[900] | 1 | MODULE diawri_c1d |
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[253] | 2 | !!====================================================================== |
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[900] | 3 | !! *** MODULE diawri_c1d *** |
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[253] | 4 | !! Ocean diagnostics : write ocean output files |
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| 5 | !!===================================================================== |
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[900] | 6 | !! History : 2.0 ! 2004-10 (C. Ethe) 1D Configuration |
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| 7 | !! 3.0 ! 2008-04 (G. Madec) adaptation to SBC |
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| 8 | !!---------------------------------------------------------------------- |
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[899] | 9 | #if defined key_c1d |
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[253] | 10 | !!---------------------------------------------------------------------- |
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[900] | 11 | !! 'key_c1d' 1D Configuration |
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[253] | 12 | !!---------------------------------------------------------------------- |
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[900] | 13 | !! dia_wri_c1d : create the standart NetCDF output files |
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[253] | 14 | !!---------------------------------------------------------------------- |
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| 15 | USE oce ! ocean dynamics and tracers |
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| 16 | USE dom_oce ! ocean space and time domain |
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| 17 | USE zdf_oce ! ocean vertical physics |
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[888] | 18 | USE sbc_oce ! surface boundary condition: ocean |
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| 19 | USE sbc_ice ! surface boundary condition: ice |
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[900] | 20 | USE sbcmod ! surface Boundary Codition |
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| 21 | USE sbcssr ! surface boundary condition: restauring to SSS and or SST |
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[1533] | 22 | USE zdftke_old ! TKE vertical mixing (old scheme) |
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[253] | 23 | USE zdftke ! TKE vertical mixing |
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[255] | 24 | USE zdfkpp ! KPP vertical mixing |
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[253] | 25 | USE sol_oce ! solver variables |
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| 26 | USE phycst ! physical constants |
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| 27 | USE zdfmxl ! mixed layer |
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| 28 | USE dianam ! build name of file (routine) |
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| 29 | USE diawri |
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| 30 | USE zdfddm ! vertical physics: double diffusion |
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| 31 | USE lbclnk ! ocean lateral boundary conditions (or mpp link) |
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| 32 | USE in_out_manager ! I/O manager |
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[900] | 33 | USE ioipsl |
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[253] | 34 | |
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| 35 | IMPLICIT NONE |
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| 36 | PRIVATE |
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| 37 | |
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[900] | 38 | PUBLIC dia_wri_c1d ! routines called by step.F90 |
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[253] | 39 | |
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[900] | 40 | INTEGER :: nid_T, nz_T, nh_T, ndim_T, ndim_hT, ndex(1) ! grid_T file |
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| 41 | INTEGER, DIMENSION(jpi*jpj) :: ndex_hT |
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| 42 | INTEGER, DIMENSION(jpi*jpj*jpk) :: ndex_T |
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| 43 | |
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[253] | 44 | !! * Substitutions |
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| 45 | # include "zdfddm_substitute.h90" |
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| 46 | !!---------------------------------------------------------------------- |
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[900] | 47 | !! NEMO/C1D 3.0 , LOCEAN-IPSL (2008) |
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[888] | 48 | !! $Id$ |
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[900] | 49 | !! Software governed by the CeCILL licence (modipsl/doc/NEMO_CeCILL.txt) |
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[253] | 50 | !!---------------------------------------------------------------------- |
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| 51 | |
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| 52 | CONTAINS |
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| 53 | |
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[900] | 54 | SUBROUTINE dia_wri_c1d( kt, kindic ) |
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[253] | 55 | !!--------------------------------------------------------------------- |
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[900] | 56 | !! *** ROUTINE dia_wri_c1d *** |
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[253] | 57 | !! |
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| 58 | !! ** Purpose : Standard output of opa: dynamics and tracer fields |
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| 59 | !! NETCDF format is used by default |
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| 60 | !! |
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| 61 | !! ** Method : At the beginning of the first time step (nit000), |
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| 62 | !! define all the NETCDF files and fields |
