[325] | 1 | MODULE domain |
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| 2 | !!============================================================================== |
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| 3 | !! *** MODULE domain *** |
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| 4 | !! Ocean initialization : domain initialization |
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| 5 | !!============================================================================== |
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| 6 | |
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| 7 | !!---------------------------------------------------------------------- |
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| 8 | !! dom_init : initialize the space and time domain |
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| 9 | !! dom_nam : read and contral domain namelists |
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| 10 | !! dom_ctl : control print for the ocean domain |
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| 11 | !!---------------------------------------------------------------------- |
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| 12 | !! * Modules used |
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| 13 | USE oce ! |
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| 14 | USE dom_oce ! ocean space and time domain |
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| 15 | USE phycst ! physical constants |
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| 16 | USE in_out_manager ! I/O manager |
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| 17 | USE daymod ! calendar |
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| 18 | USE lib_mpp ! distributed memory computing library |
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| 19 | |
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| 20 | USE domstp ! domain: set the time-step |
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| 21 | USE domrea ! domain: write the meshmask file |
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| 22 | USE dommsk ! domain : mask |
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| 23 | |
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| 24 | IMPLICIT NONE |
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| 25 | PRIVATE |
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| 26 | |
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| 27 | !! * Routine accessibility |
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| 28 | PUBLIC dom_init ! called by opa.F90 |
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| 29 | |
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[497] | 30 | !! * Module variables |
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| 31 | REAL(wp) :: & !!: Namelist nam_zgr_sco |
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| 32 | sbot_min = 300. , & !: minimum depth of s-bottom surface (>0) (m) |
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| 33 | sbot_max = 5250. , & !: maximum depth of s-bottom surface (= ocean depth) (>0) (m) |
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| 34 | theta = 6.0 , & !: surface control parameter (0<=theta<=20) |
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| 35 | thetb = 0.75, & !: bottom control parameter (0<=thetb<= 1) |
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| 36 | r_max = 0.15 !: maximum cut-off r-value allowed (0<r_max<1) |
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| 37 | |
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| 38 | |
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[325] | 39 | !! * Substitutions |
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| 40 | # include "domzgr_substitute.h90" |
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| 41 | !!---------------------------------------------------------------------- |
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[343] | 42 | !! OPA 9.0 , LOCEAN-IPSL (2005) |
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[719] | 43 | !! $Header$ |
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[343] | 44 | !! This software is governed by the CeCILL licence see modipsl/doc/NEMO_CeCILL.txt |
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[325] | 45 | !!---------------------------------------------------------------------- |
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| 46 | |
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| 47 | CONTAINS |
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| 48 | |
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| 49 | SUBROUTINE dom_init |
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| 50 | !!---------------------------------------------------------------------- |
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| 51 | !! *** ROUTINE dom_init *** |
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| 52 | !! |
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| 53 | !! ** Purpose : Domain initialization. Call the routines that are |
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| 54 | !! required to create the arrays which define the space and time |
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| 55 | !! domain of the ocean model. |
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| 56 | !! |
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| 57 | !! ** Method : |
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| 58 | !! - dom_stp: defined the model time step |
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| 59 | !! - dom_rea: read the meshmask file if nmsh=1 |
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| 60 | !! |
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| 61 | !! History : |
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| 62 | !! ! 90-10 (C. Levy - G. Madec) Original code |
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| 63 | !! ! 91-11 (G. Madec) |
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| 64 | !! ! 92-01 (M. Imbard) insert time step initialization |
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| 65 | !! ! 96-06 (G. Madec) generalized vertical coordinate |
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| 66 | !! ! 97-02 (G. Madec) creation of domwri.F |
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| 67 | !! ! 01-05 (E.Durand - G. Madec) insert closed sea |
