[4015] | 1 | MODULE crsini |
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| 2 | !!====================================================================== |
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| 3 | !! *** MODULE crsini *** |
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| 4 | !! Manage the grid coarsening module initialization |
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| 5 | !!====================================================================== |
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| 6 | !! History 2012-05 (J. Simeon, G. Madec, C. Ethe, C. Calone) Original code |
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| 7 | !!---------------------------------------------------------------------- |
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| 8 | |
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| 9 | USE timing ! Timing |
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| 10 | USE par_oce ! For parameter jpi,jpj,jphgr_msh |
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| 11 | USE dom_oce ! For parameters in par_oce (jperio, lk_vvl) |
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| 12 | USE crs ! Coarse grid domain |
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| 13 | USE phycst, ONLY: omega, rad ! physical constants |
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| 14 | USE wrk_nemo |
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| 15 | USE in_out_manager |
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| 16 | USE par_kind, ONLY: wp |
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| 17 | USE iom |
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| 18 | USE crsdom |
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| 19 | USE crsdomwri |
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| 20 | USE crslbclnk |
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| 21 | USE lib_mpp |
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[5601] | 22 | USE ldftra_crs |
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[6772] | 23 | USE ieee_arithmetic |
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[4015] | 24 | |
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| 25 | IMPLICIT NONE |
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| 26 | PRIVATE |
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| 27 | |
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| 28 | PUBLIC crs_init |
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| 29 | |
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| 30 | !! * Substitutions |
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| 31 | # include "domzgr_substitute.h90" |
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| 32 | |
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| 33 | CONTAINS |
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| 34 | |
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| 35 | SUBROUTINE crs_init |
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| 36 | !!------------------------------------------------------------------- |
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| 37 | !! *** SUBROUTINE crs_init |
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| 38 | !! ** Purpose : Initialization of the grid coarsening module |
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| 39 | !! 1. Read namelist |
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| 40 | !! X2. MOVE TO crs_dom.F90 Set the domain definitions for coarse grid |
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| 41 | !! a. Define the coarse grid starting/ending indices on parent grid |
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| 42 | !! Here is where the T-pivot or F-pivot grids are discerned |
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| 43 | !! b. TODO. Include option for north-centric or equator-centric binning. |
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| 44 | !! (centered only for odd reduction factors; even reduction bins bias equator to the south) |
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| 45 | !! 3. Mask and mesh creation. => calls to crsfun |
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| 46 | !! a. Use crsfun_mask to generate tmask,umask, vmask, fmask. |
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| 47 | !! b. Use crsfun_coordinates to get coordinates |
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| 48 | !! c. Use crsfun_UV to get horizontal scale factors |
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| 49 | !! d. Use crsfun_TW to get initial vertical scale factors |
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| 50 | !! 4. Volumes and weights jes.... TODO. Updates for vvl? Where to do this? crsstp.F90? |
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| 51 | !! a. Calculate initial coarse grid box volumes: pvol_T, pvol_W |
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| 52 | !! b. Calculate initial coarse grid surface-averaging weights |
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| 53 | !! c. Calculate initial coarse grid volume-averaging weights |
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| 54 | !! |
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| 55 | !! X5. MOVE TO crs_dom_wri.F90 Using iom_rstput output the initial meshmask. |
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| 56 | !! ?. Another set of "masks" to generate |