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| 63 | !! At each time step call histdef to compute the mean if ncessary |
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| 64 | !! Each nwrite time step, output the instantaneous or mean fields |
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| 65 | !! IF kindic <0, output of fields before the model interruption. |
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| 66 | !! IF kindic =0, time step loop |
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| 67 | !! IF kindic >0, output of fields before the time step loop |
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| 68 | !!---------------------------------------------------------------------- |
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| 69 | INTEGER, INTENT( in ) :: kt ! ocean time-step index |
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| 70 | INTEGER, INTENT( in ) :: kindic ! |
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[900] | 71 | !! |
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| 72 | LOGICAL :: ll_print = .FALSE. ! =T print and flush numout |
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| 73 | CHARACTER (len=40) :: clhstnam, clop, clmx ! temporary names |
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| 74 | INTEGER :: inum = 11 ! temporary logical unit |
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| 75 | INTEGER :: ji, jj, ik ! dummy loop indices |
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| 76 | INTEGER :: iimi, iima, ipk, it, ijmi, ijma ! temporary integers |
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[1334] | 77 | INTEGER :: itmod ! |
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[900] | 78 | REAL(wp) :: zsto, zout, zmax, zjulian, zdt ! temporary scalars |
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| 79 | REAL(wp), DIMENSION(jpi,jpj) :: zw2d ! temporary workspace |
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[253] | 80 | !!---------------------------------------------------------------------- |
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| 81 | |
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| 82 | ! 0. Initialisation |
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| 83 | ! ----------------- |
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| 84 | |
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| 85 | ! local variable for debugging |
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| 86 | ll_print = .FALSE. |
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| 87 | ll_print = ll_print .AND. lwp |
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| 88 | |
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| 89 | ! Define frequency of output and means |
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| 90 | zdt = rdt |
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| 91 | IF( nacc == 1 ) zdt = rdtmin |
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[1312] | 92 | IF( ln_mskland ) THEN ; clop = "only(x)" ! put 1.e+20 on land (very expensive!!) |
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| 93 | ELSE ; clop = "x" ! no use of the mask value (require less cpu time) |
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| 94 | ENDIF |
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[253] | 95 | #if defined key_diainstant |
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| 96 | zsto = nwrite * zdt |
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[1312] | 97 | clop = "inst("//TRIM(clop)//")" |
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[253] | 98 | #else |
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| 99 | zsto=zdt |
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[1312] | 100 | clop = "ave("//TRIM(clop)//")" |
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[253] | 101 | #endif |
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| 102 | zout = nwrite * zdt |
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| 103 | zmax = ( nitend - nit000 + 1 ) * zdt |
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| 104 | |
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| 105 | ! Define indices of the horizontal output zoom and vertical limit storage |
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| 106 | iimi = 1 ; iima = jpi |
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| 107 | ijmi = 1 ; ijma = jpj |
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| 108 | ipk = jpk |
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| 109 | |
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| 110 | ! define time axis |
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[1334] | 111 | it = kt |
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| 112 | itmod = kt - nit000 + 1 |
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[253] | 113 | |
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| 114 | |
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| 115 | ! 1. Define NETCDF files and fields at beginning of first time step |
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| 116 | ! ----------------------------------------------------------------- |
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| 117 | |
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[900] | 118 | IF(ll_print) WRITE(numout,*) 'dia_wri_c1d kt = ', kt, ' kindic ', kindic |
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[253] | 119 | |
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| 120 | IF( kt == nit000 ) THEN |
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| 121 | |
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| 122 | ! Define the NETCDF files (one per grid) |
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| 123 | |
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| 124 | ! Compute julian date from starting date of the run |
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[1310] | 125 | CALL ymds2ju( nyear, nmonth, nday, rdt, zjulian ) |
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| 126 | zjulian = zjulian - adatrj ! set calendar origin to the beginning of the experiment |
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[253] | 127 | IF(lwp)WRITE(numout,*) |