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| 68 | !! 8.5 ! 02-08 (G. Madec) F90: Free form and module |
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| 69 | !!---------------------------------------------------------------------- |
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| 70 | !! * Local declarations |
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| 71 | INTEGER :: iconf = 0 ! temporary integers |
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| 72 | !!---------------------------------------------------------------------- |
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| 73 | |
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| 74 | IF(lwp) THEN |
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| 75 | WRITE(numout,*) |
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| 76 | WRITE(numout,*) 'dom_init : domain initialization' |
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| 77 | WRITE(numout,*) '~~~~~~~~' |
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| 78 | ENDIF |
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| 79 | |
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| 80 | CALL dom_nam ! read namelist ( namrun, namdom, namcla ) |
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| 81 | |
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| 82 | CALL dom_stp ! Time step |
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| 83 | |
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| 84 | CALL dom_rea ! Create a domain file |
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| 85 | |
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| 86 | CALL dom_msk ! Masks |
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| 87 | |
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| 88 | CALL dom_ctl ! Domain control |
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| 89 | |
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| 90 | END SUBROUTINE dom_init |
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| 91 | |
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| 92 | |
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| 93 | SUBROUTINE dom_nam |
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| 94 | !!---------------------------------------------------------------------- |
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| 95 | !! *** ROUTINE dom_nam *** |
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| 96 | !! |
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| 97 | !! ** Purpose : read domaine namelists and print the variables. |
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| 98 | !! |
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| 99 | !! ** input : - namrun namelist |
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| 100 | !! - namdom namelist |
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| 101 | !! - namcla namelist |
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| 102 | !! |
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| 103 | !! History : |
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| 104 | !! 9.0 ! 03-08 (G. Madec) Original code |
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| 105 | !!---------------------------------------------------------------------- |
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| 106 | !! * Modules used |
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| 107 | USE ioipsl |
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[497] | 108 | INTEGER :: ioptio = 0 ! temporary integer |
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| 109 | |
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[1119] | 110 | NAMELIST/namrun/ no , cexper , ln_rstart , nrstdt , nit000, & |
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| 111 | & nitend, ndate0 , nleapy , ninist , nstock, & |
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| 112 | & nwrite |
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| 113 | |
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| 114 | NAMELIST/namctl/ ln_ctl , nprint, nictls, nictle, & |
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[325] | 115 | & njctls, njctle , nbench , isplt , jsplt |
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| 116 | |
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[1119] | 117 | NAMELIST/namzgr/ ln_zco, ln_zps, ln_sco |
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[497] | 118 | |
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[1119] | 119 | NAMELIST/namdom/ e3zps_min, e3zps_rat, nmsh , & |
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[325] | 120 | & nacc , atfp , rdt , rdtmin , rdtmax, & |
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| 121 | & rdth |
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| 122 | |
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[1119] | 123 | NAMELIST/namcla/ n_cla |
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[325] | 124 | !!---------------------------------------------------------------------- |
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| 125 | |
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| 126 | IF(lwp) THEN |
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| 127 | WRITE(numout,*) |
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| 128 | WRITE(numout,*) 'dom_nam : domain initialization through namelist read' |
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| 129 | WRITE(numout,*) '~~~~~~~ ' |
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| 130 | ENDIF |
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| 131 | |
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| 132 | ! Namelist namrun : parameters of the run |
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| 133 | REWIND( numnam ) |
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[1119] | 134 | READ ( numnam, namrun ) |
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[325] | 135 | |
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| 136 | IF(lwp) THEN |
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| 137 | WRITE(numout,*) ' Namelist namrun' |
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| 138 | WRITE(numout,*) ' job number no = ', no |
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| 139 | WRITE(numout,*) ' experiment name for output cexper = ', cexper |
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| 140 | WRITE(numout,*) ' restart logical ln_rstart = ', ln_rstart |
