[825] | 1 | MODULE limistate |
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| 2 | !!====================================================================== |
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| 3 | !! *** MODULE limistate *** |
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| 4 | !! Initialisation of diagnostics ice variables |
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| 5 | !!====================================================================== |
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[2528] | 6 | !! History : 2.0 ! 2004-01 (C. Ethe, G. Madec) Original code |
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[4161] | 7 | !! 4.0 ! 2011-02 (G. Madec) dynamical allocation |
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[4990] | 8 | !! - ! 2014 (C. Rousset) add N/S initializations |
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[2528] | 9 | !!---------------------------------------------------------------------- |
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[825] | 10 | #if defined key_lim3 |
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| 11 | !!---------------------------------------------------------------------- |
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[834] | 12 | !! 'key_lim3' : LIM3 sea-ice model |
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[825] | 13 | !!---------------------------------------------------------------------- |
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| 14 | !! lim_istate : Initialisation of diagnostics ice variables |
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| 15 | !! lim_istate_init : initialization of ice state and namelist read |
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| 16 | !!---------------------------------------------------------------------- |
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[2528] | 17 | USE phycst ! physical constant |
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| 18 | USE oce ! dynamics and tracers variables |
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| 19 | USE dom_oce ! ocean domain |
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| 20 | USE sbc_oce ! Surface boundary condition: ocean fields |
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[4161] | 21 | USE sbc_ice ! Surface boundary condition: ice fields |
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[2528] | 22 | USE eosbn2 ! equation of state |
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| 23 | USE ice ! sea-ice variables |
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[4161] | 24 | USE par_oce ! ocean parameters |
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[2528] | 25 | USE dom_ice ! sea-ice domain |
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| 26 | USE in_out_manager ! I/O manager |
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[2715] | 27 | USE lib_mpp ! MPP library |
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[4161] | 28 | USE lib_fortran ! Fortran utilities (allows no signed zero when 'key_nosignedzero' defined) |
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[3294] | 29 | USE wrk_nemo ! work arrays |
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[825] | 30 | |
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| 31 | IMPLICIT NONE |
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| 32 | PRIVATE |
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| 33 | |
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[2528] | 34 | PUBLIC lim_istate ! routine called by lim_init.F90 |
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[825] | 35 | |
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[4166] | 36 | ! !!** init namelist (namiceini) ** |
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[5123] | 37 | REAL(wp) :: rn_thres_sst ! threshold water temperature for initial sea ice |
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| 38 | REAL(wp) :: rn_hts_ini_n ! initial snow thickness in the north |
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| 39 | REAL(wp) :: rn_hts_ini_s ! initial snow thickness in the south |
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| 40 | REAL(wp) :: rn_hti_ini_n ! initial ice thickness in the north |
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| 41 | REAL(wp) :: rn_hti_ini_s ! initial ice thickness in the south |
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| 42 | REAL(wp) :: rn_ati_ini_n ! initial leads area in the north |
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| 43 | REAL(wp) :: rn_ati_ini_s ! initial leads area in the south |
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| 44 | REAL(wp) :: rn_smi_ini_n ! initial salinity |
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| 45 | REAL(wp) :: rn_smi_ini_s ! initial salinity |
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| 46 | REAL(wp) :: rn_tmi_ini_n ! initial temperature |
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| 47 | REAL(wp) :: rn_tmi_ini_s ! initial temperature |
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[4166] | 48 | |
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[5123] | 49 | LOGICAL :: ln_iceini ! initialization or not |
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[825] | 50 | !!---------------------------------------------------------------------- |
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[4161] | 51 | !! LIM 3.0, UCL-LOCEAN-IPSL (2008) |
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[1156] | 52 | !! $Id$ |
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[4161] | 53 | !! Software governed by the CeCILL licence (modipsl/doc/NEMO_CeCILL.txt) |
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[825] | 54 | !!---------------------------------------------------------------------- |
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| 55 | CONTAINS |
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| 56 | |
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| 57 | SUBROUTINE lim_istate |
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| 58 | !!------------------------------------------------------------------- |
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| 59 | !! *** ROUTINE lim_istate *** |
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| 60 | !! |
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| 61 | !! ** Purpose : defined the sea-ice initial state |
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| 62 | !! |
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[4161] | 63 | !! ** Method : |