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| 128 | IF(lwp)WRITE(numout,*) 'Date 0 used :', nit000, ' YEAR ', nyear, & |
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| 129 | & ' MONTH ', nmonth, ' DAY ', nday, 'Julian day : ', zjulian |
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| 130 | IF(lwp)WRITE(numout,*) ' indexes of zoom = ', iimi, iima, ijmi, ijma, & |
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| 131 | ' limit storage in depth = ', ipk |
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| 132 | |
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| 133 | ! WRITE root name in date.file for use by postpro |
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| 134 | CALL dia_nam( clhstnam, nwrite,' ' ) |
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[1581] | 135 | CALL ctl_opn( inum, 'date.file', 'REPLACE', 'FORMATTED', 'SEQUENTIAL', 1, numout, lwp ) |
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[253] | 136 | WRITE(inum,*) clhstnam |
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| 137 | CLOSE(inum) |
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| 138 | |
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| 139 | ! Define the T grid FILE ( nid_T ) |
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| 140 | |
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| 141 | CALL dia_nam( clhstnam, nwrite, 'grid_T' ) |
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| 142 | IF(lwp) WRITE(numout,*) " Name of NETCDF file ", clhstnam ! filename |
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| 143 | CALL histbeg( clhstnam, jpi, glamt, jpj, gphit, & ! Horizontal grid: glamt and gphit |
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| 144 | & iimi, iima-iimi+1, ijmi, ijma-ijmi+1, & |
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[1334] | 145 | & nit000-1, zjulian, zdt, nh_T, nid_T, domain_id=nidom ) |
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[253] | 146 | CALL histvert( nid_T, "deptht", "Vertical T levels", & ! Vertical grid: gdept |
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[1334] | 147 | & "m", ipk, gdept_0, nz_T, "down" ) |
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[253] | 148 | ! ! Index of ocean points |
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| 149 | CALL wheneq( jpi*jpj*ipk, tmask, 1, 1., ndex_T , ndim_T ) ! volume |
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| 150 | CALL wheneq( jpi*jpj , tmask, 1, 1., ndex_hT, ndim_hT ) ! surface |
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| 151 | |
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| 152 | |
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| 153 | ! Declare all the output fields as NETCDF variables |
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| 154 | |
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| 155 | ! !!! nid_T : 3D |
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| 156 | CALL histdef( nid_T, "votemper", "Temperature" , "C" , & ! tn |
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| 157 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 158 | CALL histdef( nid_T, "vosaline", "Salinity" , "PSU" , & ! sn |
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| 159 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 160 | ! !!! nid_T : 2D |
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| 161 | CALL histdef( nid_T, "sosstsst", "Sea Surface temperature" , "C" , & ! sst |
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| 162 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 163 | CALL histdef( nid_T, "sosaline", "Sea Surface Salinity" , "PSU" , & ! sss |
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| 164 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 165 | CALL histdef( nid_T, "sowaflup", "Net Upward Water Flux" , "Kg/m2/s", & ! emp |
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| 166 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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[900] | 167 | !! CALL histdef( nid_T, "sorunoff", "Runoffs" , "Kg/m2/s", & ! runoffs |
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| 168 | !! & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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[253] | 169 | CALL histdef( nid_T, "sowaflcd", "concentration/dilution water flux" , "kg/m2/s", & ! emps |
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| 170 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 171 | CALL histdef( nid_T, "sosalflx", "Surface Salt Flux" , "Kg/m2/s", & ! emps * sn |
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| 172 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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[888] | 173 | CALL histdef( nid_T, "sohefldo", "Net Downward Heat Flux" , "W/m2" , & ! qsr + qns |
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[253] | 174 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 175 | CALL histdef( nid_T, "soshfldo", "Shortwave Radiation" , "W/m2" , & ! qsr |
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| 176 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 177 | CALL histdef( nid_T, "somxl010", "Mixed Layer Depth 0.01" , "m" , & ! hmlp |
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| 178 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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[255] | 179 | #if defined key_zdfkpp |
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| 180 | CALL histdef( nid_T, "sokppekd", "Ekman depth " , "m" , & ! sokppekd |
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| 181 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 182 | CALL histdef( nid_T, "sokppbld", "Boundary Layer Depth " , "m" , & ! sokppbld |
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| 183 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 184 | #endif |
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[253] | 185 | CALL histdef( nid_T, "somxlavt", "AVT : bottom of the mixed layer ", "m" , & ! avt_mxl |
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| 186 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 187 | CALL histdef( nid_T, "somixhgt", "Turbocline Depth" , "m" , & ! hmld |
