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istate.F90 in NEMO/branches/2020/dev_r13312_AGRIF-03-04_jchanut_vinterp_tstep/src/OCE/DOM – NEMO

source: NEMO/branches/2020/dev_r13312_AGRIF-03-04_jchanut_vinterp_tstep/src/OCE/DOM/istate.F90 @ 13338

Last change on this file since 13338 was 13338, checked in by jchanut, 4 years ago

#2222, forgotten key_agrif in previous commit

  • Property svn:keywords set to Id
File size: 9.4 KB
Line 
1MODULE istate
2   !!======================================================================
3   !!                     ***  MODULE  istate  ***
4   !! Ocean state   :  initial state setting
5   !!=====================================================================
6   !! History :  OPA  !  1989-12  (P. Andrich)  Original code
7   !!            5.0  !  1991-11  (G. Madec)  rewritting
8   !!            6.0  !  1996-01  (G. Madec)  terrain following coordinates
9   !!            8.0  !  2001-09  (M. Levy, M. Ben Jelloul)  istate_eel
10   !!            8.0  !  2001-09  (M. Levy, M. Ben Jelloul)  istate_uvg
11   !!   NEMO     1.0  !  2003-08  (G. Madec, C. Talandier)  F90: Free form, modules + EEL R5
12   !!             -   !  2004-05  (A. Koch-Larrouy)  istate_gyre
13   !!            2.0  !  2006-07  (S. Masson)  distributed restart using iom
14   !!            3.3  !  2010-10  (C. Ethe) merge TRC-TRA
15   !!            3.4  !  2011-04  (G. Madec) Merge of dtatem and dtasal & suppression of tb,tn/sb,sn
16   !!            3.7  !  2016-04  (S. Flavoni) introduce user defined initial state
17   !!----------------------------------------------------------------------
18
19   !!----------------------------------------------------------------------
20   !!   istate_init   : initial state setting
21   !!   istate_uvg    : initial velocity in geostropic balance
22   !!----------------------------------------------------------------------
23   USE oce            ! ocean dynamics and active tracers
24   USE dom_oce        ! ocean space and time domain
25   USE daymod         ! calendar
26   USE dtatsd         ! data temperature and salinity   (dta_tsd routine)
27   USE dtauvd         ! data: U & V current             (dta_uvd routine)
28   USE domvvl          ! varying vertical mesh
29   USE wet_dry         ! wetting and drying (needed for wad_istate)
30   USE usrdef_istate   ! User defined initial state
31   !
32   USE in_out_manager  ! I/O manager
33   USE iom             ! I/O library
34   USE lib_mpp         ! MPP library
35   USE restart         ! restart
36
37#if defined key_agrif
38   USE agrif_oce       ! initial state interpolation
39   USE agrif_oce_interp
40#endif   
41
42   IMPLICIT NONE
43   PRIVATE
44
45   PUBLIC   istate_init   ! routine called by step.F90
46
47   !! * Substitutions
48#  include "do_loop_substitute.h90"
49#  include "domzgr_substitute.h90"
50   !!----------------------------------------------------------------------
51   !! NEMO/OCE 4.0 , NEMO Consortium (2018)
52   !! $Id$
53   !! Software governed by the CeCILL license (see ./LICENSE)
54   !!----------------------------------------------------------------------
55CONTAINS
56
57   SUBROUTINE istate_init( Kbb, Kmm, Kaa )
58      !!----------------------------------------------------------------------
59      !!                   ***  ROUTINE istate_init  ***
60      !!
61      !! ** Purpose :   Initialization of the dynamics and tracer fields.
62      !!----------------------------------------------------------------------
63      INTEGER, INTENT( in )  ::  Kbb, Kmm, Kaa   ! ocean time level indices
64      !
65      INTEGER ::   ji, jj, jk   ! dummy loop indices
66      REAL(wp), DIMENSION(jpi,jpj,jpk) ::   zgdept     ! 3D table  !!st patch to use gdept subtitute
67!!gm see comment further down
68      REAL(wp), ALLOCATABLE, DIMENSION(:,:,:,:) ::   zuvd    ! U & V data workspace
69!!gm end
70      !!----------------------------------------------------------------------
71      !
