:, nsrf)) |
---|
| 728 | |
---|
| 729 | ENDDO |
---|
| 730 | |
---|
| 731 | ! delta_tsurf |
---|
| 732 | |
---|
| 733 | DO nsrf = 1, nbsrf |
---|
| 734 | IF (nsrf.GT.99) THEN |
---|
| 735 | PRINT*, "Trop de sous-mailles" |
---|
| 736 | call abort_gcm("phyetat0", "", 1) |
---|
| 737 | ENDIF |
---|
| 738 | WRITE(str2,'(i2.2)') nsrf |
---|
| 739 | CALL get_field("DELTA_TSURF"//str2, delta_tsurf(:,nsrf), found) |
---|
| 740 | IF (.NOT. found) THEN |
---|
| 741 | PRINT*, "phyetat0: Le champ <DELTA_TSURF"//str2//"> est absent" |
---|
| 742 | PRINT*, "Depart legerement fausse. Mais je continue" |
---|
| 743 | delta_tsurf(:,nsrf)=0. |
---|
| 744 | ELSE |
---|
| 745 | PRINT*, 'delta_tsurf:', nsrf, & |
---|
| 746 | minval(delta_tsurf(:,nsrf)),maxval(delta_tsurf(:, nsrf)) |
---|
| 747 | ENDIF |
---|
| 748 | ENDDO ! nsrf = 1, nbsrf |
---|
| 749 | ENDIF !(iflag_pbl>1 .AND. iflag_wake>=1 .AND. iflag_pbl_split >=1 ) |
---|
| 750 | |
---|
| 751 | !================================== |
---|
| 752 | ! thermiques, poches, convection |
---|
| 753 | !================================== |
---|
| 754 | |
---|
| 755 | found=phyetat0_get(1,w01,"w01","w01",0.) |
---|
| 756 | found=phyetat0_get(1,sig1,"sig1","sig1",0.) |
---|
| 757 | |
---|
| 758 | found=phyetat0_get(klev,wake_deltat,"WAKE_DELTAT","Delta T wake/env",0.) |
---|
| 759 | found=phyetat0_get(klev,wake_deltaq,"WAKE_DELTAQ","Delta hum. wake/env",0.) |
---|
| 760 | found=phyetat0_get(1,wake_s,"WAKE_S","???",0.) |
---|
| 761 | found=phyetat0_get(1,wake_cstar,"WAKE_CSTAR","???",0.) |
---|
| 762 | found=phyetat0_get(1,wake_pe,"WAKE_PE","???",0.) |
---|
| 763 | found=phyetat0_get(1,wake_fip,"WAKE_FIP","???",0.) |
---|
| 764 | |
---|
| 765 | |
---|
| 766 | found=phyetat0_get(1,zmax0,"ZMAX0","ZMAX0",40.) |
---|
| 767 | found=phyetat0_get(1,f0,"F0","F0",1.e-5) |
---|
| 768 | found=phyetat0_get(klev,fm_therm,"FM_THERM","Thermals mass flux",0.) |
---|
| 769 | found=phyetat0_get(klev,entr_therm,"ENTR_THERM","Thermals Entrain.",0.) |
---|
| 770 | found=phyetat0_get(klev,detr_therm,"DETR_THERM","Thermals Detrain.",0.) |
---|
| 771 | |
---|
| 772 | |
---|
| 773 | found=phyetat0_get(1,ale_bl,"ALE_BL","ALE BL",0.) |
---|
| 774 | found=phyetat0_get(1,ale_bl_trig,"ALE_BL_TRIG","ALE BL_TRIG",0.) |
---|
| 775 | found=phyetat0_get(1,alp_bl,"ALP_BL","ALP BL",0.) |
---|
| 776 | |
---|
| 777 | |
---|
| 778 | !=========================================== |
---|
| 779 | ! Read and send field trs to traclmdz |
---|
| 780 | !=========================================== |
---|
| 781 | |
---|
| 782 | IF (type_trac == 'lmdz') THEN |
---|
| 783 | DO it=1, nbtr |
---|
| 784 | iiq=niadv(it+2) |
---|
| 785 | found=phyetat0_get(1,trs(:,it),"trs_"//tname(iiq),"Surf trac"//tname(iiq),0.) |
---|
| 786 | END DO |
---|
| 787 | CALL traclmdz_from_restart(trs) |
---|
| 788 | |
---|
| 789 | IF (carbon_cycle_cpl) THEN |
---|
| 790 | found=phyetat0_get(1,co2_send,"co2_send","co2 send",0.) |
---|
| 791 | END IF |
---|
| 792 | END IF |
---|
