[2007] | 1 | SUBROUTINE concvl(iflag_clos, & |
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[2259] | 2 | dtime, paprs, pplay, k_upper_cv, & |
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[2007] | 3 | t, q, t_wake, q_wake, s_wake, u, v, tra, ntra, & |
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| 4 | Ale, Alp, sig1, w01, & |
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[4613] | 5 | d_t, d_q, d_qcomp, d_u, d_v, d_tra, & |
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[2007] | 6 | rain, snow, kbas, ktop, sigd, & |
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[2824] | 7 | cbmf, plcl, plfc, wbeff, convoccur, & |
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| 8 | upwd, dnwd, dnwdbis, & |
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[2007] | 9 | Ma, mip, Vprecip, & |
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| 10 | cape, cin, tvp, Tconv, iflag, & |
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| 11 | pbase, bbase, dtvpdt1, dtvpdq1, dplcldt, dplcldr, & |
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| 12 | qcondc, wd, pmflxr, pmflxs, & |
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| 13 | !RomP >>> |
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| 14 | !! . da,phi,mp,dd_t,dd_q,lalim_conv,wght_th) |
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[3496] | 15 | da, phi, mp, phii, d1a, dam, sij, qta, clw, elij, &! RomP |
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[2007] | 16 | dd_t, dd_q, lalim_conv, wght_th, & ! RomP |
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| 17 | evap, ep, epmlmMm, eplaMm, & ! RomP |
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[4613] | 18 | wdtrainA, wdtrainS, wdtrainM, wght, qtc, sigt, detrain, & |
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[2481] | 19 | tau_cld_cv, coefw_cld_cv, & ! RomP+RL, AJ |
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[2007] | 20 | !RomP <<< |
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[2481] | 21 | epmax_diag) ! epmax_cape |
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[2007] | 22 | ! ************************************************************** |
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| 23 | ! * |
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| 24 | ! CONCVL * |
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| 25 | ! * |
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| 26 | ! * |
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| 27 | ! written by : Sandrine Bony-Lena, 17/05/2003, 11.16.04 * |
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| 28 | ! modified by : * |
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| 29 | ! ************************************************************** |
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[1849] | 30 | |
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[1334] | 31 | |
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[5282] | 32 | USE clesphys_mod_h |
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[1992] | 33 | USE dimphy |
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[2320] | 34 | USE infotrac_phy, ONLY: nbtr |
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[2201] | 35 | USE phys_local_var_mod, ONLY: omega |
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[2311] | 36 | USE print_control_mod, ONLY: prt_level, lunout |
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[5285] | 37 | USE yomcst_mod_h |
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[5304] | 38 | USE yomcst2_mod_h |
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[5283] | 39 | USE conema3_mod_h |
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[5284] | 40 | USE yoethf_mod_h |
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[1992] | 41 | IMPLICIT NONE |
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[2007] | 42 | ! ====================================================================== |
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| 43 | ! Auteur(s): S. Bony-Lena (LMD/CNRS) date: ??? |
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| 44 | ! Objet: schema de convection de Emanuel (1991) interface |
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| 45 | ! ====================================================================== |
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| 46 | ! Arguments: |
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| 47 | ! dtime--input-R-pas d'integration (s) |
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| 48 | ! s-------input-R-la vAleur "s" pour chaque couche |
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| 49 | ! sigs----input-R-la vAleur "sigma" de chaque couche |
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| 50 | ! sig-----input-R-la vAleur de "sigma" pour chaque niveau |
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| 51 | ! psolpa--input-R-la pression au sol (en Pa) |
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| 52 | ! pskapa--input-R-exponentiel kappa de psolpa |
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| 53 | ! h-------input-R-enthAlpie potentielle (Cp*T/P**kappa) |
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| 54 | ! q-------input-R-vapeur d'eau (en kg/kg) |
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[1334] | 55 | |
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[2007] | 56 | ! work*: input et output: deux variables de travail, |
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| 57 | ! on peut les mettre a 0 au debut |
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| 58 | ! ALE--------input-R-energie disponible pour soulevement |
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| 59 | ! ALP--------input-R-puissance disponible pour soulevement |
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[766] | 60 | |
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[2007] | 61 | ! d_h--------output-R-increment de l'enthAlpie potentielle (h) |
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| 62 | ! d_q--------output-R-increment de la vapeur d'eau |
