[781] | 1 | ! |
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[2538] | 2 | ! $Id: surf_ocean_mod.F90 3906 2021-05-19 10:35:18Z fairhead $ |
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| 3 | ! |
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[781] | 4 | MODULE surf_ocean_mod |
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| 5 | |
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| 6 | IMPLICIT NONE |
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| 7 | |
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| 8 | CONTAINS |
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[3395] | 9 | ! |
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| 10 | !****************************************************************************** |
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| 11 | ! |
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[888] | 12 | SUBROUTINE surf_ocean(rlon, rlat, swnet, lwnet, alb1, & |
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[2243] | 13 | windsp, rmu0, fder, tsurf_in, & |
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[781] | 14 | itime, dtime, jour, knon, knindex, & |
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[2254] | 15 | p1lay, z1lay, cdragh, cdragm, precip_rain, precip_snow, temp_air, spechum, & |
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[1067] | 16 | AcoefH, AcoefQ, BcoefH, BcoefQ, & |
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| 17 | AcoefU, AcoefV, BcoefU, BcoefV, & |
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[2240] | 18 | ps, u1, v1, gustiness, rugoro, pctsrf, & |
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[888] | 19 | snow, qsurf, agesno, & |
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[2243] | 20 | z0m, z0h, SFRWL, alb_dir_new, alb_dif_new, evap, fluxsens, fluxlat, & |
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[1067] | 21 | tsurf_new, dflux_s, dflux_l, lmt_bils, & |
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[3815] | 22 | flux_u1, flux_v1, delta_sst, delta_sal, ds_ns, dt_ns, dter, dser, tkt, tks, & |
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| 23 | taur, sss) |
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[1067] | 24 | |
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[3395] | 25 | use albedo, only: alboc, alboc_cd |
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[3815] | 26 | use bulk_flux_m, only: bulk_flux |
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[3395] | 27 | USE dimphy, ONLY: klon, zmasq |
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| 28 | USE surface_data, ONLY : type_ocean |
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| 29 | USE ocean_forced_mod, ONLY : ocean_forced_noice |
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| 30 | USE ocean_slab_mod, ONLY : ocean_slab_noice |
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| 31 | USE ocean_cpl_mod, ONLY : ocean_cpl_noice |
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| 32 | USE indice_sol_mod, ONLY : nbsrf, is_oce |
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| 33 | USE limit_read_mod |
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[3815] | 34 | use config_ocean_skin_m, only: activate_ocean_skin |
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[3395] | 35 | ! |
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| 36 | ! This subroutine will make a call to ocean_XXX_noice according to the ocean mode (force, |
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| 37 | ! slab or couple). The calculations of albedo and rugosity for the ocean surface are |
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| 38 | ! done in here because they are identical for the different modes of ocean. |
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[1785] | 39 | |
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| 40 | |
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[793] | 41 | INCLUDE "YOMCST.h" |
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[781] | 42 | |
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[2178] | 43 | include "clesphys.h" |
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[2455] | 44 | ! for cycle_diurne and for iflag_z0_oce==-1 (prescribed z0) |
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[2178] | 45 | |
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[3395] | 46 | ! Input variables |
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| 47 | !****************************************************************************** |
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[781] | 48 | INTEGER, INTENT(IN) :: itime, jour, knon |
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| 49 | INTEGER, DIMENSION(klon), INTENT(IN) :: knindex |
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| 50 | REAL, INTENT(IN) :: dtime |
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| 51 | REAL, DIMENSION(klon), INTENT(IN) :: rlon, rlat |
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[888] | 52 | REAL, DIMENSION(klon), INTENT(IN) :: swnet ! net shortwave radiation at surface |
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| 53 | REAL, DIMENSION(klon), INTENT(IN) :: lwnet ! net longwave radiation at surface |
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| 54 | REAL, DIMENSION(klon), INTENT(IN) :: alb1 ! albedo in visible SW interval |
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[3815] | 55 | REAL, DIMENSION(klon), INTENT(IN) :: windsp ! wind at 10 m, in m s-1 |
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[781] | 56 | REAL, DIMENSION(klon), INTENT(IN) :: rmu0 |
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| 57 | REAL, DIMENSION(klon), INTENT(IN) :: fder |