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| 64 | !! This routine will put some ice where ocean |
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| 65 | !! is at the freezing point, then fill in ice |
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| 66 | !! state variables using prescribed initial |
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| 67 | !! values in the namelist |
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| 68 | !! |
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| 69 | !! ** Steps : |
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| 70 | !! 1) Read namelist |
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| 71 | !! 2) Basal temperature; ice and hemisphere masks |
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| 72 | !! 3) Fill in the ice thickness distribution using gaussian |
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| 73 | !! 4) Fill in space-dependent arrays for state variables |
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| 74 | !! 5) Diagnostic arrays |
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| 75 | !! 6) Lateral boundary conditions |
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| 76 | !! |
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[4333] | 77 | !! ** Notes : o_i, t_su, t_s, t_i, s_i must be filled everywhere, even |
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[4990] | 78 | !! where there is no ice (clem: I do not know why, is it mandatory?) |
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[4333] | 79 | !! |
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[4161] | 80 | !! History : |
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| 81 | !! 2.0 ! 01-04 (C. Ethe, G. Madec) Original code |
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| 82 | !! 3.0 ! 2007 (M. Vancoppenolle) Rewrite for ice cats |
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| 83 | !! 4.0 ! 09-11 (M. Vancoppenolle) Enhanced version for ice cats |
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| 84 | !!-------------------------------------------------------------------- |
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| 85 | |
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| 86 | !! * Local variables |
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| 87 | INTEGER :: ji, jj, jk, jl ! dummy loop indices |
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[5123] | 88 | REAL(wp) :: ztmelts, zdh |
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[4161] | 89 | INTEGER :: i_hemis, i_fill, jl0 |
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| 90 | REAL(wp) :: ztest_1, ztest_2, ztest_3, ztest_4, ztests, zsigma, zarg, zA, zV, zA_cons, zV_cons, zconv |
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[4688] | 91 | REAL(wp), POINTER, DIMENSION(:) :: zht_i_ini, zat_i_ini, zvt_i_ini, zht_s_ini, zsm_i_ini, ztm_i_ini |
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| 92 | REAL(wp), POINTER, DIMENSION(:,:) :: zh_i_ini, za_i_ini, zv_i_ini |
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| 93 | REAL(wp), POINTER, DIMENSION(:,:) :: zswitch ! ice indicator |
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[4161] | 94 | INTEGER, POINTER, DIMENSION(:,:) :: zhemis ! hemispheric index |
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[825] | 95 | !-------------------------------------------------------------------- |
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[921] | 96 | |
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[4688] | 97 | CALL wrk_alloc( jpi, jpj, zswitch ) |
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[4161] | 98 | CALL wrk_alloc( jpi, jpj, zhemis ) |
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[4688] | 99 | CALL wrk_alloc( jpl, 2, zh_i_ini, za_i_ini, zv_i_ini ) |
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| 100 | CALL wrk_alloc( 2, zht_i_ini, zat_i_ini, zvt_i_ini, zht_s_ini, zsm_i_ini, ztm_i_ini ) |
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[2715] | 101 | |
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[4161] | 102 | IF(lwp) WRITE(numout,*) |
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| 103 | IF(lwp) WRITE(numout,*) 'lim_istate : Ice initialization ' |
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| 104 | IF(lwp) WRITE(numout,*) '~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ ' |
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| 105 | |
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[825] | 106 | !-------------------------------------------------------------------- |
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[4161] | 107 | ! 1) Read namelist |
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[825] | 108 | !-------------------------------------------------------------------- |
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| 109 | |
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| 110 | CALL lim_istate_init ! reading the initials parameters of the ice |
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| 111 | |
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[4688] | 112 | ! surface temperature |
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| 113 | DO jl = 1, jpl ! loop over categories |
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[5123] | 114 | t_su (:,:,jl) = rt0 * tmask(:,:,1) |
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| 115 | tn_ice(:,:,jl) = rt0 * tmask(:,:,1) |
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[4688] | 116 | END DO |
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| 117 | |
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[4990] | 118 | ! basal temperature (considered at freezing point) |
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[5123] | 119 | t_bo(:,:) = ( eos_fzp( tsn(:,:,1,jp_sal) ) + rt0 ) * tmask(:,:,1) |
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[4990] | 120 | |
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[5123] | 121 | IF( ln_iceini ) THEN |
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[4688] | 122 | |
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[825] | 123 | !-------------------------------------------------------------------- |
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[4161] | 124 | ! 2) Basal temperature, ice mask and hemispheric index |
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[825] | 125 | !-------------------------------------------------------------------- |
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[4990] | 126 | |