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| 188 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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[1037] | 189 | CALL histdef( nid_T, "soicecov", "Ice Fraction" , "[0,1]" , & ! fr_i |
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[253] | 190 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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[900] | 191 | IF( ln_ssr ) THEN |
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| 192 | CALL histdef( nid_T, "sohefldp", "Surface Heat Flux: Damping" , "W/m2" , & ! qrp |
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| 193 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 194 | CALL histdef( nid_T, "sowafldp", "Surface Water Flux: Damping" , "Kg/m2/s", & ! erp |
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| 195 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 196 | CALL histdef( nid_T, "sosafldp", "Surface salt flux: damping" , "Kg/m2/s", & ! erp * sn |
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| 197 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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| 198 | ENDIF |
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[253] | 199 | clmx ="l_max(only(x))" ! max index on a period |
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| 200 | CALL histdef( nid_T, "sobowlin", "Bowl Index" , "W-point", & ! bowl INDEX |
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| 201 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clmx, zsto, zout ) |
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| 202 | ! !!! nid_U : 3D |
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| 203 | CALL histdef( nid_T, "vozocrtx", "Zonal Current" , "m/s" , & ! un |
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| 204 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 205 | #if defined key_diaeiv |
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| 206 | CALL histdef( nid_T, "vozoeivu", "Zonal EIV Current" , "m/s" , & ! u_eiv |
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| 207 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 208 | #endif |
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| 209 | ! !!! nid_U : 2D |
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[888] | 210 | CALL histdef( nid_T, "sozotaux", "Wind Stress along i-axis" , "N/m2" , & ! utau |
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[253] | 211 | & jpi, jpj, nh_T, 1 , 1, 1 , - 99, 32, clop, zsto, zout ) |
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| 212 | |
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| 213 | ! !!! nid_V : 3D |
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| 214 | CALL histdef( nid_T, "vomecrty", "Meridional Current" , "m/s" , & ! vn |
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| 215 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 216 | #if defined key_diaeiv |
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| 217 | CALL histdef( nid_T, "vomeeivv", "Meridional EIV Current" , "m/s" , & ! v_eiv |
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| 218 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 219 | #endif |
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| 220 | ! !!! nid_V : 2D |
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[888] | 221 | CALL histdef( nid_T, "sometauy", "Wind Stress along j-axis" , "N/m2" , & ! vtau |
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[253] | 222 | & jpi, jpj, nh_T, 1 , 1, 1 , - 99, 32, clop, zsto, zout ) |
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[1531] | 223 | #if defined key_zdftke_old |
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[253] | 224 | CALL histdef( nid_T, "votlsdis", " Dissipation Turbulent Lenght Scale", "m" , & ! e_dis |
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| 225 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 226 | CALL histdef( nid_T, "votlsmix", " Mixing Turbulent Lenght Scale" , "m" , & ! e_mix |
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| 227 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 228 | CALL histdef( nid_T, "votlspdl", " Prandl Number", "-" , & ! e_pdl |
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| 229 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 230 | CALL histdef( nid_T, "votlsric", " Local Richardson Number", "-" , & ! e_ric |
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| 231 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 232 | CALL histdef( nid_T, "votkeend", "TKE: Turbulent kinetic energy" , "m2/s" , & ! TKE |
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| 233 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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[1221] | 234 | CALL histdef( nid_T, "sotkehlc", "TKE: Langmuir Circulation depth" , "m" , & ! hlc |
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| 235 | & jpi, jpj, nh_T, 1 , 1, 1 , -99 , 32, clop, zsto, zout ) |
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[253] | 236 | #endif |
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[255] | 237 | #if defined key_zdfkpp |
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| 238 | CALL histdef( nid_T, "vokpprig", " Gradient Richardson Number" , "-" , & ! rig |
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| 239 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 240 | CALL histdef( nid_T, "vokpprib", " Bulk Richardson Number " , "-" , & ! rib |
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| 241 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 242 | CALL histdef( nid_T, "vokppbsf", " Buoyancy forcing " , "N/m2" , & ! sokppbsf |
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| 243 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 244 | CALL histdef( nid_T, "vokppmol", "Moning Obukhov length scale " , "m" , & ! sokppmol |
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| 245 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 246 | #endif |
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| 247 | ! |
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[253] | 248 | CALL histdef( nid_T, "voeosbn2", "Brunt-Vaisala Frequency" , "m2/s2" , & ! rn2 |