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[3906] | 58 | REAL, DIMENSION(klon), INTENT(IN) :: tsurf_in ! defined only for subscripts 1:knon |
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[2254] | 59 | REAL, DIMENSION(klon), INTENT(IN) :: p1lay,z1lay ! pression (Pa) et altitude (m) du premier niveau |
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[1067] | 60 | REAL, DIMENSION(klon), INTENT(IN) :: cdragh |
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| 61 | REAL, DIMENSION(klon), INTENT(IN) :: cdragm |
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[781] | 62 | REAL, DIMENSION(klon), INTENT(IN) :: precip_rain, precip_snow |
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| 63 | REAL, DIMENSION(klon), INTENT(IN) :: temp_air, spechum |
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[1067] | 64 | REAL, DIMENSION(klon), INTENT(IN) :: AcoefH, AcoefQ, BcoefH, BcoefQ |
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| 65 | REAL, DIMENSION(klon), INTENT(IN) :: AcoefU, AcoefV, BcoefU, BcoefV |
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[781] | 66 | REAL, DIMENSION(klon), INTENT(IN) :: ps |
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[2240] | 67 | REAL, DIMENSION(klon), INTENT(IN) :: u1, v1, gustiness |
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[781] | 68 | REAL, DIMENSION(klon), INTENT(IN) :: rugoro |
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| 69 | REAL, DIMENSION(klon,nbsrf), INTENT(IN) :: pctsrf |
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| 70 | |
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[3395] | 71 | ! In/Output variables |
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| 72 | !****************************************************************************** |
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[888] | 73 | REAL, DIMENSION(klon), INTENT(INOUT) :: snow |
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| 74 | REAL, DIMENSION(klon), INTENT(INOUT) :: qsurf |
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[781] | 75 | REAL, DIMENSION(klon), INTENT(INOUT) :: agesno |
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[3906] | 76 | REAL, DIMENSION(klon), INTENT(inOUT) :: z0h |
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[781] | 77 | |
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[3815] | 78 | REAL, intent(inout):: delta_sst(:) ! (knon) |
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| 79 | ! Ocean-air interface temperature minus bulk SST, in K. Defined |
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| 80 | ! only if activate_ocean_skin >= 1. |
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| 81 | |
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| 82 | real, intent(inout):: delta_sal(:) ! (knon) |
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| 83 | ! Ocean-air interface salinity minus bulk salinity, in ppt. Defined |
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| 84 | ! only if activate_ocean_skin >= 1. |
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| 85 | |
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| 86 | REAL, intent(inout):: ds_ns(:) ! (knon) |
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| 87 | ! "delta salinity near surface". Salinity variation in the |
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| 88 | ! near-surface turbulent layer. That is subskin salinity minus |
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| 89 | ! foundation salinity. In ppt. |
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| 90 | |
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| 91 | REAL, intent(inout):: dt_ns(:) ! (knon) |
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| 92 | ! "delta temperature near surface". Temperature variation in the |
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| 93 | ! near-surface turbulent layer. That is subskin temperature |
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| 94 | ! minus foundation temperature. (Can be negative.) In K. |
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| 95 | |
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[3395] | 96 | ! Output variables |
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[3815] | 97 | !************************************************************************** |
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[3389] | 98 | REAL, DIMENSION(klon), INTENT(OUT) :: z0m |
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[3395] | 99 | !albedo SB >>> |
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[3906] | 100 | ! REAL, DIMENSION(klon), INTENT(OUT) :: alb1_new ! new albedo in visible SW interval |
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| 101 | ! REAL, DIMENSION(klon), INTENT(OUT) :: alb2_new ! new albedo in near IR interval |
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| 102 | REAL, DIMENSION(6), INTENT(IN) :: SFRWL |
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| 103 | REAL, DIMENSION(klon,nsw), INTENT(OUT) :: alb_dir_new,alb_dif_new |
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[3395] | 104 | !albedo SB <<< |
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[781] | 105 | REAL, DIMENSION(klon), INTENT(OUT) :: evap, fluxsens, fluxlat |
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[3906] | 106 | REAL, DIMENSION(klon), INTENT(OUT) :: tsurf_new ! sea surface temperature, in K |
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[781] | 107 | REAL, DIMENSION(klon), INTENT(OUT) :: dflux_s, dflux_l |
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[996] | 108 | REAL, DIMENSION(klon), INTENT(OUT) :: lmt_bils |