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| 57 | !! are the u- and v- surface areas for U- and V- area-weighted means. |
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| 58 | !! Need to put this somewhere in section 3? |
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| 59 | !! jes. What do to about the vvl? GM. could separate the weighting (denominator), so |
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| 60 | !! output C*dA or C*dV as summation not mran, then do mean (division) at moment of output. |
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| 61 | !! As is, crsfun takes into account vvl. |
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| 62 | !! Talked about pre-setting the surface array to avoid IF/ENDIFS and division. |
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| 63 | !! But have then to make that preset array here and elsewhere. |
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| 64 | !! that is called every timestep... |
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| 65 | !! |
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| 66 | !! - Read in pertinent data ? |
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| 67 | !!------------------------------------------------------------------- |
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| 68 | !! Local variables |
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| 69 | INTEGER :: ji,jj,jk ! dummy indices |
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| 70 | INTEGER :: ierr ! allocation error status |
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[4154] | 71 | INTEGER :: ios ! Local integer output status for namelist read |
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[5105] | 72 | REAL(wp) :: zmin,zmax |
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[4015] | 73 | REAL(wp), DIMENSION(:,:,:), POINTER :: zfse3t, zfse3u, zfse3v, zfse3w |
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| 74 | |
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[5105] | 75 | NAMELIST/namcrs/ nn_factx, nn_facty, nn_binref, nn_msh_crs, nn_crs_kz, ln_crs_wn, ln_crs_top |
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[4015] | 76 | !!---------------------------------------------------------------------- |
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| 77 | ! |
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| 78 | IF( nn_timing == 1 ) CALL timing_start('crs_init') |
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| 79 | ! |
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| 80 | IF(lwp) THEN |
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| 81 | WRITE(numout,*) |
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| 82 | WRITE(numout,*) 'crs_init : Initializing the grid coarsening module ' |
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| 83 | ENDIF |
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| 84 | |
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| 85 | !--------------------------------------------------------- |
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| 86 | ! 1. Read Namelist file |
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| 87 | !--------------------------------------------------------- |
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| 88 | ! |
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[4154] | 89 | |
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| 90 | REWIND( numnam_ref ) ! Namelist namrun in reference namelist : Parameters of the run |
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| 91 | READ ( numnam_ref, namcrs, IOSTAT = ios, ERR = 901) |
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| 92 | 901 IF( ios /= 0 ) CALL ctl_nam ( ios , 'namcrs in reference namelist', lwp ) |
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| 93 | |
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| 94 | REWIND( numnam_cfg ) ! Namelist namrun in configuration namelist : Parameters of the run |
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| 95 | READ ( numnam_cfg, namcrs, IOSTAT = ios, ERR = 902 ) |
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| 96 | 902 IF( ios /= 0 ) CALL ctl_nam ( ios , 'namcrs in configuration namelist', lwp ) |
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[4624] | 97 | IF(lwm) WRITE ( numond, namcrs ) |
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[4154] | 98 | |
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[4015] | 99 | IF(lwp) THEN |
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| 100 | WRITE(numout,*) |
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| 101 | WRITE(numout,*) 'crs_init: Namelist namcrs ' |
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| 102 | WRITE(numout,*) ' coarsening factor in i-direction nn_factx = ', nn_factx |
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| 103 | WRITE(numout,*) ' coarsening factor in j-direction nn_facty = ', nn_facty |
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| 104 | WRITE(numout,*) ' bin centering preference nn_binref = ', nn_binref |
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| 105 | WRITE(numout,*) ' create (=1) a mesh file or not (=0) nn_msh_crs = ', nn_msh_crs |
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| 106 | WRITE(numout,*) ' type of Kz coarsening (0,1,2) nn_crs_kz = ', nn_crs_kz |
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| 107 | WRITE(numout,*) ' wn coarsened or computed using hdivn ln_crs_wn = ', ln_crs_wn |