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| 249 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 250 | CALL histdef( nid_T, "votkeavt", "Vertical Eddy Diffusivity" , "m2/s" , & ! avt |
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| 251 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 252 | CALL histdef( nid_T, "votkeavm", "Vertical Eddy Viscosity", "m2/s" , & ! avmu |
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| 253 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 254 | ! |
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| 255 | IF( lk_zdfddm ) THEN |
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| 256 | CALL histdef( nid_T,"voddmavs","Salt Vertical Eddy Diffusivity" , "m2/s" , & ! avs |
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| 257 | & jpi, jpj, nh_T, ipk, 1, ipk, nz_T, 32, clop, zsto, zout ) |
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| 258 | ENDIF |
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| 259 | |
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| 260 | CALL histend( nid_T ) |
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| 261 | |
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| 262 | IF(lwp) WRITE(numout,*) |
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| 263 | IF(lwp) WRITE(numout,*) 'End of NetCDF Initialization' |
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| 264 | IF(ll_print) CALL FLUSH(numout ) |
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| 265 | |
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| 266 | ENDIF |
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| 267 | |
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| 268 | ! 2. Start writing data |
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| 269 | ! --------------------- |
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| 270 | |
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| 271 | ! ndex(1) est utilise ssi l'avant dernier argument est diffferent de |
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| 272 | ! la taille du tableau en sortie. Dans ce cas , l'avant dernier argument |
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| 273 | ! donne le nombre d'elements, et ndex la liste des indices a sortir |
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| 274 | |
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[1334] | 275 | IF( lwp .AND. MOD( itmod, nwrite ) == 0 ) THEN |
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[253] | 276 | WRITE(numout,*) 'dia_wri : write model outputs in NetCDF files at ', kt, 'time-step' |
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| 277 | WRITE(numout,*) '~~~~~~ ' |
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| 278 | ENDIF |
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| 279 | |
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| 280 | ! Write fields on T grid |
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| 281 | CALL histwrite( nid_T, "votemper", it, tn , ndim_T , ndex_T ) ! temperature |
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| 282 | CALL histwrite( nid_T, "vosaline", it, sn , ndim_T , ndex_T ) ! salinity |
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| 283 | CALL histwrite( nid_T, "sosstsst", it, tn(:,:,1) , ndim_hT, ndex_hT ) ! sea surface temperature |
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| 284 | CALL histwrite( nid_T, "sosaline", it, sn(:,:,1) , ndim_hT, ndex_hT ) ! sea surface salinity |
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| 285 | CALL histwrite( nid_T, "sowaflup", it, emp , ndim_hT, ndex_hT ) ! upward water flux |
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[900] | 286 | !! CALL histwrite( nid_T, "sorunoff", it, runoff , ndim_hT, ndex_hT ) ! runoff |
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[253] | 287 | CALL histwrite( nid_T, "sowaflcd", it, emps , ndim_hT, ndex_hT ) ! c/d water flux |
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| 288 | zw2d(:,:) = emps(:,:) * sn(:,:,1) * tmask(:,:,1) |
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| 289 | CALL histwrite( nid_T, "sosalflx", it, zw2d , ndim_hT, ndex_hT ) ! c/d salt flux |
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[888] | 290 | CALL histwrite( nid_T, "sohefldo", it, qsr + qns , ndim_hT, ndex_hT ) ! total heat flux |
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[253] | 291 | CALL histwrite( nid_T, "soshfldo", it, qsr , ndim_hT, ndex_hT ) ! solar heat flux |
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| 292 | CALL histwrite( nid_T, "somxl010", it, hmlp , ndim_hT, ndex_hT ) ! mixed layer depth |
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[255] | 293 | #if defined key_zdfkpp |
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| 294 | CALL histwrite( nid_T, "sokppekd", it, ekdp , ndim_hT, ndex_hT ) ! Ekman depht |
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| 295 | CALL histwrite( nid_T, "sokppbld", it, hkpp , ndim_hT, ndex_hT ) ! boundary layer depth |
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| 296 | #endif |
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[253] | 297 | ! store the vertical eddy diffusivity coef. at the bottom of the mixed layer |
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| 298 | DO jj = 1, jpj |
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| 299 | DO ji = 1, jpi |
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| 300 | ik = nmln(ji,jj) |
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| 301 | zw2d(ji,jj) = avt(ji,jj,ik) * tmask(ji,jj,1) |
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| 302 | END DO |
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| 303 | END DO |
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| 304 | CALL histwrite( nid_T, "somxlavt", it, zw2d , ndim_hT, ndex_hT ) ! Kz at bottom of mixed layer |
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| 305 | CALL histwrite( nid_T, "somixhgt", it, hmld , ndim_hT, ndex_hT ) ! turbocline depth |
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[1037] | 306 | CALL histwrite( nid_T, "soicecov", it, fr_i , ndim_hT, ndex_hT ) ! ice fraction |
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[900] | 307 | IF( ln_ssr ) THEN |