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| 127 | DO jj = 1, jpj ! ice if sst <= t-freez + ttest |
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[1037] | 128 | DO ji = 1, jpi |
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[5123] | 129 | IF( ( tsn(ji,jj,1,jp_tem) - ( t_bo(ji,jj) - rt0 ) ) * tmask(ji,jj,1) >= rn_thres_sst ) THEN |
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| 130 | zswitch(ji,jj) = 0._wp * tmask(ji,jj,1) ! no ice |
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[4765] | 131 | ELSE |
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[5123] | 132 | zswitch(ji,jj) = 1._wp * tmask(ji,jj,1) ! ice |
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[1037] | 133 | ENDIF |
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| 134 | END DO |
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| 135 | END DO |
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| 136 | |
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| 137 | |
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[4161] | 138 | ! Hemispheric index |
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[825] | 139 | DO jj = 1, jpj |
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| 140 | DO ji = 1, jpi |
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[2528] | 141 | IF( fcor(ji,jj) >= 0._wp ) THEN |
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[4161] | 142 | zhemis(ji,jj) = 1 ! Northern hemisphere |
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| 143 | ELSE |
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| 144 | zhemis(ji,jj) = 2 ! Southern hemisphere |
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| 145 | ENDIF |
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| 146 | END DO |
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| 147 | END DO |
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[825] | 148 | |
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[4161] | 149 | !-------------------------------------------------------------------- |
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| 150 | ! 3) Initialization of sea ice state variables |
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| 151 | !-------------------------------------------------------------------- |
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[825] | 152 | |
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[4161] | 153 | !----------------------------- |
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| 154 | ! 3.1) Hemisphere-dependent arrays |
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| 155 | !----------------------------- |
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[4688] | 156 | ! assign initial thickness, concentration, snow depth and salinity to an hemisphere-dependent array |
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[5123] | 157 | zht_i_ini(1) = rn_hti_ini_n ; zht_i_ini(2) = rn_hti_ini_s ! ice thickness |
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| 158 | zht_s_ini(1) = rn_hts_ini_n ; zht_s_ini(2) = rn_hts_ini_s ! snow depth |
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| 159 | zat_i_ini(1) = rn_ati_ini_n ; zat_i_ini(2) = rn_ati_ini_s ! ice concentration |
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| 160 | zsm_i_ini(1) = rn_smi_ini_n ; zsm_i_ini(2) = rn_smi_ini_s ! bulk ice salinity |
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| 161 | ztm_i_ini(1) = rn_tmi_ini_n ; ztm_i_ini(2) = rn_tmi_ini_s ! temperature (ice and snow) |
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[825] | 162 | |
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[4688] | 163 | zvt_i_ini(:) = zht_i_ini(:) * zat_i_ini(:) ! ice volume |
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| 164 | |
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[4161] | 165 | !--------------------------------------------------------------------- |
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| 166 | ! 3.2) Distribute ice concentration and thickness into the categories |
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| 167 | !--------------------------------------------------------------------- |
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| 168 | ! a gaussian distribution for ice concentration is used |
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| 169 | ! then we check whether the distribution fullfills |
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| 170 | ! volume and area conservation, positivity and ice categories bounds |
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| 171 | DO i_hemis = 1, 2 |
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[825] | 172 | |
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[4161] | 173 | ztest_1 = 0 ; ztest_2 = 0 ; ztest_3 = 0 ; ztest_4 = 0 |
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[825] | 174 | |
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[4161] | 175 | ! note for the great nemo engineers: |
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| 176 | ! only very few of the WRITE statements are necessary for the reference version |
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| 177 | ! they were one day useful, but now i personally doubt of their |
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| 178 | ! potential for bringing anything useful |
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[825] | 179 | |
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[4161] | 180 | DO i_fill = jpl, 1, -1 |
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| 181 | IF ( ( ztest_1 + ztest_2 + ztest_3 + ztest_4 ) .NE. 4 ) THEN |
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| 182 | !---------------------------- |
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| 183 | ! fill the i_fill categories |
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| 184 | !---------------------------- |
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| 185 | ! *** 1 category to fill |
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| 186 | IF ( i_fill .EQ. 1 ) THEN |
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[4688] | 187 | zh_i_ini(1,i_hemis) = zht_i_ini(i_hemis) |
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| 188 | za_i_ini(1,i_hemis) = zat_i_ini(i_hemis) |
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| 189 | zh_i_ini(2:jpl,i_hemis) = 0._wp |
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| 190 | za_i_ini(2:jpl,i_hemis) = 0._wp |
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[4161] | 191 | ELSE |
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[825] | 192 | |