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[6797] | 108 | |
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| 109 | SELECT CASE ( nn_crs_kz ) |
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| 110 | CASE ( 0 ) ; WRITE(numout,*) ' coarsene KZ with MEAN(KZ)' |
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| 111 | CASE ( 1 ) ; WRITE(numout,*) ' coarsene KZ with MIN(KZ)' |
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| 112 | CASE ( 2 ) ; WRITE(numout,*) ' coarsene KZ with MAX(KZ)' |
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| 113 | CASE ( 3 ) ; WRITE(numout,*) ' coarsene KZ with MEANLOG(KZ)' |
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| 114 | CASE ( 4 ) ; WRITE(numout,*) ' coarsene KZ with MEDIANE(KZ)' |
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| 115 | CASE ( 5 ) ; WRITE(numout,*) ' coarsene KZ with TKE coarsening' |
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| 116 | END SELECT |
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[4015] | 117 | ENDIF |
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| 118 | |
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| 119 | rfactx_r = 1. / nn_factx |
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| 120 | rfacty_r = 1. / nn_facty |
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| 121 | |
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[6772] | 122 | |
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[4015] | 123 | !--------------------------------------------------------- |
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| 124 | ! 2. Define Global Dimensions of the coarsened grid |
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| 125 | !--------------------------------------------------------- |
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| 126 | CALL crs_dom_def |
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| 127 | |
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| 128 | !--------------------------------------------------------- |
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| 129 | ! 3. Mask and Mesh |
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| 130 | !--------------------------------------------------------- |
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| 131 | |
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| 132 | ! Set up the masks and meshes |
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| 133 | |
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| 134 | ! 3.a. Get the masks |
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| 135 | |
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| 136 | CALL crs_dom_msk |
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| 137 | |
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| 138 | ! 3.b. Get the coordinates |
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| 139 | ! Odd-numbered reduction factor, center coordinate on T-cell |
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| 140 | ! Even-numbered reduction factor, center coordinate on U-,V- faces or f-corner. |
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| 141 | ! |
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| 142 | CALL crs_dom_coordinates( gphit, glamt, 'T', gphit_crs, glamt_crs ) |
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| 143 | CALL crs_dom_coordinates( gphiu, glamu, 'U', gphiu_crs, glamu_crs ) |
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| 144 | CALL crs_dom_coordinates( gphiv, glamv, 'V', gphiv_crs, glamv_crs ) |
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| 145 | CALL crs_dom_coordinates( gphif, glamf, 'F', gphif_crs, glamf_crs ) |
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| 146 | |
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| 147 | ! 3.c. Get the horizontal mesh |
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| 148 | |
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| 149 | ! 3.c.1 Horizontal scale factors |
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| 150 | |
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| 151 | CALL crs_dom_hgr( e1t, e2t, 'T', e1t_crs, e2t_crs ) |
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| 152 | CALL crs_dom_hgr( e1u, e2u, 'U', e1u_crs, e2u_crs ) |
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| 153 | CALL crs_dom_hgr( e1v, e2v, 'V', e1v_crs, e2v_crs ) |
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| 154 | CALL crs_dom_hgr( e1f, e2f, 'F', e1f_crs, e2f_crs ) |
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| 155 | |
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[5105] | 156 | WHERE(e1t_crs == 0._wp) e1t_crs=r_inf |
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| 157 | WHERE(e1u_crs == 0._wp) e1u_crs=r_inf |
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| 158 | WHERE(e1v_crs == 0._wp) e1v_crs=r_inf |
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| 159 | WHERE(e1f_crs == 0._wp) e1f_crs=r_inf |
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| 160 | WHERE(e2t_crs == 0._wp) e2t_crs=r_inf |
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| 161 | WHERE(e2u_crs == 0._wp) e2u_crs=r_inf |
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| 162 | WHERE(e2v_crs == 0._wp) e2v_crs=r_inf |
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| 163 | WHERE(e2f_crs == 0._wp) e2f_crs=r_inf |
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| 164 | |