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| 141 | WRITE(numout,*) ' control of time step nrstdt = ', nrstdt |
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| 142 | WRITE(numout,*) ' number of the first time step nit000 = ', nit000 |
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| 143 | WRITE(numout,*) ' number of the last time step nitend = ', nitend |
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| 144 | WRITE(numout,*) ' initial calendar date aammjj ndate0 = ', ndate0 |
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| 145 | WRITE(numout,*) ' leap year calendar (0/1) nleapy = ', nleapy |
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| 146 | WRITE(numout,*) ' initial state output ninist = ', ninist |
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| 147 | WRITE(numout,*) ' frequency of restart file nstock = ', nstock |
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| 148 | WRITE(numout,*) ' frequency of output file nwrite = ', nwrite |
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[1119] | 149 | ENDIF |
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| 150 | |
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| 151 | ndastp = ndate0 ! Assign initial date to current date |
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| 152 | |
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| 153 | ! Namelist namctl : print control |
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| 154 | REWIND( numnam ) |
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| 155 | READ ( numnam, namctl ) |
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| 156 | |
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| 157 | IF(lwp) THEN |
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| 158 | WRITE(numout,*) ' Namelist namctl' |
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[325] | 159 | WRITE(numout,*) ' run control (for debugging) ln_ctl = ', ln_ctl |
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[1119] | 160 | WRITE(numout,*) ' level of print nprint = ', nprint |
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[325] | 161 | WRITE(numout,*) ' Start i indice for SUM control nictls = ', nictls |
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| 162 | WRITE(numout,*) ' End i indice for SUM control nictle = ', nictle |
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| 163 | WRITE(numout,*) ' Start j indice for SUM control njctls = ', njctls |
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| 164 | WRITE(numout,*) ' End j indice for SUM control njctle = ', njctle |
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| 165 | WRITE(numout,*) ' number of proc. following i isplt = ', isplt |
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| 166 | WRITE(numout,*) ' number of proc. following j jsplt = ', jsplt |
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| 167 | WRITE(numout,*) ' benchmark parameter (0/1) nbench = ', nbench |
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| 168 | ENDIF |
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| 169 | |
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| 170 | ndastp = ndate0 ! Assign initial date to current date |
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| 171 | ! ... Control the sub-domain area indices for the print control |
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| 172 | IF(ln_ctl) THEN |
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| 173 | IF( lk_mpp ) THEN |
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| 174 | ! the domain is forced to the real splitted domain in MPI |
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| 175 | isplt = jpni ; jsplt = jpnj ; ijsplt = jpni*jpnj |
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| 176 | ELSE |
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| 177 | IF( isplt == 1 .AND. jsplt == 1 ) THEN |
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| 178 | IF(lwp) WRITE(numout,cform_war) |
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| 179 | IF(lwp) WRITE(numout,*)' - isplt & jsplt are equal to 1' |
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| 180 | IF(lwp) WRITE(numout,*)' - the print control will be done over the whole domain' |
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| 181 | IF(lwp) WRITE(numout,*) |
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| 182 | ENDIF |
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| 183 | |
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| 184 | ! compute the total number of processors ijsplt |
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| 185 | ijsplt = isplt*jsplt |
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| 186 | ENDIF |
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| 187 | |
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| 188 | IF(lwp) WRITE(numout,*)' - The total number of processors over which the' |
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| 189 | IF(lwp) WRITE(numout,*)' print control will be done is ijsplt : ', ijsplt |
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| 190 | |
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| 191 | ! Control the indices used for the SUM control |
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| 192 | IF( nictls+nictle+njctls+njctle == 0 ) THEN |
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| 193 | ! the print control is done over the default area |
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| 194 | lsp_area = .FALSE. |
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| 195 | ELSE |
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| 196 | ! the print control is done over a specific area |
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| 197 | lsp_area = .TRUE. |
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| 198 | IF( nictls < 1 .OR. nictls > jpiglo ) THEN |
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| 199 | IF(lwp) WRITE(numout,cform_war) |
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| 200 | IF(lwp) WRITE(numout,*)' - nictls must be 1<=nictls>=jpiglo, it is forced to 1' |
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| 201 | IF(lwp) WRITE(numout,*) |
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| 202 | nwarn = nwarn + 1 |
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| 203 | nictls = 1 |