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[4688] | 193 | ! *** >1 categores to fill |
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| 194 | !--- Ice thicknesses in the i_fill - 1 first categories |
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[4161] | 195 | DO jl = 1, i_fill - 1 |
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[5123] | 196 | zh_i_ini(jl,i_hemis) = hi_mean(jl) |
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[4161] | 197 | END DO |
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[4688] | 198 | |
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| 199 | !--- jl0: most likely index where cc will be maximum |
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[825] | 200 | DO jl = 1, jpl |
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[5123] | 201 | IF ( ( zht_i_ini(i_hemis) > hi_max(jl-1) ) .AND. & |
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| 202 | & ( zht_i_ini(i_hemis) <= hi_max(jl) ) ) THEN |
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[4161] | 203 | jl0 = jl |
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| 204 | ENDIF |
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| 205 | END DO |
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| 206 | jl0 = MIN(jl0, i_fill) |
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[4688] | 207 | |
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| 208 | !--- Concentrations |
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[4161] | 209 | za_i_ini(jl0,i_hemis) = zat_i_ini(i_hemis) / SQRT(REAL(jpl)) |
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| 210 | DO jl = 1, i_fill - 1 |
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| 211 | IF ( jl .NE. jl0 ) THEN |
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[4688] | 212 | zsigma = 0.5 * zht_i_ini(i_hemis) |
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| 213 | zarg = ( zh_i_ini(jl,i_hemis) - zht_i_ini(i_hemis) ) / zsigma |
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[4161] | 214 | za_i_ini(jl,i_hemis) = za_i_ini(jl0,i_hemis) * EXP(-zarg**2) |
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| 215 | ENDIF |
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[4688] | 216 | END DO |
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| 217 | |
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[4161] | 218 | zA = 0. ! sum of the areas in the jpl categories |
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| 219 | DO jl = 1, i_fill - 1 |
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| 220 | zA = zA + za_i_ini(jl,i_hemis) |
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| 221 | END DO |
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| 222 | za_i_ini(i_fill,i_hemis) = zat_i_ini(i_hemis) - zA ! ice conc in the last category |
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| 223 | IF ( i_fill .LT. jpl ) za_i_ini(i_fill+1:jpl, i_hemis) = 0._wp |
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| 224 | |
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[4688] | 225 | !--- Ice thickness in the last category |
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[4161] | 226 | zV = 0. ! sum of the volumes of the N-1 categories |
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| 227 | DO jl = 1, i_fill - 1 |
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[4688] | 228 | zV = zV + za_i_ini(jl,i_hemis)*zh_i_ini(jl,i_hemis) |
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[4161] | 229 | END DO |
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[4688] | 230 | zh_i_ini(i_fill,i_hemis) = ( zvt_i_ini(i_hemis) - zV ) / za_i_ini(i_fill,i_hemis) |
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| 231 | IF ( i_fill .LT. jpl ) zh_i_ini(i_fill+1:jpl, i_hemis) = 0._wp |
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[825] | 232 | |
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[4688] | 233 | !--- volumes |
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| 234 | zv_i_ini(:,i_hemis) = za_i_ini(:,i_hemis) * zh_i_ini(:,i_hemis) |
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[4161] | 235 | IF ( i_fill .LT. jpl ) zv_i_ini(i_fill+1:jpl, i_hemis) = 0._wp |
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[921] | 236 | |
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[4161] | 237 | ENDIF ! i_fill |
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[825] | 238 | |
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[4161] | 239 | !--------------------- |
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| 240 | ! Compatibility tests |
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| 241 | !--------------------- |
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| 242 | ! Test 1: area conservation |
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| 243 | zA_cons = SUM(za_i_ini(:,i_hemis)) ; zconv = ABS(zat_i_ini(i_hemis) - zA_cons ) |
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| 244 | IF ( zconv .LT. 1.0e-6 ) THEN |
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| 245 | ztest_1 = 1 |
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| 246 | ELSE |
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| 247 | ! this write is useful |
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| 248 | IF(lwp) WRITE(numout,*) ' * TEST1 AREA NOT CONSERVED *** zA_cons = ', zA_cons,' zat_i_ini = ',zat_i_ini(i_hemis) |
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| 249 | ztest_1 = 0 |
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| 250 | ENDIF |
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[825] | 251 | |
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[4161] | 252 | ! Test 2: volume conservation |
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| 253 | zV_cons = SUM(zv_i_ini(:,i_hemis)) |
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| 254 | zconv = ABS(zvt_i_ini(i_hemis) - zV_cons) |
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[825] | 255 | |
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[4161] | 256 | IF ( zconv .LT. 1.0e-6 ) THEN |
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| 257 | ztest_2 = 1 |
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| 258 | ELSE |
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| 259 | ! this write is useful |
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| 260 | IF(lwp) WRITE(numout,*) ' * TEST2 VOLUME NOT CONSERVED *** zV_cons = ', zV_cons, & |
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| 261 | ' zvt_i_ini = ', zvt_i_ini(i_hemis) |
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| 262 | ztest_2 = 0 |