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| 63 | ! rain-------output-R-la pluie (mm/s) |
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| 64 | ! snow-------output-R-la neige (mm/s) |
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| 65 | ! upwd-------output-R-saturated updraft mass flux (kg/m**2/s) |
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| 66 | ! dnwd-------output-R-saturated downdraft mass flux (kg/m**2/s) |
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| 67 | ! dnwd0------output-R-unsaturated downdraft mass flux (kg/m**2/s) |
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| 68 | ! Ma---------output-R-adiabatic ascent mass flux (kg/m2/s) |
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| 69 | ! mip--------output-R-mass flux shed by adiabatic ascent (kg/m2/s) |
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[2306] | 70 | ! Vprecip----output-R-vertical profile of total precipitation (kg/m2/s) |
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[2007] | 71 | ! Tconv------output-R-environment temperature seen by convective scheme (K) |
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| 72 | ! Cape-------output-R-CAPE (J/kg) |
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| 73 | ! Cin -------output-R-CIN (J/kg) |
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| 74 | ! Tvp--------output-R-Temperature virtuelle d'une parcelle soulevee |
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| 75 | ! adiabatiquement a partir du niveau 1 (K) |
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| 76 | ! deltapb----output-R-distance entre LCL et base de la colonne (<0 ; Pa) |
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| 77 | ! Ice_flag---input-L-TRUE->prise en compte de la thermodynamique de la glace |
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| 78 | ! dd_t-------output-R-increment de la temperature du aux descentes precipitantes |
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| 79 | ! dd_q-------output-R-increment de la vapeur d'eau du aux desc precip |
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| 80 | ! lalim_conv- |
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| 81 | ! wght_th---- |
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| 82 | ! evap-------output-R |
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| 83 | ! ep---------output-R |
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| 84 | ! epmlmMm----output-R |
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| 85 | ! eplaMm-----output-R |
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| 86 | ! wdtrainA---output-R |
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[3496] | 87 | ! wdtrainS---output-R |
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[2007] | 88 | ! wdtrainM---output-R |
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| 89 | ! wght-------output-R |
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| 90 | ! ====================================================================== |
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[879] | 91 | |
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[524] | 92 | |
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[1574] | 93 | |
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[2853] | 94 | INTEGER, INTENT(IN) :: iflag_clos |
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| 95 | REAL, INTENT(IN) :: dtime |
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| 96 | REAL, DIMENSION(klon,klev), INTENT(IN) :: pplay |
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| 97 | REAL, DIMENSION(klon,klev+1), INTENT(IN) :: paprs |
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| 98 | INTEGER, INTENT(IN) :: k_upper_cv |
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| 99 | REAL, DIMENSION(klon,klev), INTENT(IN) :: t, q, u, v |
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| 100 | REAL, DIMENSION(klon,klev), INTENT(IN) :: t_wake, q_wake |
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| 101 | REAL, DIMENSION(klon), INTENT(IN) :: s_wake |
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| 102 | REAL, DIMENSION(klon,klev, nbtr),INTENT(IN) :: tra |
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| 103 | INTEGER, INTENT(IN) :: ntra |
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| 104 | REAL, DIMENSION(klon), INTENT(IN) :: Ale, Alp |
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| 105 | !CR:test: on passe lentr et alim_star des thermiques |
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| 106 | INTEGER, DIMENSION(klon), INTENT(IN) :: lalim_conv |
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| 107 | REAL, DIMENSION(klon,klev), INTENT(IN) :: wght_th |
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[1992] | 108 | |
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[2853] | 109 | REAL, DIMENSION(klon,klev), INTENT(INOUT) :: sig1, w01 |
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[1992] | 110 | |
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[4613] | 111 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: d_t, d_q, d_qcomp, d_u, d_v |
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[2853] | 112 | REAL, DIMENSION(klon,klev, nbtr),INTENT(OUT) :: d_tra |
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| 113 | REAL, DIMENSION(klon), INTENT(OUT) :: rain, snow |
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[1992] | 114 | |
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[2853] | 115 | INTEGER, DIMENSION(klon), INTENT(OUT) :: kbas, ktop |
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| 116 | REAL, DIMENSION(klon), INTENT(OUT) :: sigd |
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| 117 | REAL, DIMENSION(klon), INTENT(OUT) :: cbmf, plcl, plfc, wbeff |
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| 118 | REAL, DIMENSION(klon), INTENT(OUT) :: convoccur |
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| 119 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: upwd, dnwd, dnwdbis |
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[1992] | 120 | |