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[4015] | 165 | e1e2t_crs(:,:) = e1t_crs(:,:) * e2t_crs(:,:) |
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| 166 | |
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| 167 | |
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| 168 | ! 3.c.2 Coriolis factor |
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| 169 | |
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| 170 | SELECT CASE( jphgr_msh ) ! type of horizontal mesh |
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| 171 | |
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| 172 | CASE ( 0, 1, 4 ) ! mesh on the sphere |
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| 173 | |
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| 174 | ff_crs(:,:) = 2. * omega * SIN( rad * gphif_crs(:,:) ) |
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| 175 | |
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| 176 | CASE DEFAULT |
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| 177 | |
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| 178 | IF(lwp) WRITE(numout,*) 'crsini.F90. crs_init. Only jphgr_msh = 0, 1 or 4 supported' |
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| 179 | |
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| 180 | END SELECT |
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| 181 | |
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| 182 | ! 3.d.1 mbathy ( vertical k-levels of bathymetry ) |
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| 183 | |
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| 184 | CALL crs_dom_bat |
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| 185 | |
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| 186 | ! |
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| 187 | CALL wrk_alloc(jpi, jpj, jpk, zfse3t, zfse3u, zfse3v, zfse3w ) |
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| 188 | ! |
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[6772] | 189 | zfse3t(:,:,:) = e3t_0(:,:,:) !fse3t(:,:,:) |
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| 190 | zfse3u(:,:,:) = e3u_0(:,:,:) !fse3u(:,:,:) |
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| 191 | zfse3v(:,:,:) = e3v_0(:,:,:) !fse3v(:,:,:) |
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| 192 | zfse3w(:,:,:) = e3w_0(:,:,:) !fse3w(:,:,:) |
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[4015] | 193 | |
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| 194 | ! 3.d.2 Surfaces |
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[5105] | 195 | e2e3u_crs(:,:,:)=0._wp |
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| 196 | e2e3u_msk(:,:,:)=0._wp |
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| 197 | e1e3v_crs(:,:,:)=0._wp |
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| 198 | e1e3v_msk(:,:,:)=0._wp |
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[4015] | 199 | CALL crs_dom_sfc( tmask, 'W', e1e2w_crs, e1e2w_msk, p_e1=e1t, p_e2=e2t ) |
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| 200 | CALL crs_dom_sfc( umask, 'U', e2e3u_crs, e2e3u_msk, p_e2=e2u, p_e3=zfse3u ) |
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| 201 | CALL crs_dom_sfc( vmask, 'V', e1e3v_crs, e1e3v_msk, p_e1=e1v, p_e3=zfse3v ) |
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[6772] | 202 | |
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[7207] | 203 | !cbr utile ???????????????????????????????? |
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[5007] | 204 | DO jk=1,jpk |
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| 205 | DO ji=1,jpi_crs |
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| 206 | DO jj=1,jpj_crs |
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| 207 | |
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| 208 | facsurfu(ji,jj,jk) = umask_crs(ji,jj,jk) * e2e3u_msk(ji,jj,jk) |
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[5601] | 209 | IF( e2e3u_crs(ji,jj,jk) .NE. 0._wp ) facsurfu(ji,jj,jk) = facsurfu(ji,jj,jk) / e2e3u_crs(ji,jj,jk) |
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[5007] | 210 | |
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| 211 | facsurfv(ji,jj,jk) = vmask_crs(ji,jj,jk) * e1e3v_msk(ji,jj,jk) |
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| 212 | IF( e1e3v_crs(ji,jj,jk) .NE. 0._wp ) facsurfv(ji,jj,jk) = facsurfv(ji,jj,jk) / e1e3v_crs(ji,jj,jk) |
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| 213 | |
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| 214 | ENDDO |
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| 215 | ENDDO |
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| 216 | ENDDO |
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| 217 | |
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[4015] | 218 | ! 3.d.3 Vertical scale factors |
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| 219 | ! |
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[6772] | 220 | CALL crs_dom_e3( e1t, e2t, zfse3t, p_sfc_3d_crs=e1e2w_crs, cd_type='T', p_mask=tmask, p_e3_crs=e3t_0_crs, p_e3_max_crs=e3t_max_0_crs) |
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| 221 | CALL crs_dom_e3( e1t, e2t, zfse3w, p_sfc_3d_crs=e1e2w_crs, cd_type='W', p_mask=tmask, p_e3_crs=e3w_0_crs, p_e3_max_crs=e3w_max_0_crs) |
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| 222 | CALL crs_dom_e3( e1u, e2u, zfse3u, p_sfc_2d_crs=e2u_crs , cd_type='U', p_mask=umask, p_e3_crs=e3u_0_crs, p_e3_max_crs=e3u_max_0_crs) |