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| 263 | ENDIF |
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[825] | 264 | |
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[4161] | 265 | ! Test 3: thickness of the last category is in-bounds ? |
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[5123] | 266 | IF ( zh_i_ini(i_fill, i_hemis) > hi_max(i_fill-1) ) THEN |
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[4161] | 267 | ztest_3 = 1 |
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| 268 | ELSE |
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| 269 | ! this write is useful |
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[4688] | 270 | IF(lwp) WRITE(numout,*) ' * TEST 3 THICKNESS OF THE LAST CATEGORY OUT OF BOUNDS *** zh_i_ini(i_fill,i_hemis) = ', & |
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| 271 | zh_i_ini(i_fill,i_hemis), ' hi_max(jpl-1) = ', hi_max(i_fill-1) |
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[4161] | 272 | ztest_3 = 0 |
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| 273 | ENDIF |
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[825] | 274 | |
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[4161] | 275 | ! Test 4: positivity of ice concentrations |
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| 276 | ztest_4 = 1 |
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| 277 | DO jl = 1, jpl |
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| 278 | IF ( za_i_ini(jl,i_hemis) .LT. 0._wp ) THEN |
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| 279 | ! this write is useful |
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| 280 | IF(lwp) WRITE(numout,*) ' * TEST 4 POSITIVITY NOT OK FOR CAT ', jl, ' WITH A = ', za_i_ini(jl,i_hemis) |
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| 281 | ztest_4 = 0 |
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[825] | 282 | ENDIF |
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[4161] | 283 | END DO |
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[825] | 284 | |
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[4161] | 285 | ENDIF ! ztest_1 + ztest_2 + ztest_3 + ztest_4 |
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| 286 | |
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| 287 | ztests = ztest_1 + ztest_2 + ztest_3 + ztest_4 |
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[825] | 288 | |
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[4161] | 289 | END DO ! i_fill |
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[825] | 290 | |
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[4161] | 291 | IF(lwp) THEN |
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[4908] | 292 | WRITE(numout,*) ' ztests : ', ztests |
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[4161] | 293 | IF ( ztests .NE. 4 ) THEN |
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| 294 | WRITE(numout,*) |
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[4908] | 295 | WRITE(numout,*) ' !!!! ALERT !!! ' |
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| 296 | WRITE(numout,*) ' !!!! Something is wrong in the LIM3 initialization procedure ' |
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[4161] | 297 | WRITE(numout,*) |
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[4908] | 298 | WRITE(numout,*) ' *** ztests is not equal to 4 ' |
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| 299 | WRITE(numout,*) ' *** ztest_i (i=1,4) = ', ztest_1, ztest_2, ztest_3, ztest_4 |
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| 300 | WRITE(numout,*) ' zat_i_ini : ', zat_i_ini(i_hemis) |
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| 301 | WRITE(numout,*) ' zht_i_ini : ', zht_i_ini(i_hemis) |
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[4161] | 302 | ENDIF ! ztests .NE. 4 |
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| 303 | ENDIF |
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| 304 | |
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| 305 | END DO ! i_hemis |
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[825] | 306 | |
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[4161] | 307 | !--------------------------------------------------------------------- |
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| 308 | ! 3.3) Space-dependent arrays for ice state variables |
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| 309 | !--------------------------------------------------------------------- |
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[825] | 310 | |
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[4333] | 311 | ! Ice concentration, thickness and volume, ice salinity, ice age, surface temperature |
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[4161] | 312 | DO jl = 1, jpl ! loop over categories |
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| 313 | DO jj = 1, jpj |
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| 314 | DO ji = 1, jpi |
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[4688] | 315 | a_i(ji,jj,jl) = zswitch(ji,jj) * za_i_ini (jl,zhemis(ji,jj)) ! concentration |
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| 316 | ht_i(ji,jj,jl) = zswitch(ji,jj) * zh_i_ini(jl,zhemis(ji,jj)) ! ice thickness |
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| 317 | ht_s(ji,jj,jl) = ht_i(ji,jj,jl) * ( zht_s_ini( zhemis(ji,jj) ) / zht_i_ini( zhemis(ji,jj) ) ) ! snow depth |
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[5123] | 318 | sm_i(ji,jj,jl) = zswitch(ji,jj) * zsm_i_ini(zhemis(ji,jj)) !+ ( 1._wp - zswitch(ji,jj) ) * rn_simin ! salinity |
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[4688] | 319 | o_i(ji,jj,jl) = zswitch(ji,jj) * 1._wp + ( 1._wp - zswitch(ji,jj) ) ! age |
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[5123] | 320 | t_su(ji,jj,jl) = zswitch(ji,jj) * ztm_i_ini(zhemis(ji,jj)) + ( 1._wp - zswitch(ji,jj) ) * rt0 ! surf temp |
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[4333] | 321 | |
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| 322 | ! This case below should not be used if (ht_s/ht_i) is ok in namelist |
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| 323 | ! In case snow load is in excess that would lead to transformation from snow to ice |
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| 324 | ! Then, transfer the snow excess into the ice (different from limthd_dh) |
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| 325 | zdh = MAX( 0._wp, ( rhosn * ht_s(ji,jj,jl) + ( rhoic - rau0 ) * ht_i(ji,jj,jl) ) * r1_rau0 ) |