| 793 | |
---|
| 794 | !=========================================== |
---|
| 795 | ! ondes de gravite non orographiques |
---|
| 796 | !=========================================== |
---|
| 797 | |
---|
| 798 | if (ok_gwd_rando) then |
---|
| 799 | call get_field("du_gwd_rando", du_gwd_rando, found) |
---|
| 800 | found=phyetat0_get(klev,du_gwd_rando,"du_gwd_rando","du_gwd_rando",0.) |
---|
| 801 | found=phyetat0_get(klev,dv_gwd_rando,"dv_gwd_rando","dv_gwd_rando",0.) |
---|
| 802 | end if |
---|
| 803 | |
---|
| 804 | !=========================================== |
---|
| 805 | ! Initialize ocean |
---|
| 806 | !=========================================== |
---|
| 807 | |
---|
| 808 | IF ( type_ocean == 'slab' ) THEN |
---|
| 809 | CALL ocean_slab_init(dtime, pctsrf) |
---|
| 810 | found=phyetat0_get(nslay,tslab,"tslab","tslab",0.) |
---|
| 811 | IF (.NOT. found) THEN |
---|
| 812 | PRINT*, "phyetat0: Le champ <tslab> est absent" |
---|
| 813 | PRINT*, "Initialisation a tsol_oce" |
---|
| 814 | DO i=1,nslay |
---|
| 815 | tslab(:,i)=MAX(ftsol(:,is_oce),271.35) |
---|
| 816 | END DO |
---|
| 817 | END IF |
---|
| 818 | |
---|
| 819 | ! Sea ice variables |
---|
| 820 | found=phyetat0_get(1,tice,"slab_tice","slab_tice",0.) |
---|
| 821 | IF (version_ocean == 'sicINT') THEN |
---|
| 822 | IF (.NOT. found) THEN |
---|
| 823 | PRINT*, "phyetat0: Le champ <tice> est absent" |
---|
| 824 | PRINT*, "Initialisation a tsol_sic" |
---|
| 825 | tice(:)=ftsol(:,is_sic) |
---|
| 826 | END IF |
---|
| 827 | IF (.NOT. found) THEN |
---|
| 828 | PRINT*, "phyetat0: Le champ <seaice> est absent" |
---|
| 829 | PRINT*, "Initialisation a 0/1m suivant fraction glace" |
---|
| 830 | seaice(:)=0. |
---|
| 831 | WHERE (pctsrf(:,is_sic).GT.EPSFRA) |
---|
| 832 | seaice=917. |
---|
| 833 | END WHERE |
---|
| 834 | END IF |
---|
| 835 | END IF !sea ice INT |
---|
| 836 | END IF ! Slab |
---|
| 837 | |
---|
| 838 | ! on ferme le fichier |
---|
| 839 | CALL close_startphy |
---|
| 840 | |
---|
| 841 | ! Initialize module pbl_surface_mod |
---|
| 842 | |
---|
| 843 | CALL pbl_surface_init(fder, snow, qsurf, tsoil) |
---|
| 844 | |
---|
| 845 | ! Initialize module ocean_cpl_mod for the case of coupled ocean |
---|
| 846 | IF ( type_ocean == 'couple' ) THEN |
---|
| 847 | CALL ocean_cpl_init(dtime, rlon, rlat) |
---|
| 848 | ENDIF |
---|
| 849 | |
---|
| 850 | CALL init_iophy_new(rlat, rlon) |
---|
| 851 | |
---|
| 852 | ! Initilialize module fonte_neige_mod |
---|
| 853 | CALL fonte_neige_init(run_off_lic_0) |
---|
| 854 | |
---|
| 855 | END SUBROUTINE phyetat0 |
---|
| 856 | |
---|
| 857 | !=================================================================== |
---|
| 858 | FUNCTION phyetat0_get(nlev,field,name,descr,default) |
---|
| 859 | !=================================================================== |
---|
| 860 | ! Lecture d'un champ avec contrôle |
---|
| 861 | ! Function logique dont le resultat indique si la lecture |
---|
| 862 | ! s'est bien passée |