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| 204 | ENDIF |
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| 205 | |
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| 206 | IF( nictle < 1 .OR. nictle > jpiglo ) THEN |
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| 207 | IF(lwp) WRITE(numout,cform_war) |
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| 208 | IF(lwp) WRITE(numout,*)' - nictle must be 1<=nictle>=jpiglo, it is forced to jpiglo' |
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| 209 | IF(lwp) WRITE(numout,*) |
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| 210 | nwarn = nwarn + 1 |
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| 211 | nictle = jpjglo |
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| 212 | ENDIF |
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| 213 | |
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| 214 | IF( njctls < 1 .OR. njctls > jpjglo ) THEN |
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| 215 | IF(lwp) WRITE(numout,cform_war) |
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| 216 | IF(lwp) WRITE(numout,*)' - njctls must be 1<=njctls>=jpjglo, it is forced to 1' |
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| 217 | IF(lwp) WRITE(numout,*) |
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| 218 | nwarn = nwarn + 1 |
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| 219 | njctls = 1 |
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| 220 | ENDIF |
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| 221 | |
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| 222 | IF( njctle < 1 .OR. njctle > jpjglo ) THEN |
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| 223 | IF(lwp) WRITE(numout,cform_war) |
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| 224 | IF(lwp) WRITE(numout,*)' - njctle must be 1<=njctle>= jpjglo, it is forced to jpjglo' |
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| 225 | IF(lwp) WRITE(numout,*) |
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| 226 | nwarn = nwarn + 1 |
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| 227 | njctle = jpjglo |
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| 228 | ENDIF |
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| 229 | |
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| 230 | ENDIF ! IF( nictls+nictle+njctls+njctle == 0 ) |
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| 231 | ENDIF ! IF(ln_ctl) |
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| 232 | |
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| 233 | ! ... Control of output frequency |
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| 234 | IF ( nstock == 0 ) THEN |
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| 235 | IF(lwp)WRITE(numout,cform_war) |
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| 236 | IF(lwp)WRITE(numout,*) ' nstock = ', nstock, ' it is forced to ', nitend |
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| 237 | nstock = nitend |
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| 238 | nwarn = nwarn + 1 |
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| 239 | ENDIF |
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| 240 | IF ( nwrite == 0 ) THEN |
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| 241 | IF(lwp)WRITE(numout,cform_war) |
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| 242 | IF(lwp)WRITE(numout,*) ' nwrite = ', nwrite, ' it is forced to ', nitend |
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| 243 | nwrite = nitend |
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| 244 | nwarn = nwarn + 1 |
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| 245 | ENDIF |
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| 246 | |
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| 247 | SELECT CASE ( nleapy ) ! Choose calendar for IOIPSL |
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| 248 | CASE ( 1 ) |
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| 249 | CALL ioconf_calendar('gregorian') |
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| 250 | IF(lwp) WRITE(numout,*) ' The IOIPSL calendar is "gregorian", i.e. leap year' |
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| 251 | CASE ( 0 ) |
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| 252 | CALL ioconf_calendar('noleap') |
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| 253 | IF(lwp) WRITE(numout,*) ' The IOIPSL calendar is "noleap", i.e. no leap year' |
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| 254 | CASE ( 30 ) |
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| 255 | CALL ioconf_calendar('360d') |
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| 256 | IF(lwp) WRITE(numout,*) ' The IOIPSL calendar is "360d", i.e. 360 days in a year' |
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| 257 | END SELECT |
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| 258 | |
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| 259 | SELECT CASE ( nleapy ) ! year=raajj*days day=rjjhh*hours hour=rhhmm*minutes etc ... |
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| 260 | CASE ( 1 ) |
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| 261 | raajj = 365.25 |
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| 262 | raass = raajj * rjjss |
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| 263 | rmoss = raass/raamo |
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| 264 | CASE ( 0 ) |
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| 265 | raajj = 365. |
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| 266 | raass = raajj * rjjss |
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| 267 | rmoss = raass/raamo |
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| 268 | CASE DEFAULT |
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| 269 | raajj = FLOAT( nleapy ) * raamo |
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| 270 | raass = raajj * rjjss |
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| 271 | rmoss = FLOAT( nleapy ) * rjjss |
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| 272 | END SELECT |
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| 273 | IF(lwp) THEN |
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| 274 | WRITE(numout,*) |
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| 275 | WRITE(numout,*) ' nb of days per year raajj = ', raajj,' days' |