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[2853] | 121 | !! REAL Ma(klon,klev), mip(klon,klev),Vprecip(klon,klev) !jyg |
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| 122 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: Ma, mip |
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| 123 | REAL, DIMENSION(klon,klev+1), INTENT(OUT) :: Vprecip !jyg |
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| 124 | REAL, DIMENSION(klon), INTENT(OUT) :: cape, cin |
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| 125 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: tvp |
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| 126 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: Tconv |
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| 127 | INTEGER, DIMENSION(klon), INTENT(OUT) :: iflag |
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| 128 | REAL, DIMENSION(klon), INTENT(OUT) :: pbase, bbase |
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| 129 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: dtvpdt1, dtvpdq1 |
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| 130 | REAL, DIMENSION(klon), INTENT(OUT) :: dplcldt, dplcldr |
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| 131 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: qcondc |
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| 132 | REAL, DIMENSION(klon), INTENT(OUT) :: wd |
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| 133 | REAL, DIMENSION(klon,klev+1), INTENT(OUT) :: pmflxr, pmflxs |
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[1992] | 134 | |
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[2853] | 135 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: da, mp |
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| 136 | REAL, DIMENSION(klon,klev,klev),INTENT(OUT) :: phi |
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[2007] | 137 | ! RomP >>> |
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[2853] | 138 | REAL, DIMENSION(klon,klev,klev),INTENT(OUT) :: phii |
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| 139 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: d1a, dam |
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| 140 | REAL, DIMENSION(klon,klev,klev),INTENT(OUT) :: sij, elij |
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[3496] | 141 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: qta |
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[2853] | 142 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: clw |
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| 143 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: dd_t, dd_q |
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| 144 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: evap, ep |
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| 145 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: eplaMm |
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| 146 | REAL, DIMENSION(klon,klev,klev), INTENT(OUT) :: epmlmMm |
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[3496] | 147 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: wdtrainA, wdtrainS, wdtrainM |
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[2007] | 148 | ! RomP <<< |
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[2853] | 149 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: wght !RL |
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| 150 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: qtc |
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[4613] | 151 | REAL, DIMENSION(klon,klev), INTENT(OUT) :: sigt, detrain |
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[2853] | 152 | REAL, INTENT(OUT) :: tau_cld_cv, coefw_cld_cv |
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| 153 | REAL, DIMENSION(klon), INTENT(OUT) :: epmax_diag ! epmax_cape |
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[1992] | 154 | |
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[2853] | 155 | ! |
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| 156 | ! Local |
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| 157 | ! ---- |
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| 158 | REAL, DIMENSION(klon,klev) :: em_p |
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| 159 | REAL, DIMENSION(klon,klev+1) :: em_ph |
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| 160 | REAL :: em_sig1feed ! sigma at lower bound of feeding layer |
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| 161 | REAL :: em_sig2feed ! sigma at upper bound of feeding layer |
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| 162 | REAL, DIMENSION(klev) :: em_wght ! weight density determining the feeding mixture |
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| 163 | REAL, DIMENSION(klon,klev+1) :: Vprecipi !jyg |
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[2007] | 164 | !on enleve le save |
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| 165 | ! SAVE em_sig1feed,em_sig2feed,em_wght |
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[1992] | 166 | |
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[2853] | 167 | REAL, DIMENSION(klon) :: rflag |
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| 168 | REAL, DIMENSION(klon) :: plim1, plim2 |
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| 169 | REAL, DIMENSION(klon) :: ptop2 |
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| 170 | REAL, DIMENSION(klon,klev) :: asupmax |
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| 171 | REAL, DIMENSION(klon) :: supmax0, asupmaxmin |
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| 172 | REAL :: zx_t, zdelta, zx_qs, zcor |
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| 173 | ! |
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[2007] | 174 | ! INTEGER iflag_mix |
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| 175 | ! SAVE iflag_mix |
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[2853] | 176 | INTEGER :: noff, minorig |
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| 177 | INTEGER :: i,j, k, itra |