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| 326 | ! recompute ht_i, ht_s avoiding out of bounds values |
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| 327 | ht_i(ji,jj,jl) = MIN( hi_max(jl), ht_i(ji,jj,jl) + zdh ) |
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[5123] | 328 | ht_s(ji,jj,jl) = MAX( 0._wp, ht_s(ji,jj,jl) - zdh * rhoic * r1_rhosn ) |
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[4333] | 329 | |
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| 330 | ! ice volume, salt content, age content |
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[4161] | 331 | v_i(ji,jj,jl) = ht_i(ji,jj,jl) * a_i(ji,jj,jl) ! ice volume |
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| 332 | v_s(ji,jj,jl) = ht_s(ji,jj,jl) * a_i(ji,jj,jl) ! snow volume |
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| 333 | smv_i(ji,jj,jl) = MIN( sm_i(ji,jj,jl) , sss_m(ji,jj) ) * v_i(ji,jj,jl) ! salt content |
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| 334 | oa_i(ji,jj,jl) = o_i(ji,jj,jl) * a_i(ji,jj,jl) ! age content |
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| 335 | END DO ! ji |
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| 336 | END DO ! jj |
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| 337 | END DO ! jl |
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[825] | 338 | |
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[4161] | 339 | ! Snow temperature and heat content |
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| 340 | DO jk = 1, nlay_s |
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| 341 | DO jl = 1, jpl ! loop over categories |
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| 342 | DO jj = 1, jpj |
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| 343 | DO ji = 1, jpi |
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[5123] | 344 | t_s(ji,jj,jk,jl) = zswitch(ji,jj) * ztm_i_ini(zhemis(ji,jj)) + ( 1._wp - zswitch(ji,jj) ) * rt0 |
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[4161] | 345 | ! Snow energy of melting |
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[5123] | 346 | e_s(ji,jj,jk,jl) = zswitch(ji,jj) * rhosn * ( cpic * ( rt0 - t_s(ji,jj,jk,jl) ) + lfus ) |
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| 347 | |
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| 348 | ! Mutliply by volume, and divide by number of layers to get heat content in J/m2 |
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| 349 | e_s(ji,jj,jk,jl) = e_s(ji,jj,jk,jl) * v_s(ji,jj,jl) * r1_nlay_s |
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[4161] | 350 | END DO ! ji |
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| 351 | END DO ! jj |
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| 352 | END DO ! jl |
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| 353 | END DO ! jk |
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[825] | 354 | |
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[4161] | 355 | ! Ice salinity, temperature and heat content |
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| 356 | DO jk = 1, nlay_i |
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| 357 | DO jl = 1, jpl ! loop over categories |
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| 358 | DO jj = 1, jpj |
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| 359 | DO ji = 1, jpi |
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[5123] | 360 | t_i(ji,jj,jk,jl) = zswitch(ji,jj) * ztm_i_ini(zhemis(ji,jj)) + ( 1._wp - zswitch(ji,jj) ) * rt0 |
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| 361 | s_i(ji,jj,jk,jl) = zswitch(ji,jj) * zsm_i_ini(zhemis(ji,jj)) !+ ( 1._wp - zswitch(ji,jj) ) * rn_simin |
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| 362 | ztmelts = - tmut * s_i(ji,jj,jk,jl) + rt0 !Melting temperature in K |
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[825] | 363 | |
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[4161] | 364 | ! heat content per unit volume |
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[4688] | 365 | e_i(ji,jj,jk,jl) = zswitch(ji,jj) * rhoic * ( cpic * ( ztmelts - t_i(ji,jj,jk,jl) ) & |
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[5123] | 366 | + lfus * ( 1._wp - (ztmelts-rt0) / MIN((t_i(ji,jj,jk,jl)-rt0),-epsi20) ) & |
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| 367 | - rcp * ( ztmelts - rt0 ) ) |
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[825] | 368 | |
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[5123] | 369 | ! Mutliply by ice volume, and divide by number of layers to get heat content in J/m2 |
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| 370 | e_i(ji,jj,jk,jl) = e_i(ji,jj,jk,jl) * v_i(ji,jj,jl) * r1_nlay_i |
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[4161] | 371 | END DO ! ji |
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| 372 | END DO ! jj |
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| 373 | END DO ! jl |
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| 374 | END DO ! jk |
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[825] | 375 | |
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[4688] | 376 | tn_ice (:,:,:) = t_su (:,:,:) |
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| 377 | |
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| 378 | ELSE |
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[5123] | 379 | ! if ln_iceini=false |
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[4688] | 380 | a_i (:,:,:) = 0._wp |
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| 381 | v_i (:,:,:) = 0._wp |
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| 382 | v_s (:,:,:) = 0._wp |
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| 383 | smv_i(:,:,:) = 0._wp |
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| 384 | oa_i (:,:,:) = 0._wp |
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| 385 | ht_i (:,:,:) = 0._wp |
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| 386 | ht_s (:,:,:) = 0._wp |
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| 387 | sm_i (:,:,:) = 0._wp |
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| 388 | o_i (:,:,:) = 0._wp |
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| 389 | |
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| 390 | e_i(:,:,:,:) = 0._wp |
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| 391 | e_s(:,:,:,:) = 0._wp |
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| 392 | |
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| 393 | DO jl = 1, jpl |
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| 394 | DO jk = 1, nlay_i |