72      IF(lwp) WRITE(numout,*)
73      IF(lwp) WRITE(numout,*) 'istate_init : Initialization of the dynamics and tracers'
74      IF(lwp) WRITE(numout,*) '~~~~~~~~~~~'
75
76!!gm  Why not include in the first call of dta_tsd ? 
77!!gm  probably associated with the use of internal damping...
78       CALL dta_tsd_init        ! Initialisation of T & S input data
79!!gm to be moved in usrdef of C1D case
80!      IF( lk_c1d )   CALL dta_uvd_init        ! Initialization of U & V input data
81!!gm
82
83      rhd  (:,:,:  ) = 0._wp   ;   rhop (:,:,:  ) = 0._wp      ! set one for all to 0 at level jpk
84      rn2b (:,:,:  ) = 0._wp   ;   rn2  (:,:,:  ) = 0._wp      ! set one for all to 0 at levels 1 and jpk
85      ts  (:,:,:,:,Kaa) = 0._wp                                   ! set one for all to 0 at level jpk
86      rab_b(:,:,:,:) = 0._wp   ;   rab_n(:,:,:,:) = 0._wp      ! set one for all to 0 at level jpk
87#if defined key_agrif
88      uu   (:,:,:  ,Kaa) = 0._wp   ! used in agrif_oce_sponge at initialization
89      vv   (:,:,:  ,Kaa) = 0._wp   ! used in agrif_oce_sponge at initialization   
90#endif
91
92#if defined key_agrif
93      IF ( (.NOT.Agrif_root()).AND.ln_init_chfrpar ) THEN
94         numror = 0                           ! define numror = 0 -> no restart file to read
95         ln_1st_euler = .true.                ! Set time-step indicator at nit000 (euler forward)
96         CALL day_init 
97         CALL agrif_istate_oce( Kbb, Kmm, Kaa )   ! Interp from parent
98         !
99         ts (:,:,:,:,Kmm) = ts (:,:,:,:,Kbb) 
100         ssh(:,:,Kmm)     = ssh(:,:,Kbb)
101         uu (:,:,:,Kmm)   = uu (:,:,:,Kbb)
102         vv (:,:,:,Kmm)   = vv (:,:,:,Kbb)
103      ELSE
104#endif
105         IF( ln_rstart ) THEN                    ! Restart from a file
106            !                                    ! -------------------
107            CALL rst_read( Kbb, Kmm )            ! Read the restart file
108            CALL day_init                        ! model calendar (using both namelist and restart infos)
109            !
110         ELSE                                    ! Start from rest
111            !                                    ! ---------------
112            numror = 0                           ! define numror = 0 -> no restart file to read
113            l_1st_euler = .true.                 ! Set time-step indicator at nit000 (euler forward)
114            CALL day_init                        ! model calendar (using both namelist and restart infos)
115            !                                    ! Initialization of ocean to zero
116            !
117            IF( ln_tsd_init ) THEN               
118               CALL dta_tsd( nit000, ts(:,:,:,:,Kbb) )       ! read 3D T and S data at nit000
119               !
120               ssh(:,:,Kbb)   = 0._wp               ! set the ocean at rest
121               uu  (:,:,:,Kbb) = 0._wp
122               vv  (:,:,:,Kbb) = 0._wp 
123               !
124               IF( ll_wd ) THEN
125                  ssh(:,:,Kbb) =  -ssh_ref  ! Added in 30 here for bathy that adds 30 as Iterative test CEOD
126                  !
127                  ! Apply minimum wetdepth criterion
128                  !
129                  DO_2D( 1, 1, 1, 1 )
130                     IF( ht_0(ji,jj) + ssh(ji,jj,Kbb)  < rn_wdmin1 ) THEN
131                        ssh(ji,jj,Kbb) = tmask(ji,jj,1)*( rn_wdmin1 - (ht_0(ji,jj)) )
132                     ENDIF
133                  END_2D
134               ENDIF 
135               !