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| 178 | REAL, DIMENSION(klon,klev) :: qs, qs_wake |
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[2007] | 179 | !LF SAVE cbmf |
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| 180 | !IM/JYG REAL, SAVE, ALLOCATABLE :: cbmf(:) |
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| 181 | !!!$OMP THREADPRIVATE(cbmf)! |
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[2853] | 182 | REAL, DIMENSION(klon) :: cbmflast |
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[1992] | 183 | |
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| 184 | |
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[2007] | 185 | ! Variables supplementaires liees au bilan d'energie |
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| 186 | ! Real paire(klon) |
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| 187 | !LF Real ql(klon,klev) |
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| 188 | ! Save paire |
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| 189 | !LF Save ql |
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| 190 | !LF Real t1(klon,klev),q1(klon,klev) |
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| 191 | !LF Save t1,q1 |
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| 192 | ! Data paire /1./ |
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[1992] | 193 | REAL, SAVE, ALLOCATABLE :: ql(:, :), q1(:, :), t1(:, :) |
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[2007] | 194 | !$OMP THREADPRIVATE(ql, q1, t1) |
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[1992] | 195 | |
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[2007] | 196 | ! Variables liees au bilan d'energie et d'enthAlpi |
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[1992] | 197 | REAL ztsol(klon) |
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[2007] | 198 | REAL h_vcol_tot, h_dair_tot, h_qw_tot, h_ql_tot, & |
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| 199 | h_qs_tot, qw_tot, ql_tot, qs_tot, ec_tot |
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| 200 | SAVE h_vcol_tot, h_dair_tot, h_qw_tot, h_ql_tot, & |
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| 201 | h_qs_tot, qw_tot, ql_tot, qs_tot, ec_tot |
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| 202 | !$OMP THREADPRIVATE(h_vcol_tot, h_dair_tot, h_qw_tot, h_ql_tot) |
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| 203 | !$OMP THREADPRIVATE(h_qs_tot, qw_tot, ql_tot, qs_tot , ec_tot) |
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| 204 | REAL d_h_vcol, d_h_dair, d_qt, d_qw, d_ql, d_qs, d_ec |
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| 205 | REAL d_h_vcol_phy |
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| 206 | REAL fs_bound, fq_bound |
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| 207 | SAVE d_h_vcol_phy |
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| 208 | !$OMP THREADPRIVATE(d_h_vcol_phy) |
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| 209 | REAL zero_v(klon) |
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[1992] | 210 | CHARACTER *15 ztit |
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[2007] | 211 | INTEGER ip_ebil ! PRINT level for energy conserv. diag. |
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| 212 | SAVE ip_ebil |
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| 213 | DATA ip_ebil/2/ |
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| 214 | !$OMP THREADPRIVATE(ip_ebil) |
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| 215 | INTEGER if_ebil ! level for energy conserv. dignostics |
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| 216 | SAVE if_ebil |
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| 217 | DATA if_ebil/2/ |
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| 218 | !$OMP THREADPRIVATE(if_ebil) |
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| 219 | !+jld ec_conser |
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[1992] | 220 | REAL d_t_ec(klon, klev) ! tendance du a la conersion Ec -> E thermique |
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| 221 | REAL zrcpd |
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[2007] | 222 | !-jld ec_conser |
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| 223 | !LF |
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[1992] | 224 | INTEGER nloc |
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[2007] | 225 | LOGICAL, SAVE :: first = .TRUE. |
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| 226 | !$OMP THREADPRIVATE(first) |
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| 227 | INTEGER, SAVE :: itap, igout |
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| 228 | !$OMP THREADPRIVATE(itap, igout) |
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[1992] | 229 | include "FCTTRE.h" |
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| 230 | |
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| 231 | IF (first) THEN |
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[2007] | 232 | ! Allocate some variables LF 04/2008 |
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[1992] | 233 | |
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[2007] | 234 | !IM/JYG allocate(cbmf(klon)) |
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[1992] | 235 | ALLOCATE (ql(klon,klev)) |
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| 236 | ALLOCATE (t1(klon,klev)) |
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| 237 | ALLOCATE (q1(klon,klev)) |
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[2824] | 238 | ! |
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| 239 | convoccur(:) = 0. |
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| 240 | ! |
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[1992] | 241 | itap = 0 |
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| 242 | igout = klon/2 + 1/klon |
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| 243 | END IF |
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[2007] | 244 | ! Incrementer le compteur de la physique |