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[5123] | 395 | t_i(:,:,jk,jl) = rt0 * tmask(:,:,1) |
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[4688] | 396 | END DO |
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| 397 | DO jk = 1, nlay_s |
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[5123] | 398 | t_s(:,:,jk,jl) = rt0 * tmask(:,:,1) |
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[4688] | 399 | END DO |
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| 400 | END DO |
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| 401 | |
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[5123] | 402 | ENDIF ! ln_iceini |
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[4688] | 403 | |
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| 404 | at_i (:,:) = 0.0_wp |
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| 405 | DO jl = 1, jpl |
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| 406 | at_i (:,:) = at_i (:,:) + a_i (:,:,jl) |
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| 407 | END DO |
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| 408 | ! |
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[825] | 409 | !-------------------------------------------------------------------- |
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[4161] | 410 | ! 4) Global ice variables for output diagnostics | |
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[825] | 411 | !-------------------------------------------------------------------- |
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[4161] | 412 | u_ice (:,:) = 0._wp |
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| 413 | v_ice (:,:) = 0._wp |
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| 414 | stress1_i(:,:) = 0._wp |
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| 415 | stress2_i(:,:) = 0._wp |
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| 416 | stress12_i(:,:) = 0._wp |
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[825] | 417 | |
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| 418 | !-------------------------------------------------------------------- |
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[4161] | 419 | ! 5) Moments for advection |
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[825] | 420 | !-------------------------------------------------------------------- |
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| 421 | |
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[4161] | 422 | sxopw (:,:) = 0._wp |
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| 423 | syopw (:,:) = 0._wp |
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| 424 | sxxopw(:,:) = 0._wp |
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| 425 | syyopw(:,:) = 0._wp |
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| 426 | sxyopw(:,:) = 0._wp |
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[3610] | 427 | |
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[4161] | 428 | sxice (:,:,:) = 0._wp ; sxsn (:,:,:) = 0._wp ; sxa (:,:,:) = 0._wp |
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| 429 | syice (:,:,:) = 0._wp ; sysn (:,:,:) = 0._wp ; sya (:,:,:) = 0._wp |
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| 430 | sxxice(:,:,:) = 0._wp ; sxxsn(:,:,:) = 0._wp ; sxxa (:,:,:) = 0._wp |
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| 431 | syyice(:,:,:) = 0._wp ; syysn(:,:,:) = 0._wp ; syya (:,:,:) = 0._wp |
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| 432 | sxyice(:,:,:) = 0._wp ; sxysn(:,:,:) = 0._wp ; sxya (:,:,:) = 0._wp |
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[825] | 433 | |
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[4161] | 434 | sxc0 (:,:,:) = 0._wp ; sxe (:,:,:,:)= 0._wp |
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| 435 | syc0 (:,:,:) = 0._wp ; sye (:,:,:,:)= 0._wp |
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| 436 | sxxc0 (:,:,:) = 0._wp ; sxxe (:,:,:,:)= 0._wp |
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| 437 | syyc0 (:,:,:) = 0._wp ; syye (:,:,:,:)= 0._wp |
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| 438 | sxyc0 (:,:,:) = 0._wp ; sxye (:,:,:,:)= 0._wp |
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[825] | 439 | |
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[4161] | 440 | sxsal (:,:,:) = 0._wp |
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| 441 | sysal (:,:,:) = 0._wp |
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| 442 | sxxsal (:,:,:) = 0._wp |
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| 443 | syysal (:,:,:) = 0._wp |
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| 444 | sxysal (:,:,:) = 0._wp |
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[825] | 445 | |
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[4335] | 446 | sxage (:,:,:) = 0._wp |
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| 447 | syage (:,:,:) = 0._wp |
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| 448 | sxxage (:,:,:) = 0._wp |
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| 449 | syyage (:,:,:) = 0._wp |
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| 450 | sxyage (:,:,:) = 0._wp |
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| 451 | |
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[825] | 452 | |
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[4688] | 453 | CALL wrk_dealloc( jpi, jpj, zswitch ) |
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[4161] | 454 | CALL wrk_dealloc( jpi, jpj, zhemis ) |
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[4688] | 455 | CALL wrk_dealloc( jpl, 2, zh_i_ini, za_i_ini, zv_i_ini ) |
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| 456 | CALL wrk_dealloc( 2, zht_i_ini, zat_i_ini, zvt_i_ini, zht_s_ini, zsm_i_ini, ztm_i_ini ) |
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[4161] | 457 | |
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[825] | 458 | END SUBROUTINE lim_istate |
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| 459 | |
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| 460 | SUBROUTINE lim_istate_init |
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| 461 | !!------------------------------------------------------------------- |
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| 462 | !! *** ROUTINE lim_istate_init *** |
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| 463 | !! |
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| 464 | !! ** Purpose : Definition of initial state of the ice |