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[1067] | 109 | REAL, DIMENSION(klon), INTENT(OUT) :: flux_u1, flux_v1 |
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[781] | 110 | |
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[3815] | 111 | REAL, intent(out):: dter(:) ! (knon) |
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| 112 | ! Temperature variation in the diffusive microlayer, that is |
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| 113 | ! ocean-air interface temperature minus subskin temperature. In |
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| 114 | ! K. |
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| 115 | |
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| 116 | REAL, intent(out):: dser(:) ! (knon) |
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| 117 | ! Salinity variation in the diffusive microlayer, that is |
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| 118 | ! ocean-air interface salinity minus subskin salinity. In ppt. |
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| 119 | |
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| 120 | REAL, intent(out):: tkt(:) ! (knon) |
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| 121 | ! épaisseur (m) de la couche de diffusion thermique (microlayer) |
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| 122 | ! cool skin thickness |
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| 123 | |
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| 124 | REAL, intent(out):: tks(:) ! (knon) |
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| 125 | ! épaisseur (m) de la couche de diffusion de masse (microlayer) |
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| 126 | |
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| 127 | REAL, intent(out):: taur(:) ! (knon) |
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| 128 | ! momentum flux due to rain, in Pa |
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| 129 | |
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| 130 | real, intent(out):: sss(:) ! (klon) |
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| 131 | ! Bulk salinity of the surface layer of the ocean, in ppt. (Only |
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| 132 | ! defined for subscripts 1:knon, but we have to declare it with |
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| 133 | ! size klon because of the coupling machinery.) |
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| 134 | |
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[3395] | 135 | ! Local variables |
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[3815] | 136 | !************************************************************************* |
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[2227] | 137 | INTEGER :: i, k |
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[1146] | 138 | REAL :: tmp |
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| 139 | REAL, PARAMETER :: cepdu2=(0.1)**2 |
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[3002] | 140 | REAL, DIMENSION(klon) :: alb_eau, z0_lim |
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[888] | 141 | REAL, DIMENSION(klon) :: radsol |
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[2254] | 142 | REAL, DIMENSION(klon) :: cdragq ! Cdrag pour l'evaporation |
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[2391] | 143 | CHARACTER(len=20),PARAMETER :: modname="surf_ocean" |
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[3815] | 144 | real rhoa(knon) ! density of moist air (kg / m3) |
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| 145 | REAL sens_prec_liq(knon) |
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[781] | 146 | |
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[3815] | 147 | REAL t_int(knon) ! ocean-air interface temperature, in K |
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| 148 | real s_int(knon) ! ocean-air interface salinity, in ppt |
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[888] | 149 | |
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[3815] | 150 | !************************************************************************** |
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[888] | 151 | |
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[3815] | 152 | |
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[3395] | 153 | !****************************************************************************** |
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| 154 | ! Calculate total net radiance at surface |
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| 155 | ! |
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| 156 | !****************************************************************************** |
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[2719] | 157 | radsol(1:klon) = 0.0 ! initialisation a priori inutile |
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[888] | 158 | radsol(1:knon) = swnet(1:knon) + lwnet(1:knon) |
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| 159 | |
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[3395] | 160 | !****************************************************************************** |
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| 161 | ! Cdragq computed from cdrag |
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| 162 | ! The difference comes only from a factor (f_z0qh_oce) on z0, so that |
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| 163 | ! it can be computed inside surf_ocean |
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| 164 | ! More complicated appraches may require the propagation through |