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| 223 | CALL crs_dom_e3( e1v, e2v, zfse3v, p_sfc_2d_crs=e1v_crs , cd_type='V', p_mask=vmask, p_e3_crs=e3v_0_crs, p_e3_max_crs=e3v_max_0_crs) |
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[7207] | 224 | |
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[6772] | 225 | WHERE(e3t_max_0_crs == 0._wp) e3t_max_0_crs=r_inf |
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| 226 | WHERE(e3u_max_0_crs == 0._wp) e3u_max_0_crs=r_inf |
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| 227 | WHERE(e3v_max_0_crs == 0._wp) e3v_max_0_crs=r_inf |
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| 228 | WHERE(e3w_max_0_crs == 0._wp) e3w_max_0_crs=r_inf |
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| 229 | |
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| 230 | #if defined key_vvl |
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| 231 | e3t_max_n_crs=e3t_max_0_crs |
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| 232 | e3u_max_n_crs=e3u_max_0_crs |
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| 233 | e3v_max_n_crs=e3v_max_0_crs |
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| 234 | e3w_max_n_crs=e3w_max_0_crs |
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| 235 | #endif |
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| 236 | |
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| 237 | ht_0_crs(:,:)=0._wp |
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| 238 | DO jk = 1, jpk |
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| 239 | ht_0_crs(:,:)=ht_0_crs(:,:)+e3t_0_crs(:,:,jk)*tmask_crs(:,:,jk) |
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| 240 | ENDDO |
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| 241 | |
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| 242 | #if defined key_vvl |
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| 243 | e3t_0_crs(:,:,:) = e3t_0_crs(:,:,:) * tmask_crs(:,:,:) |
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| 244 | e3u_0_crs(:,:,:) = e3u_0_crs(:,:,:) * umask_crs(:,:,:) |
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| 245 | e3v_0_crs(:,:,:) = e3v_0_crs(:,:,:) * vmask_crs(:,:,:) |
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| 246 | e3w_0_crs(:,:,:) = e3w_0_crs(:,:,:) * tmask_crs(:,:,:) |
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| 247 | #endif |
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| 248 | |
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[4015] | 249 | ! Reset 0 to e3t_0 or e3w_0 |
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| 250 | DO jk = 1, jpk |
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| 251 | DO ji = 1, jpi_crs |
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| 252 | DO jj = 1, jpj_crs |
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[6772] | 253 | IF( e3t_0_crs(ji,jj,jk) == 0._wp ) e3t_0_crs(ji,jj,jk) = e3t_1d(jk) |
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| 254 | IF( e3w_0_crs(ji,jj,jk) == 0._wp ) e3w_0_crs(ji,jj,jk) = e3w_1d(jk) |
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| 255 | IF( e3u_0_crs(ji,jj,jk) == 0._wp ) e3u_0_crs(ji,jj,jk) = e3t_1d(jk) |
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| 256 | IF( e3v_0_crs(ji,jj,jk) == 0._wp ) e3v_0_crs(ji,jj,jk) = e3t_1d(jk) |
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[4015] | 257 | ENDDO |
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| 258 | ENDDO |
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| 259 | ENDDO |
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| 260 | |
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[7207] | 261 | !cbr utile ???????? on le fait ds crsfld, nan ? |
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[6772] | 262 | #if defined key_vvl |
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| 263 | e3t_b_crs(:,:,:) = e3t_0_crs(:,:,:) |
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| 264 | e3u_b_crs(:,:,:) = e3u_0_crs(:,:,:) |
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| 265 | e3v_b_crs(:,:,:) = e3v_0_crs(:,:,:) |
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| 266 | e3w_b_crs(:,:,:) = e3w_0_crs(:,:,:) |
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| 267 | |
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| 268 | e3t_n_crs(:,:,:) = e3t_0_crs(:,:,:) |
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| 269 | e3u_n_crs(:,:,:) = e3u_0_crs(:,:,:) |
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| 270 | e3v_n_crs(:,:,:) = e3v_0_crs(:,:,:) |
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| 271 | e3w_n_crs(:,:,:) = e3w_0_crs(:,:,:) |
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| 272 | |
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| 273 | e3t_a_crs(:,:,:) = e3t_0_crs(:,:,:) |
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| 274 | e3u_a_crs(:,:,:) = e3u_0_crs(:,:,:) |
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| 275 | e3v_a_crs(:,:,:) = e3v_0_crs(:,:,:) |
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| 276 | e3w_a_crs(:,:,:) = e3w_0_crs(:,:,:) |
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| 277 | #endif |
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| 278 | |
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[4015] | 279 | ! 3.d.3 Vertical depth (meters) |
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[5601] | 280 | !cbr: il semblerait que p_e3=... ne soit pas utile ici !!!!!!!!! |