---|
| 863 | ! On donne une valeur par defaut dans le cas contraire |
---|
| 864 | !=================================================================== |
---|
| 865 | |
---|
| 866 | USE iostart, ONLY : get_field |
---|
| 867 | USE dimphy, only: klon |
---|
| 868 | |
---|
| 869 | IMPLICIT NONE |
---|
| 870 | INCLUDE "iniprint.h" |
---|
| 871 | |
---|
| 872 | LOGICAL phyetat0_get |
---|
| 873 | |
---|
| 874 | ! arguments |
---|
| 875 | INTEGER,INTENT(IN) :: nlev |
---|
| 876 | CHARACTER*(*),INTENT(IN) :: name,descr |
---|
| 877 | REAL,INTENT(IN) :: default |
---|
| 878 | REAL,DIMENSION(klon,nlev),INTENT(INOUT) :: field |
---|
| 879 | |
---|
| 880 | ! Local variables |
---|
| 881 | LOGICAL found |
---|
| 882 | |
---|
| 883 | CALL get_field(name, field, found) |
---|
| 884 | IF (.NOT. found) THEN |
---|
| 885 | WRITE(lunout,*) "phyetat0: Le champ <",name,"> est absent" |
---|
| 886 | WRITE(lunout,*) "Depart legerement fausse. Mais je continue" |
---|
| 887 | field(:,:)=default |
---|
| 888 | ENDIF |
---|
| 889 | WRITE(lunout,*) name, descr, MINval(field),MAXval(field) |
---|
| 890 | phyetat0_get=found |
---|
| 891 | |
---|
| 892 | RETURN |
---|
| 893 | END FUNCTION phyetat0_get |
---|
| 894 | |
---|
| 895 | !================================================================ |
---|
| 896 | FUNCTION phyetat0_srf(nlev,field,name,descr,default) |
---|
| 897 | !=================================================================== |
---|
| 898 | ! Lecture d'un champ par sous-surface avec contrôle |
---|
| 899 | ! Function logique dont le resultat indique si la lecture |
---|
| 900 | ! s'est bien passée |
---|
| 901 | ! On donne une valeur par defaut dans le cas contraire |
---|
| 902 | !=================================================================== |
---|
| 903 | |
---|
| 904 | USE iostart, ONLY : get_field |
---|
| 905 | USE dimphy, only: klon |
---|
| 906 | USE indice_sol_mod, only: nbsrf |
---|
| 907 | |
---|
| 908 | IMPLICIT NONE |
---|
| 909 | INCLUDE "iniprint.h" |
---|
| 910 | |
---|
| 911 | LOGICAL phyetat0_srf |
---|
| 912 | ! arguments |
---|
| 913 | INTEGER,INTENT(IN) :: nlev |
---|
| 914 | CHARACTER*(*),INTENT(IN) :: name,descr |
---|
| 915 | REAL,INTENT(IN) :: default |
---|
| 916 | REAL,DIMENSION(klon,nlev,nbsrf),INTENT(INOUT) :: field |
---|
| 917 | |
---|
| 918 | ! Local variables |
---|
| 919 | LOGICAL found,phyetat0_get |
---|
| 920 | INTEGER nsrf |
---|
| 921 | CHARACTER*2 str2 |
---|
| 922 | |
---|
| 923 | IF (nbsrf.GT.99) THEN |
---|
| 924 | WRITE(lunout,*) "Trop de sous-mailles" |
---|
| 925 | call abort_gcm("phyetat0", "", 1) |
---|
| 926 | ENDIF |
---|
| 927 | |
---|
| 928 | DO nsrf = 1, nbsrf |
---|
| 929 | WRITE(str2, '(i2.2)') nsrf |
---|
| 930 | found= phyetat0_get(nlev,field(:,:, nsrf), & |
---|
| 931 | name//str2,descr//" srf:"//str2,default) |
---|
| 932 | ENDDO |
---|
| 933 | |
---|
| 934 | phyetat0_srf=found |
---|
| 935 | |
---|
| 936 | RETURN |
---|
| 937 | END FUNCTION phyetat0_srf |
---|
| 938 | |
---|