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| 165 | ! pbl_surface of an independant cdragq variable. |
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| 166 | !****************************************************************************** |
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[2254] | 167 | |
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| 168 | IF ( f_z0qh_oce .ne. 1.) THEN |
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[3395] | 169 | ! Si on suit les formulations par exemple de Tessel, on |
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| 170 | ! a z0h=0.4*nu/u*, z0q=0.62*nu/u*, d'ou f_z0qh_oce=0.62/0.4=1.55 |
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[2718] | 171 | cdragq(1:knon)=cdragh(1:knon)* & |
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[3395] | 172 | log(z1lay(1:knon)/z0h(1:knon))/log(z1lay(1:knon)/(f_z0qh_oce*z0h(1:knon))) |
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[2254] | 173 | ELSE |
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[2718] | 174 | cdragq(1:knon)=cdragh(1:knon) |
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[2254] | 175 | ENDIF |
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| 176 | |
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[3815] | 177 | rhoa = PS(:KNON) / (Rd * temp_air(:knon) * (1. + retv * spechum(:knon))) |
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[3395] | 178 | !****************************************************************************** |
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| 179 | ! Switch according to type of ocean (couple, slab or forced) |
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| 180 | !****************************************************************************** |
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[996] | 181 | SELECT CASE(type_ocean) |
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[781] | 182 | CASE('couple') |
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[888] | 183 | CALL ocean_cpl_noice( & |
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| 184 | swnet, lwnet, alb1, & |
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[1067] | 185 | windsp, fder, & |
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[781] | 186 | itime, dtime, knon, knindex, & |
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[2254] | 187 | p1lay, cdragh, cdragq, cdragm, precip_rain, precip_snow,temp_air,spechum,& |
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[1067] | 188 | AcoefH, AcoefQ, BcoefH, BcoefQ, & |
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| 189 | AcoefU, AcoefV, BcoefU, BcoefV, & |
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[3815] | 190 | ps, u1, v1, gustiness, tsurf_in, & |
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[888] | 191 | radsol, snow, agesno, & |
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[1067] | 192 | qsurf, evap, fluxsens, fluxlat, flux_u1, flux_v1, & |
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[3815] | 193 | tsurf_new, dflux_s, dflux_l, sens_prec_liq, sss, delta_sal, rhoa, & |
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| 194 | delta_sst) |
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[781] | 195 | |
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| 196 | CASE('slab') |
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[888] | 197 | CALL ocean_slab_noice( & |
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[996] | 198 | itime, dtime, jour, knon, knindex, & |
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[2254] | 199 | p1lay, cdragh, cdragq, cdragm, precip_rain, precip_snow, temp_air, spechum,& |
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[1067] | 200 | AcoefH, AcoefQ, BcoefH, BcoefQ, & |
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| 201 | AcoefU, AcoefV, BcoefU, BcoefV, & |
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[2240] | 202 | ps, u1, v1, gustiness, tsurf_in, & |
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[2209] | 203 | radsol, snow, & |
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[1067] | 204 | qsurf, evap, fluxsens, fluxlat, flux_u1, flux_v1, & |
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[996] | 205 | tsurf_new, dflux_s, dflux_l, lmt_bils) |
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[3395] | 206 | |
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[781] | 207 | CASE('force') |
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[888] | 208 | CALL ocean_forced_noice( & |
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| 209 | itime, dtime, jour, knon, knindex, & |
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[2254] | 210 | p1lay, cdragh, cdragq, cdragm, precip_rain, precip_snow, & |
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[781] | 211 | temp_air, spechum, & |
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[1067] | 212 | AcoefH, AcoefQ, BcoefH, BcoefQ, & |
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| 213 | AcoefU, AcoefV, BcoefU, BcoefV, & |
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[3815] | 214 | ps, u1, v1, gustiness, tsurf_in, & |
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[888] | 215 | radsol, snow, agesno, & |
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[1067] | 216 | qsurf, evap, fluxsens, fluxlat, flux_u1, flux_v1, & |
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[3815] | 217 | tsurf_new, dflux_s, dflux_l, sens_prec_liq, rhoa) |
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[781] | 218 | END SELECT |
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| 219 | |
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[3395] | 220 | !****************************************************************************** |