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| 276 | WRITE(numout,*) ' nb of seconds per year raass = ', raass, ' s' |
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| 277 | WRITE(numout,*) ' nb of seconds per month rmoss = ', rmoss, ' s' |
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| 278 | ENDIF |
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| 279 | |
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[1119] | 280 | ! Read Namelist namzgr : vertical coordinate' |
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[497] | 281 | ! --------------------- |
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| 282 | REWIND ( numnam ) |
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[1119] | 283 | READ ( numnam, namzgr ) |
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[497] | 284 | |
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| 285 | ! Parameter control and print |
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| 286 | ! --------------------------- |
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| 287 | ! Control print |
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| 288 | IF(lwp) THEN |
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| 289 | WRITE(numout,*) |
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| 290 | WRITE(numout,*) 'Namelist namzgr : vertical coordinate' |
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| 291 | WRITE(numout,*) '~~~~~~~' |
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[1119] | 292 | WRITE(numout,*) ' Namelist namzgr : set vertical coordinate' |
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[497] | 293 | WRITE(numout,*) ' z-coordinate - full steps ln_zco = ', ln_zco |
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| 294 | WRITE(numout,*) ' z-coordinate - partial steps ln_zps = ', ln_zps |
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| 295 | WRITE(numout,*) ' s- or hybrid z-s-coordinate ln_sco = ', ln_sco |
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| 296 | ENDIF |
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| 297 | |
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| 298 | ! Check Vertical coordinate options |
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| 299 | ioptio = 0 |
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| 300 | IF( ln_zco ) ioptio = ioptio + 1 |
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| 301 | IF( ln_zps ) ioptio = ioptio + 1 |
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| 302 | IF( ln_sco ) ioptio = ioptio + 1 |
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| 303 | IF ( ioptio /= 1 ) CALL ctl_stop( ' none or several vertical coordinate options used' ) |
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| 304 | |
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| 305 | IF( ln_zco ) THEN |
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| 306 | IF(lwp) WRITE(numout,*) ' z-coordinate with reduced incore memory requirement' |
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| 307 | IF( ln_zps .OR. ln_sco ) CALL ctl_stop( ' reduced memory with zps or sco option is impossible' ) |
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| 308 | ENDIF |
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| 309 | |
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| 310 | |
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[325] | 311 | ! Namelist namdom : space/time domain (bathymetry, mesh, timestep) |
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| 312 | REWIND( numnam ) |
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[1119] | 313 | READ ( numnam, namdom ) |
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[325] | 314 | |
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| 315 | IF(lwp) THEN |
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| 316 | WRITE(numout,*) |
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| 317 | WRITE(numout,*) ' Namelist namdom' |
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| 318 | WRITE(numout,*) ' minimum thickness of partial e3zps_min = ', e3zps_min, ' (m)' |
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| 319 | WRITE(numout,*) ' step level e3zps_rat = ', e3zps_rat |
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| 320 | WRITE(numout,*) ' flag write mesh/mask file(s) nmsh = ', nmsh |
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| 321 | WRITE(numout,*) ' = 0 no file created ' |
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| 322 | WRITE(numout,*) ' = 1 mesh_mask ' |
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| 323 | WRITE(numout,*) ' = 2 mesh and mask ' |
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| 324 | WRITE(numout,*) ' = 3 mesh_hgr, msh_zgr and mask ' |
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| 325 | WRITE(numout,*) ' acceleration of converge nacc = ', nacc |
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| 326 | WRITE(numout,*) ' asselin time filter parameter atfp = ', atfp |
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| 327 | WRITE(numout,*) ' time step rdt = ', rdt |
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| 328 | WRITE(numout,*) ' minimum time step on tracers rdtmin = ', rdtmin |
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| 329 | WRITE(numout,*) ' maximum time step on tracers rdtmax = ', rdtmax |
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| 330 | WRITE(numout,*) ' depth variation tracer step rdth = ', rdth |
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| 331 | ENDIF |
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| 332 | |
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| 333 | |
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| 334 | |
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| 335 | ! Default values |
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| 336 | n_cla = 0 |
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| 337 | |
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| 338 | ! Namelist cross land advection |
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| 339 | REWIND( numnam ) |
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[1119] | 340 | READ ( numnam, namcla ) |
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[325] | 341 | IF(lwp) THEN |
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| 342 | WRITE(numout,*) |