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[1992] | 245 | itap = itap + 1 |
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| 246 | |
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[2007] | 247 | ! Copy T into Tconv |
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[1992] | 248 | DO k = 1, klev |
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| 249 | DO i = 1, klon |
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[2007] | 250 | Tconv(i, k) = t(i, k) |
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[1992] | 251 | END DO |
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| 252 | END DO |
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| 253 | |
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| 254 | IF (if_ebil>=1) THEN |
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| 255 | DO i = 1, klon |
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| 256 | ztsol(i) = t(i, 1) |
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| 257 | zero_v(i) = 0. |
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[524] | 258 | DO k = 1, klev |
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[1992] | 259 | ql(i, k) = 0. |
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| 260 | END DO |
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| 261 | END DO |
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| 262 | END IF |
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[524] | 263 | |
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[2007] | 264 | ! ym |
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[1992] | 265 | snow(:) = 0 |
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| 266 | |
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| 267 | IF (first) THEN |
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| 268 | first = .FALSE. |
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| 269 | |
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[2007] | 270 | ! =========================================================================== |
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| 271 | ! READ IN PARAMETERS FOR THE CLOSURE AND THE MIXING DISTRIBUTION |
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| 272 | ! =========================================================================== |
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[1992] | 273 | |
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| 274 | IF (iflag_con==3) THEN |
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[2007] | 275 | ! CALL cv3_inicp() |
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[1992] | 276 | CALL cv3_inip() |
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| 277 | END IF |
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| 278 | |
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[2007] | 279 | ! =========================================================================== |
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| 280 | ! READ IN PARAMETERS FOR CONVECTIVE INHIBITION BY TROPOS. DRYNESS |
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| 281 | ! =========================================================================== |
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[1992] | 282 | |
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[2007] | 283 | ! c$$$ open (56,file='supcrit.data') |
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| 284 | ! c$$$ read (56,*) Supcrit1, Supcrit2 |
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| 285 | ! c$$$ close (56) |
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[1992] | 286 | |
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[2007] | 287 | IF (prt_level>=10) WRITE (lunout, *) 'supcrit1, supcrit2', supcrit1, supcrit2 |
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[1992] | 288 | |
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[2007] | 289 | ! =========================================================================== |
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| 290 | ! Initialisation pour les bilans d'eau et d'energie |
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| 291 | ! =========================================================================== |
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[1992] | 292 | IF (if_ebil>=1) d_h_vcol_phy = 0. |
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| 293 | |
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| 294 | DO i = 1, klon |
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| 295 | cbmf(i) = 0. |
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[2007] | 296 | !! plcl(i) = 0. |
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[1992] | 297 | sigd(i) = 0. |
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| 298 | END DO |
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[2853] | 299 | END IF !(first) |
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[1992] | 300 | |
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[2007] | 301 | ! Initialisation a chaque pas de temps |
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[1992] | 302 | plfc(:) = 0. |
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| 303 | wbeff(:) = 100. |
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| 304 | plcl(:) = 0. |
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| 305 | |
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| 306 | DO k = 1, klev + 1 |
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| 307 | DO i = 1, klon |
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| 308 | em_ph(i, k) = paprs(i, k)/100.0 |
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| 309 | pmflxr(i, k) = 0. |
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| 310 | pmflxs(i, k) = 0. |
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| 311 | END DO |
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| 312 | END DO |
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| 313 | |
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| 314 | DO k = 1, klev |
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| 315 | DO i = 1, klon |