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[6772] | 281 | CALL crs_dom_ope( gdept_0, 'MAX', 'T', tmask, gdept_0_crs, p_e3=zfse3t, psgn=1.0 ) |
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| 282 | CALL crs_dom_ope( gdepw_0, 'MAX', 'W', tmask, gdepw_0_crs, p_e3=zfse3w, psgn=1.0 ) |
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| 283 | #if defined key_vvl |
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| 284 | gdept_n_crs(:,:,:) = gdept_0_crs(:,:,:) |
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| 285 | gdepw_n_crs(:,:,:) = gdepw_0_crs(:,:,:) |
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| 286 | #endif |
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[4015] | 287 | |
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[6772] | 288 | |
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[4015] | 289 | !--------------------------------------------------------- |
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| 290 | ! 4. Coarse grid ocean volume and averaging weights |
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| 291 | !--------------------------------------------------------- |
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| 292 | CALL crs_dom_facvol( tmask, 'T', e1t, e2t, zfse3t, ocean_volume_crs_t, facvol_t ) |
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| 293 | ! |
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| 294 | bt_crs(:,:,:) = ocean_volume_crs_t(:,:,:) * facvol_t(:,:,:) |
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| 295 | ! |
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| 296 | r1_bt_crs(:,:,:) = 0._wp |
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| 297 | WHERE( bt_crs /= 0._wp ) r1_bt_crs(:,:,:) = 1._wp / bt_crs(:,:,:) |
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| 298 | |
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| 299 | CALL crs_dom_facvol( tmask, 'W', e1t, e2t, zfse3w, ocean_volume_crs_w, facvol_w ) |
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[5601] | 300 | |
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| 301 | |
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| 302 | !--------------------------------------------------------- |
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| 303 | ! 5. Coarse grid ocean volume and averaging weights |
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| 304 | !--------------------------------------------------------- |
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| 305 | !CALL dom_grid_crs ! Save the parent grid information & Switch to coarse grid domain |
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| 306 | !CALL ldf_tra_crs_init |
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| 307 | !CALL dom_grid_glo ! Return to parent grid domain |
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| 308 | |
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| 309 | |
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[4015] | 310 | ! |
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| 311 | !--------------------------------------------------------- |
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[5601] | 312 | ! 6. Write out coarse meshmask (see OPA_SRC/DOM/domwri.F90 for ideas later) |
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[4015] | 313 | !--------------------------------------------------------- |
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| 314 | |
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| 315 | IF( nn_msh_crs > 0 ) THEN |
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| 316 | CALL dom_grid_crs ! Save the parent grid information & Switch to coarse grid domain |
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| 317 | CALL crs_dom_wri |
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| 318 | CALL dom_grid_glo ! Return to parent grid domain |
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| 319 | ENDIF |
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[5105] | 320 | |
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| 321 | |
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| 322 | rhop_crs(:,:,:)=0._wp ; rhd_crs(:,:,:)=0._wp ; rb2_crs(:,:,:)=0._wp |
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| 323 | |
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| 324 | |
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[4015] | 325 | !--------------------------------------------------------- |
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| 326 | ! 7. Finish and clean-up |
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| 327 | !--------------------------------------------------------- |
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| 328 | CALL wrk_dealloc(jpi, jpj, jpk, zfse3t, zfse3u, zfse3v, zfse3w ) |
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| 329 | |
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[5601] | 330 | IF( nn_timing == 1 ) CALL timing_stop('crs_init') |
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[4015] | 331 | |
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| 332 | END SUBROUTINE crs_init |
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| 333 | |
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| 334 | !!====================================================================== |
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| 335 | |
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| 336 | END MODULE crsini |
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