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| 308 | CALL histwrite( nid_T, "sohefldp", it, qrp , ndim_hT, ndex_hT ) ! heat flux damping |
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| 309 | CALL histwrite( nid_T, "sowafldp", it, erp , ndim_hT, ndex_hT ) ! freshwater flux damping |
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[253] | 310 | zw2d(:,:) = erp(:,:) * sn(:,:,1) * tmask(:,:,1) |
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[900] | 311 | CALL histwrite( nid_T, "sosafldp", it, zw2d , ndim_hT, ndex_hT ) ! salt flux damping |
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| 312 | ENDIF |
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| 313 | zw2d(:,:) = FLOAT( nmln(:,:) ) * tmask(:,:,1) |
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[253] | 314 | CALL histwrite( nid_T, "sobowlin", it, zw2d , ndim_hT, ndex_hT ) ! ??? |
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| 315 | CALL histwrite( nid_T, "vozocrtx", it, un , ndim_T , ndex_T ) ! i-current |
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[888] | 316 | CALL histwrite( nid_T, "sozotaux", it, utau , ndim_hT, ndex_hT ) ! i-wind stress |
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[253] | 317 | CALL histwrite( nid_T, "vomecrty", it, vn , ndim_T , ndex_T ) ! j-current |
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[888] | 318 | CALL histwrite( nid_T, "sometauy", it, vtau , ndim_hT, ndex_hT ) ! j-wind stress |
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[1531] | 319 | #if defined key_zdftke_old |
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[253] | 320 | CALL histwrite( nid_T, "votlsdis", it, e_dis , ndim_T , ndex_T ) ! Diss. Turb. lenght scale |
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| 321 | CALL histwrite( nid_T, "votlsmix", it, e_mix , ndim_T , ndex_T ) ! Mixing Turb. lenght scale |
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| 322 | CALL histwrite( nid_T, "votlspdl", it, e_pdl , ndim_T , ndex_T ) ! Prandl number |
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| 323 | CALL histwrite( nid_T, "votlsric", it, e_ric , ndim_T , ndex_T ) ! local Richardson number |
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| 324 | CALL histwrite( nid_T, "votkeend", it, en , ndim_T , ndex_T ) ! TKE |
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[1221] | 325 | CALL histwrite( nid_T, "sotkehlc", it, hlc , ndim_hT, ndex_hT ) ! TKE Langmuir Circulation depth |
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[253] | 326 | #endif |
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[255] | 327 | #if defined key_zdfkpp |
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| 328 | CALL histwrite( nid_T, "vokpprig", it, rig , ndim_T , ndex_T ) ! gradient Richardson number |
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| 329 | CALL histwrite( nid_T, "vokpprib", it, rib , ndim_T , ndex_T ) ! bulk Richardson number |
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| 330 | CALL histwrite( nid_T, "vokppbsf", it, buof , ndim_T , ndex_T ) ! buoyancy forcing |
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| 331 | CALL histwrite( nid_T, "vokppmol", it, mols , ndim_T , ndex_T ) ! Moning-Obukov length scale |
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| 332 | #endif |
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[253] | 333 | CALL histwrite( nid_T, "voeosbn2", it, rn2 , ndim_T , ndex_T ) ! Brunt-Vaisala Frequency |
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| 334 | CALL histwrite( nid_T, "votkeavt", it, avt , ndim_T , ndex_T ) ! T vert. eddy diff. coef. |
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| 335 | CALL histwrite( nid_T, "votkeavm", it, avmu , ndim_T , ndex_T ) ! T vert. eddy visc. coef. |
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| 336 | IF( lk_zdfddm ) THEN |
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| 337 | CALL histwrite( nid_T, "voddmavs", it, fsavs(:,:,:), ndim_T, ndex_T ) ! S vert. eddy diff. coef. |
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| 338 | ENDIF |
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| 339 | |
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| 340 | ! Create an output files (output.abort.nc) if S < 0 or u > 20 m/s |
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[1334] | 341 | IF( kindic < 0 ) CALL dia_wri_state( 'output.abort', kt ) |
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[253] | 342 | |
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[1318] | 343 | ! 3. Close all files |
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| 344 | ! --------------------------------------- |
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[900] | 345 | IF( kt == nitend .OR. kindic < 0 ) CALL histclo( nid_T ) |
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| 346 | ! |
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| 347 | END SUBROUTINE dia_wri_c1d |
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[253] | 348 | |
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| 349 | #else |
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| 350 | !!---------------------------------------------------------------------- |
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[900] | 351 | !! Default key NO 1D Configuration |
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[253] | 352 | !!---------------------------------------------------------------------- |
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| 353 | CONTAINS |
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[900] | 354 | SUBROUTINE dia_wri_c1d ( kt, kindic ) ! dummy routine |
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| 355 | WRITE(*,*) 'dia_wri_c1d: You should not have seen this print! error?', kt, kindic |
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| 356 | END SUBROUTINE dia_wri_c1d |
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[253] | 357 | #endif |
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| 358 | |
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| 359 | !!====================================================================== |
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[900] | 360 | END MODULE diawri_c1d |
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