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| 316 | em_p(i, k) = pplay(i, k)/100.0 |
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| 317 | END DO |
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| 318 | END DO |
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| 319 | |
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| 320 | |
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[2007] | 321 | ! Feeding layer |
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[1992] | 322 | |
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| 323 | em_sig1feed = 1. |
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[2253] | 324 | !jyg< |
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| 325 | ! em_sig2feed = 0.97 |
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| 326 | em_sig2feed = cvl_sig2feed |
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| 327 | !>jyg |
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[2007] | 328 | ! em_sig2feed = 0.8 |
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| 329 | ! Relative Weight densities |
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[1992] | 330 | DO k = 1, klev |
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| 331 | em_wght(k) = 1. |
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| 332 | END DO |
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[2007] | 333 | !CRtest: couche alim des tehrmiques ponderee par a* |
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| 334 | ! DO i = 1, klon |
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| 335 | ! do k=1,lalim_conv(i) |
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| 336 | ! em_wght(k)=wght_th(i,k) |
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| 337 | ! print*,'em_wght=',em_wght(k),wght_th(i,k) |
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| 338 | ! end do |
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| 339 | ! END DO |
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[1992] | 340 | |
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| 341 | IF (iflag_con==4) THEN |
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| 342 | DO k = 1, klev |
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| 343 | DO i = 1, klon |
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| 344 | zx_t = t(i, k) |
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| 345 | zdelta = max(0., sign(1.,rtt-zx_t)) |
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| 346 | zx_qs = min(0.5, r2es*foeew(zx_t,zdelta)/em_p(i,k)/100.0) |
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| 347 | zcor = 1./(1.-retv*zx_qs) |
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| 348 | qs(i, k) = zx_qs*zcor |
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| 349 | END DO |
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| 350 | DO i = 1, klon |
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| 351 | zx_t = t_wake(i, k) |
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| 352 | zdelta = max(0., sign(1.,rtt-zx_t)) |
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| 353 | zx_qs = min(0.5, r2es*foeew(zx_t,zdelta)/em_p(i,k)/100.0) |
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| 354 | zcor = 1./(1.-retv*zx_qs) |
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| 355 | qs_wake(i, k) = zx_qs*zcor |
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| 356 | END DO |
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| 357 | END DO |
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[2007] | 358 | ELSE ! iflag_con=3 (modif de puristes qui fait la diffce pour la convergence numerique) |
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[1992] | 359 | DO k = 1, klev |
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| 360 | DO i = 1, klon |
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| 361 | zx_t = t(i, k) |
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| 362 | zdelta = max(0., sign(1.,rtt-zx_t)) |
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| 363 | zx_qs = r2es*foeew(zx_t, zdelta)/em_p(i, k)/100.0 |
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| 364 | zx_qs = min(0.5, zx_qs) |
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| 365 | zcor = 1./(1.-retv*zx_qs) |
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| 366 | zx_qs = zx_qs*zcor |
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| 367 | qs(i, k) = zx_qs |
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| 368 | END DO |
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| 369 | DO i = 1, klon |
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| 370 | zx_t = t_wake(i, k) |
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| 371 | zdelta = max(0., sign(1.,rtt-zx_t)) |
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| 372 | zx_qs = r2es*foeew(zx_t, zdelta)/em_p(i, k)/100.0 |
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| 373 | zx_qs = min(0.5, zx_qs) |
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| 374 | zcor = 1./(1.-retv*zx_qs) |
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| 375 | zx_qs = zx_qs*zcor |
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| 376 | qs_wake(i, k) = zx_qs |
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| 377 | END DO |
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| 378 | END DO |
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| 379 | END IF ! iflag_con |
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| 380 | |
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[2007] | 381 | ! ------------------------------------------------------------------ |
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[1992] | 382 | |
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[2007] | 383 | ! Main driver for convection: |
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| 384 | ! iflag_con=3 -> nvlle version de KE (JYG) |
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| 385 | ! iflag_con = 30 -> equivAlent to convect3 |
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| 386 | ! iflag_con = 4 -> equivAlent to convect1/2 |