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| 221 | ! fcodron: compute lmt_bils forced case (same as wfbils_oce / 1.-contfracatm) |
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| 222 | !****************************************************************************** |
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[2057] | 223 | IF (type_ocean.NE.'slab') THEN |
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[3395] | 224 | lmt_bils(1:klon)=0. |
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| 225 | DO i=1,knon |
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| 226 | lmt_bils(knindex(i))=(swnet(i)+lwnet(i)+fluxsens(i)+fluxlat(i)) & |
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| 227 | *pctsrf(knindex(i),is_oce)/(1.-zmasq(knindex(i))) |
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| 228 | END DO |
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[2057] | 229 | END IF |
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| 230 | |
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[3395] | 231 | !****************************************************************************** |
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| 232 | ! Calculate ocean surface albedo |
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| 233 | !****************************************************************************** |
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| 234 | !albedo SB >>> |
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| 235 | IF (iflag_albedo==0) THEN |
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| 236 | !--old parametrizations of ocean surface albedo |
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| 237 | ! |
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| 238 | IF (iflag_cycle_diurne.GE.1) THEN |
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| 239 | ! |
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| 240 | CALL alboc_cd(rmu0,alb_eau) |
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| 241 | ! |
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| 242 | !--ad-hoc correction for model radiative balance tuning |
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| 243 | !--now outside alboc_cd routine |
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| 244 | alb_eau(1:klon) = fmagic*alb_eau(1:klon) + pmagic |
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| 245 | alb_eau(1:klon)=MIN(MAX(alb_eau(1:klon),0.0),1.0) |
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| 246 | ! |
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| 247 | ELSE |
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| 248 | ! |
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| 249 | CALL alboc(REAL(jour),rlat,alb_eau) |
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| 250 | !--ad-hoc correction for model radiative balance tuning |
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| 251 | !--now outside alboc routine |
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| 252 | alb_eau(1:klon) = fmagic*alb_eau(1:klon) + pmagic |
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| 253 | alb_eau(1:klon)=MIN(MAX(alb_eau(1:klon),0.04),0.60) |
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| 254 | ! |
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| 255 | ENDIF |
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| 256 | ! |
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| 257 | DO i =1, knon |
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| 258 | DO k=1,nsw |
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| 259 | alb_dir_new(i,k) = alb_eau(knindex(i)) |
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| 260 | ENDDO |
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| 261 | ENDDO |
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| 262 | !IM 09122015 next line corresponds to the old way of doing in LMDZ5A/IPSLCM5A versions |
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| 263 | !albedo for diffuse radiation is taken the same as for direct radiation |
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| 264 | alb_dif_new(1:knon,:)=alb_dir_new(1:knon,:) |
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| 265 | !IM 09122015 end |
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| 266 | ! |
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| 267 | ELSE IF (iflag_albedo==1) THEN |
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| 268 | !--new parametrization of ocean surface albedo by Sunghye Baek |
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| 269 | !--albedo for direct and diffuse radiation are different |
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| 270 | ! |
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| 271 | CALL ocean_albedo(knon,rmu0,knindex,windsp,SFRWL,alb_dir_new,alb_dif_new) |
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| 272 | ! |
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| 273 | !--ad-hoc correction for model radiative balance tuning |
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| 274 | alb_dir_new(1:knon,:) = fmagic*alb_dir_new(1:knon,:) + pmagic |
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| 275 | alb_dif_new(1:knon,:) = fmagic*alb_dif_new(1:knon,:) + pmagic |
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| 276 | alb_dir_new(1:knon,:)=MIN(MAX(alb_dir_new(1:knon,:),0.0),1.0) |
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| 277 | alb_dif_new(1:knon,:)=MIN(MAX(alb_dif_new(1:knon,:),0.0),1.0) |
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| 278 | ! |
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| 279 | ELSE IF (iflag_albedo==2) THEN |