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| 465 | !! |
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[4161] | 466 | !! ** Method : Read the namiceini namelist and check the parameter |
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| 467 | !! values called at the first timestep (nit000) |
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[825] | 468 | !! |
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[4161] | 469 | !! ** input : |
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| 470 | !! Namelist namiceini |
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| 471 | !! |
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| 472 | !! history : |
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| 473 | !! 8.5 ! 03-08 (C. Ethe) original code |
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| 474 | !! 8.5 ! 07-11 (M. Vancoppenolle) rewritten initialization |
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[825] | 475 | !!----------------------------------------------------------------------------- |
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[5123] | 476 | NAMELIST/namiceini/ ln_iceini, rn_thres_sst, rn_hts_ini_n, rn_hts_ini_s, rn_hti_ini_n, rn_hti_ini_s, & |
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| 477 | & rn_ati_ini_n, rn_ati_ini_s, rn_smi_ini_n, rn_smi_ini_s, rn_tmi_ini_n, rn_tmi_ini_s |
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[4147] | 478 | INTEGER :: ios ! Local integer output status for namelist read |
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[825] | 479 | !!----------------------------------------------------------------------------- |
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[2528] | 480 | ! |
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[4147] | 481 | REWIND( numnam_ice_ref ) ! Namelist namiceini in reference namelist : Ice initial state |
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| 482 | READ ( numnam_ice_ref, namiceini, IOSTAT = ios, ERR = 901) |
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| 483 | 901 IF( ios /= 0 ) CALL ctl_nam ( ios , 'namiceini in reference namelist', lwp ) |
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| 484 | |
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| 485 | REWIND( numnam_ice_cfg ) ! Namelist namiceini in configuration namelist : Ice initial state |
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| 486 | READ ( numnam_ice_cfg, namiceini, IOSTAT = ios, ERR = 902 ) |
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| 487 | 902 IF( ios /= 0 ) CALL ctl_nam ( ios , 'namiceini in configuration namelist', lwp ) |
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[4624] | 488 | IF(lwm) WRITE ( numoni, namiceini ) |
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[4161] | 489 | |
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| 490 | ! Define the initial parameters |
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| 491 | ! ------------------------- |
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| 492 | |
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| 493 | IF(lwp) THEN |
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[825] | 494 | WRITE(numout,*) |
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| 495 | WRITE(numout,*) 'lim_istate_init : ice parameters inititialisation ' |
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| 496 | WRITE(numout,*) '~~~~~~~~~~~~~~~' |
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[5123] | 497 | WRITE(numout,*) ' initialization with ice (T) or not (F) ln_iceini = ', ln_iceini |
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| 498 | WRITE(numout,*) ' threshold water temp. for initial sea-ice rn_thres_sst = ', rn_thres_sst |
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| 499 | WRITE(numout,*) ' initial snow thickness in the north rn_hts_ini_n = ', rn_hts_ini_n |
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| 500 | WRITE(numout,*) ' initial snow thickness in the south rn_hts_ini_s = ', rn_hts_ini_s |
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| 501 | WRITE(numout,*) ' initial ice thickness in the north rn_hti_ini_n = ', rn_hti_ini_n |
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| 502 | WRITE(numout,*) ' initial ice thickness in the south rn_hti_ini_s = ', rn_hti_ini_s |
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| 503 | WRITE(numout,*) ' initial ice concentr. in the north rn_ati_ini_n = ', rn_ati_ini_n |
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| 504 | WRITE(numout,*) ' initial ice concentr. in the north rn_ati_ini_s = ', rn_ati_ini_s |
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| 505 | WRITE(numout,*) ' initial ice salinity in the north rn_smi_ini_n = ', rn_smi_ini_n |
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| 506 | WRITE(numout,*) ' initial ice salinity in the south rn_smi_ini_s = ', rn_smi_ini_s |
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| 507 | WRITE(numout,*) ' initial ice/snw temp in the north rn_tmi_ini_n = ', rn_tmi_ini_n |
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| 508 | WRITE(numout,*) ' initial ice/snw temp in the south rn_tmi_ini_s = ', rn_tmi_ini_s |
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[825] | 509 | ENDIF |
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[4161] | 510 | |
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[825] | 511 | END SUBROUTINE lim_istate_init |
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| 512 | |
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| 513 | #else |
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| 514 | !!---------------------------------------------------------------------- |
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| 515 | !! Default option : Empty module NO LIM sea-ice model |
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| 516 | !!---------------------------------------------------------------------- |
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| 517 | CONTAINS |
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| 518 | SUBROUTINE lim_istate ! Empty routine |
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| 519 | END SUBROUTINE lim_istate |
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| 520 | #endif |
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| 521 | |
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| 522 | !!====================================================================== |
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| 523 | END MODULE limistate |
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