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[1992] | 387 | |
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| 388 | |
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| 389 | IF (iflag_con==30) THEN |
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| 390 | |
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[2007] | 391 | ! print *, '-> cv_driver' !jyg |
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| 392 | CALL cv_driver(klon, klev, klevp1, ntra, iflag_con, & |
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| 393 | t, q, qs, u, v, tra, & |
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| 394 | em_p, em_ph, iflag, & |
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| 395 | d_t, d_q, d_u, d_v, d_tra, rain, & |
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| 396 | Vprecip, cbmf, sig1, w01, & !jyg |
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| 397 | kbas, ktop, & |
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| 398 | dtime, Ma, upwd, dnwd, dnwdbis, qcondc, wd, cape, & |
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[2853] | 399 | da, phi, mp, phii, d1a, dam, sij, clw, elij, & !RomP |
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[2007] | 400 | evap, ep, epmlmMm, eplaMm, & !RomP |
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[2481] | 401 | wdtrainA, wdtrainM, & !RomP |
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| 402 | epmax_diag) ! epmax_cape |
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[2007] | 403 | ! print *, 'cv_driver ->' !jyg |
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[1992] | 404 | |
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| 405 | DO i = 1, klon |
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[2007] | 406 | cbmf(i) = Ma(i, kbas(i)) |
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[1992] | 407 | END DO |
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| 408 | |
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[2007] | 409 | !RL |
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| 410 | wght(:, :) = 0. |
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| 411 | DO i = 1, klon |
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| 412 | wght(i, 1) = 1. |
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| 413 | END DO |
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| 414 | !RL |
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| 415 | |
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[1992] | 416 | ELSE |
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| 417 | |
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[2007] | 418 | !LF necessary for gathered fields |
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[1992] | 419 | nloc = klon |
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[2259] | 420 | CALL cva_driver(klon, klev, klev+1, ntra, nloc, k_upper_cv, & |
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[2007] | 421 | iflag_con, iflag_mix, iflag_ice_thermo, & |
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[2253] | 422 | iflag_clos, ok_conserv_q, dtime, cvl_comp_threshold, & |
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[2007] | 423 | t, q, qs, t_wake, q_wake, qs_wake, s_wake, u, v, tra, & |
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| 424 | em_p, em_ph, & |
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[2201] | 425 | Ale, Alp, omega, & |
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[2007] | 426 | em_sig1feed, em_sig2feed, em_wght, & |
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[4613] | 427 | iflag, d_t, d_q, d_qcomp, d_u, d_v, d_tra, rain, kbas, ktop, & |
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[2007] | 428 | cbmf, plcl, plfc, wbeff, sig1, w01, ptop2, sigd, & |
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[2306] | 429 | Ma, mip, Vprecip, Vprecipi, upwd, dnwd, dnwdbis, qcondc, wd, & |
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[2007] | 430 | cape, cin, tvp, & |
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| 431 | dd_t, dd_q, plim1, plim2, asupmax, supmax0, & |
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| 432 | asupmaxmin, lalim_conv, & |
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| 433 | !AC!+!RomP+jyg |
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[2853] | 434 | !! da,phi,mp,phii,d1a,dam,sij,clw,elij, & ! RomP |
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[2007] | 435 | !! evap,ep,epmlmMm,eplaMm, ! RomP |
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[2853] | 436 | da, phi, mp, phii, d1a, dam, sij, wght, & ! RomP+RL |
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[3496] | 437 | qta, clw, elij, evap, ep, epmlmMm, eplaMm, & ! RomP+RL |
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[4613] | 438 | wdtrainA, wdtrainS, wdtrainM, qtc, sigt, detrain, & |
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[2481] | 439 | tau_cld_cv, coefw_cld_cv, & ! RomP,AJ |
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[2007] | 440 | !AC!+!RomP+jyg |
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[2481] | 441 | epmax_diag) ! epmax_cape |
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[1992] | 442 | END IF |
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[2007] | 443 | ! ------------------------------------------------------------------ |
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[3197] | 444 | IF (prt_level>=10) WRITE (lunout, *) ' cva_driver -> cbmf,plcl,plfc,wbeff, d_t, d_q ', & |
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| 445 | cbmf(1), plcl(1), plfc(1), wbeff(1), d_t(1,1), d_q(1,1) |
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[1992] | 446 | |
---|
| 447 | DO i = 1, klon |
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| 448 | rain(i) = rain(i)/86400. |
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| 449 | rflag(i) = iflag(i) |
---|
| 450 | END DO |
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| 451 | |
---|
| 452 | DO k = 1, klev |
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| 453 | DO i = 1, klon |