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| 280 | ! F. Codron albedo read from limit.nc |
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| 281 | CALL limit_read_rug_alb(itime, dtime, jour,& |
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| 282 | knon, knindex, z0_lim, alb_eau) |
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| 283 | DO i =1, knon |
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| 284 | DO k=1,nsw |
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| 285 | alb_dir_new(i,k) = alb_eau(i) |
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| 286 | ENDDO |
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| 287 | ENDDO |
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| 288 | alb_dif_new=alb_dir_new |
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[781] | 289 | ENDIF |
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[3395] | 290 | !albedo SB <<< |
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[2227] | 291 | |
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[3395] | 292 | !****************************************************************************** |
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| 293 | ! Calculate the rugosity |
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| 294 | !****************************************************************************** |
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| 295 | IF (iflag_z0_oce==0) THEN |
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| 296 | DO i = 1, knon |
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| 297 | tmp = MAX(cepdu2,gustiness(i)+u1(i)**2+v1(i)**2) |
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| 298 | z0m(i) = 0.018*cdragm(i) * (gustiness(i)+u1(i)**2+v1(i)**2)/RG & |
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| 299 | + 0.11*14e-6 / SQRT(cdragm(i) * tmp) |
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| 300 | z0m(i) = MAX(1.5e-05,z0m(i)) |
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| 301 | ENDDO |
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| 302 | z0h(1:knon)=z0m(1:knon) ! En attendant mieux |
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[2243] | 303 | |
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[3395] | 304 | ELSE IF (iflag_z0_oce==1) THEN |
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| 305 | DO i = 1, knon |
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| 306 | tmp = MAX(cepdu2,gustiness(i)+u1(i)**2+v1(i)**2) |
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| 307 | z0m(i) = 0.018*cdragm(i) * (gustiness(i)+u1(i)**2+v1(i)**2)/RG & |
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| 308 | + 0.11*14e-6 / SQRT(cdragm(i) * tmp) |
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| 309 | z0m(i) = MAX(1.5e-05,z0m(i)) |
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| 310 | z0h(i)=0.4*14e-6 / SQRT(cdragm(i) * tmp) |
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| 311 | ENDDO |
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| 312 | ELSE IF (iflag_z0_oce==-1) THEN |
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| 313 | DO i = 1, knon |
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| 314 | z0m(i) = z0min |
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| 315 | z0h(i) = z0min |
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| 316 | ENDDO |
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| 317 | ELSE |
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[2391] | 318 | CALL abort_physic(modname,'version non prevue',1) |
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[3395] | 319 | ENDIF |
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[3815] | 320 | |
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| 321 | if (activate_ocean_skin >= 1) then |
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| 322 | if (type_ocean /= 'couple') sss(:knon) = 35. |
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| 323 | call bulk_flux(tkt, tks, taur, dter, dser, t_int, s_int, ds_ns, dt_ns, & |
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| 324 | u = windsp(:knon), t_ocean_1 = tsurf_new(:knon), s1 = sss(:knon), & |
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| 325 | rain = precip_rain(:knon) + precip_snow(:knon), & |
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| 326 | hf = - fluxsens(:knon), hlb = - fluxlat(:knon), & |
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| 327 | rnl = - lwnet(:knon), & |
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| 328 | tau = sqrt(flux_u1(:knon)**2 + flux_v1(:knon)**2), rhoa = rhoa, & |
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| 329 | xlv = [(rlvtt, i = 1, knon)], rf = - sens_prec_liq, dtime = dtime, & |
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| 330 | rns = swnet(:knon)) |
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| 331 | delta_sst = t_int - tsurf_new(:knon) |
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| 332 | delta_sal = s_int - sss(:knon) |
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| 333 | if (activate_ocean_skin >= 2) tsurf_new(:knon) = t_int |
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| 334 | end if |
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| 335 | |
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[781] | 336 | END SUBROUTINE surf_ocean |
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[3815] | 337 | !**************************************************************************** |
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[3395] | 338 | ! |
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[781] | 339 | END MODULE surf_ocean_mod |
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