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| 343 | WRITE(numout,*) ' Namelist namcla' |
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| 344 | WRITE(numout,*) ' cross land advection n_cla = ',n_cla |
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| 345 | ENDIF |
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| 346 | |
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| 347 | END SUBROUTINE dom_nam |
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| 348 | |
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| 349 | |
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| 350 | SUBROUTINE dom_ctl |
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| 351 | !!---------------------------------------------------------------------- |
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| 352 | !! *** ROUTINE dom_ctl *** |
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| 353 | !! |
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| 354 | !! ** Purpose : Domain control. |
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| 355 | !! |
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| 356 | !! ** Method : compute and print extrema of masked scale factors |
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| 357 | !! |
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| 358 | !! History : |
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| 359 | !! 8.5 ! 02-08 (G. Madec) Original code |
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| 360 | !!---------------------------------------------------------------------- |
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| 361 | !! * Local declarations |
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| 362 | INTEGER :: iimi1, ijmi1, iimi2, ijmi2, iima1, ijma1, iima2, ijma2 |
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| 363 | INTEGER, DIMENSION(2) :: iloc ! |
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| 364 | REAL(wp) :: ze1min, ze1max, ze2min, ze2max |
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| 365 | !!---------------------------------------------------------------------- |
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| 366 | |
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| 367 | ! Extrema of the scale factors |
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| 368 | |
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| 369 | IF(lwp)WRITE(numout,*) |
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| 370 | IF(lwp)WRITE(numout,*) 'dom_ctl : extrema of the masked scale factors' |
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| 371 | IF(lwp)WRITE(numout,*) '~~~~~~~' |
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| 372 | |
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| 373 | IF (lk_mpp) THEN |
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| 374 | CALL mpp_minloc( e1t(:,:), tmask(:,:,1), ze1min, iimi1,ijmi1 ) |
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| 375 | CALL mpp_minloc( e2t(:,:), tmask(:,:,1), ze2min, iimi2,ijmi2 ) |
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| 376 | CALL mpp_maxloc( e1t(:,:), tmask(:,:,1), ze1max, iima1,ijma1 ) |
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| 377 | CALL mpp_maxloc( e2t(:,:), tmask(:,:,1), ze2max, iima2,ijma2 ) |
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| 378 | ELSE |
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| 379 | ze1min = MINVAL( e1t(:,:), mask = tmask(:,:,1) == 1.e0 ) |
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| 380 | ze2min = MINVAL( e2t(:,:), mask = tmask(:,:,1) == 1.e0 ) |
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| 381 | ze1max = MAXVAL( e1t(:,:), mask = tmask(:,:,1) == 1.e0 ) |
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| 382 | ze2max = MAXVAL( e2t(:,:), mask = tmask(:,:,1) == 1.e0 ) |
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| 383 | |
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| 384 | iloc = MINLOC( e1t(:,:), mask = tmask(:,:,1) == 1.e0 ) |
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| 385 | iimi1 = iloc(1) + nimpp - 1 |
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| 386 | ijmi1 = iloc(2) + njmpp - 1 |
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| 387 | iloc = MINLOC( e2t(:,:), mask = tmask(:,:,1) == 1.e0 ) |
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| 388 | iimi2 = iloc(1) + nimpp - 1 |
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| 389 | ijmi2 = iloc(2) + njmpp - 1 |
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| 390 | iloc = MAXLOC( e1t(:,:), mask = tmask(:,:,1) == 1.e0 ) |
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| 391 | iima1 = iloc(1) + nimpp - 1 |
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| 392 | ijma1 = iloc(2) + njmpp - 1 |
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| 393 | iloc = MAXLOC( e2t(:,:), mask = tmask(:,:,1) == 1.e0 ) |
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| 394 | iima2 = iloc(1) + nimpp - 1 |
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| 395 | ijma2 = iloc(2) + njmpp - 1 |
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| 396 | ENDIF |
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| 397 | |
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| 398 | IF(lwp) THEN |
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| 399 | WRITE(numout,"(14x,'e1t maxi: ',1f10.2,' at i = ',i5,' j= ',i5)") ze1max, iima1, ijma1 |
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| 400 | WRITE(numout,"(14x,'e1t mini: ',1f10.2,' at i = ',i5,' j= ',i5)") ze1min, iimi1, ijmi1 |
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| 401 | WRITE(numout,"(14x,'e2t maxi: ',1f10.2,' at i = ',i5,' j= ',i5)") ze2max, iima2, ijma2 |
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| 402 | WRITE(numout,"(14x,'e2t mini: ',1f10.2,' at i = ',i5,' j= ',i5)") ze2min, iimi2, ijmi2 |
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| 403 | ENDIF |
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| 404 | |
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| 405 | END SUBROUTINE dom_ctl |
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| 406 | |
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| 407 | !!====================================================================== |
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| 408 | END MODULE domain |
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