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| 454 | d_t(i, k) = dtime*d_t(i, k) |
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| 455 | d_q(i, k) = dtime*d_q(i, k) |
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| 456 | d_u(i, k) = dtime*d_u(i, k) |
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| 457 | d_v(i, k) = dtime*d_v(i, k) |
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| 458 | END DO |
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| 459 | END DO |
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| 460 | |
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[2824] | 461 | IF (iflag_con==3) THEN |
---|
| 462 | DO i = 1,klon |
---|
| 463 | IF (wbeff(i) > 100. .OR. wbeff(i) == 0 .OR. iflag(i) > 3) THEN |
---|
| 464 | wbeff(i) = 0. |
---|
| 465 | convoccur(i) = 0. |
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| 466 | ELSE |
---|
| 467 | convoccur(i) = 1. |
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| 468 | ENDIF |
---|
| 469 | ENDDO |
---|
| 470 | ENDIF |
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| 471 | |
---|
[1992] | 472 | IF (iflag_con==30) THEN |
---|
| 473 | DO itra = 1, ntra |
---|
[524] | 474 | DO k = 1, klev |
---|
| 475 | DO i = 1, klon |
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[2007] | 476 | !RL! d_tra(i,k,itra) =dtime*d_tra(i,k,itra) |
---|
| 477 | d_tra(i, k, itra) = 0. |
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[1992] | 478 | END DO |
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| 479 | END DO |
---|
| 480 | END DO |
---|
| 481 | END IF |
---|
| 482 | |
---|
[2007] | 483 | !!AC! |
---|
[1992] | 484 | IF (iflag_con==3) THEN |
---|
| 485 | DO itra = 1, ntra |
---|
[524] | 486 | DO k = 1, klev |
---|
| 487 | DO i = 1, klon |
---|
[2007] | 488 | !RL! d_tra(i,k,itra) =dtime*d_tra(i,k,itra) |
---|
| 489 | d_tra(i, k, itra) = 0. |
---|
[1992] | 490 | END DO |
---|
| 491 | END DO |
---|
| 492 | END DO |
---|
| 493 | END IF |
---|
[2007] | 494 | !!AC! |
---|
[524] | 495 | |
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[1992] | 496 | DO k = 1, klev |
---|
| 497 | DO i = 1, klon |
---|
| 498 | t1(i, k) = t(i, k) + d_t(i, k) |
---|
| 499 | q1(i, k) = q(i, k) + d_q(i, k) |
---|
| 500 | END DO |
---|
| 501 | END DO |
---|
[2306] | 502 | ! !jyg |
---|
| 503 | IF (iflag_con == 30 .OR. iflag_ice_thermo ==0) THEN |
---|
| 504 | ! --Separation neige/pluie (pour diagnostics) !jyg |
---|
| 505 | DO k = 1, klev !jyg |
---|
| 506 | DO i = 1, klon !jyg |
---|
| 507 | IF (t1(i,k)<rtt) THEN !jyg |
---|
| 508 | pmflxs(i, k) = Vprecip(i, k) !jyg |
---|
| 509 | ELSE !jyg |
---|
| 510 | pmflxr(i, k) = Vprecip(i, k) !jyg |
---|
| 511 | END IF !jyg |
---|
| 512 | END DO !jyg |
---|
| 513 | END DO !jyg |
---|
| 514 | ELSE |
---|
| 515 | DO k = 1, klev !jyg |
---|
| 516 | DO i = 1, klon !jyg |
---|
| 517 | pmflxs(i, k) = Vprecipi(i, k) !jyg |
---|
| 518 | pmflxr(i, k) = Vprecip(i, k)-Vprecipi(i, k) !jyg |
---|
| 519 | END DO !jyg |
---|
| 520 | END DO !jyg |
---|
| 521 | ENDIF |
---|
[524] | 522 | |
---|
[2007] | 523 | ! c IF (if_ebil.ge.2) THEN |
---|
| 524 | ! c ztit='after convect' |
---|
| 525 | ! c CALL diagetpq(paire,ztit,ip_ebil,2,2,dtime |
---|
| 526 | ! c e , t1,q1,ql,qs,u,v,paprs,pplay |
---|
| 527 | ! c s , d_h_vcol, d_qt, d_qw, d_ql, d_qs, d_ec) |
---|
| 528 | ! c call diagphy(paire,ztit,ip_ebil |
---|
| 529 | ! c e , zero_v, zero_v, zero_v, zero_v, zero_v |
---|
| 530 | ! c e , zero_v, rain, zero_v, ztsol |
---|
| 531 | ! c e , d_h_vcol, d_qt, d_ec |
---|
| 532 | ! c s , fs_bound, fq_bound ) |
---|
| 533 | ! c END IF |
---|
[524] | 534 | |
---|
| 535 | |
---|
[2007] | 536 | ! les traceurs ne sont pas mis dans cette version de convect4: |
---|
[1992] | 537 | IF (iflag_con==4) THEN |
---|
| 538 | DO itra = 1, ntra |
---|
[524] | 539 | DO k = 1, klev |
---|
| 540 | DO i = 1, klon |
---|
[1992] | 541 | d_tra(i, k, itra) = 0. |
---|
| 542 | END DO |
---|
| 543 | END DO |
---|
| 544 | END DO |
---|
| 545 | END IF |
---|
[2007] | 546 | ! print*, 'concvl->: dd_t,dd_q ',dd_t(1,1),dd_q(1,1) |
---|
[879] | 547 | |
---|
[1992] | 548 | DO k = 1, klev |
---|
| 549 | DO i = 1, klon |
---|
| 550 | dtvpdt1(i, k) = 0. |
---|
| 551 | dtvpdq1(i, k) = 0. |
---|
| 552 | END DO |
---|
| 553 | END DO |
---|
| 554 | DO i = 1, klon |
---|
| 555 | dplcldt(i) = 0. |
---|
| 556 | dplcldr(i) = 0. |
---|
| 557 | END DO |
---|
[1650] | 558 | |
---|
[1992] | 559 | IF (prt_level>=20) THEN |
---|
| 560 | DO k = 1, klev |
---|
[2007] | 561 | ! print*,'physiq apres_add_con i k it d_u d_v d_t d_q qdl0',igout, & |
---|
| 562 | ! k,itap,d_u_con(igout,k) ,d_v_con(igout,k), d_t_con(igout,k), & |
---|
| 563 | ! d_q_con(igout,k),dql0(igout,k) |
---|
| 564 | ! print*,'phys apres_add_con itap Ma cin ALE ALP wak t q undi t q', & |
---|
| 565 | ! itap,Ma(igout,k),cin(igout),ALE(igout), ALP(igout), & |
---|
| 566 | ! t_wake(igout,k),q_wake(igout,k),t_undi(igout,k),q_undi(igout,k) |
---|
| 567 | ! print*,'phy apres_add_con itap CON rain snow EMA wk1 wk2 Vpp mip', & |
---|
| 568 | ! itap,rain_con(igout),snow_con(igout),ema_work1(igout,k), & |
---|
| 569 | ! ema_work2(igout,k),Vprecip(igout,k), mip(igout,k) |
---|
| 570 | ! print*,'phy apres_add_con itap upwd dnwd dnwd0 cape tvp Tconv ', & |
---|
| 571 | ! itap,upwd(igout,k),dnwd(igout,k),dnwd0(igout,k),cape(igout), & |
---|
| 572 | ! tvp(igout,k),Tconv(igout,k) |
---|
| 573 | ! print*,'phy apres_add_con itap dtvpdt dtvdq dplcl dplcldr qcondc', & |
---|
| 574 | ! itap,dtvpdt1(igout,k),dtvpdq1(igout,k),dplcldt(igout), & |
---|
| 575 | ! dplcldr(igout),qcondc(igout,k) |
---|
| 576 | ! print*,'phy apres_add_con itap wd pmflxr Kpmflxr Kp1 Kpmflxs Kp1', & |
---|
| 577 | ! itap,wd(igout),pmflxr(igout,k),pmflxr(igout,k+1),pmflxs(igout,k), & |
---|
| 578 | ! pmflxs(igout,k+1) |
---|
| 579 | ! print*,'phy apres_add_con itap da phi mp ftd fqd lalim wgth', & |
---|
| 580 | ! itap,da(igout,k),phi(igout,k,k),mp(igout,k),ftd(igout,k), & |
---|
| 581 | ! fqd(igout,k),lalim_conv(igout),wght_th(igout,k) |
---|
[1992] | 582 | END DO |
---|
| 583 | END IF !(prt_level.EQ.20) THEN |
---|
[879] | 584 | |
---|
[1992] | 585 | RETURN |
---|
| 586 | END SUBROUTINE concvl |
---|
| 587 | |
---|