136            ELSE                                 ! user defined initial T and S
137               DO jk = 1, jpk
138                  zgdept(:,:,jk) = gdept(:,:,jk,Kbb)
139               END DO
140               CALL usr_def_istate( zgdept, tmask, ts(:,:,:,:,Kbb), uu(:,:,:,Kbb), vv(:,:,:,Kbb), ssh(:,:,Kbb)  )         
141            ENDIF
142            ts  (:,:,:,:,Kmm) = ts (:,:,:,:,Kbb)       ! set now values from to before ones
143            ssh (:,:,Kmm)     = ssh(:,:,Kbb)   
144            uu   (:,:,:,Kmm)   = uu  (:,:,:,Kbb)
145            vv   (:,:,:,Kmm)   = vv  (:,:,:,Kbb)
146
147!!gm POTENTIAL BUG :
148!!gm  ISSUE :  if ssh(:,:,Kbb) /= 0  then, in non linear free surface, the e3._n, e3._b should be recomputed
149!!             as well as gdept_ and gdepw_....   !!!!!
150!!      ===>>>>   probably a call to domvvl initialisation here....
151
152
153         !
154!!gm to be moved in usrdef of C1D case
155!         IF ( ln_uvd_init .AND. lk_c1d ) THEN ! read 3D U and V data at nit000
156!            ALLOCATE( zuvd(jpi,jpj,jpk,2) )
157!            CALL dta_uvd( nit000, zuvd )
158!            uu(:,:,:,Kbb) = zuvd(:,:,:,1) ;  uu(:,:,:,Kmm) = uu(:,:,:,Kbb)
159!            vv(:,:,:,Kbb) = zuvd(:,:,:,2) ;  vv(:,:,:,Kmm) = vv(:,:,:,Kbb)
160!            DEALLOCATE( zuvd )
161!         ENDIF
162         !
163!!gm This is to be changed !!!!
164!         ! - ML - ssh(:,:,Kmm) could be modified by istate_eel, so that initialization of e3t(:,:,:,Kbb) is done here
165!         IF( .NOT.ln_linssh ) THEN
166!            DO jk = 1, jpk
167!               e3t(:,:,jk,Kbb) = e3t(:,:,jk,Kmm)
168!            END DO
169!         ENDIF
170!!gm
171         !
172         ENDIF 
173#if defined key_agrif
174      ENDIF
175#endif
176      !
177      ! Initialize "now" and "before" barotropic velocities:
178      ! Do it whatever the free surface method, these arrays being eventually used
179      !
180      uu_b(:,:,Kmm) = 0._wp   ;   vv_b(:,:,Kmm) = 0._wp
181      uu_b(:,:,Kbb) = 0._wp   ;   vv_b(:,:,Kbb) = 0._wp
182      !
183!!gm  the use of umsak & vmask is not necessary below as uu(:,:,:,Kmm), vv(:,:,:,Kmm), uu(:,:,:,Kbb), vv(:,:,:,Kbb) are always masked
184      DO_3D( 1, 1, 1, 1, 1, jpkm1 )
185         uu_b(ji,jj,Kmm) = uu_b(ji,jj,Kmm) + e3u(ji,jj,jk,Kmm) * uu(ji,jj,jk,Kmm) * umask(ji,jj,jk)
186         vv_b(ji,jj,Kmm) = vv_b(ji,jj,Kmm) + e3v(ji,jj,jk,Kmm) * vv(ji,jj,jk,Kmm) * vmask(ji,jj,jk)
187         !
188         uu_b(ji,jj,Kbb) = uu_b(ji,jj,Kbb) + e3u(ji,jj,jk,Kbb) * uu(ji,jj,jk,Kbb) * umask(ji,jj,jk)
189         vv_b(ji,jj,Kbb) = vv_b(ji,jj,Kbb) + e3v(ji,jj,jk,Kbb) * vv(ji,jj,jk,Kbb) * vmask(ji,jj,jk)
190      END_3D
191      !
192      uu_b(:,:,Kmm) = uu_b(:,:,Kmm) * r1_hu(:,:,Kmm)
193      vv_b(:,:,Kmm) = vv_b(:,:,Kmm) * r1_hv(:,:,Kmm)
194      !
195      uu_b(:,:,Kbb) = uu_b(:,:,Kbb) * r1_hu(:,:,Kbb)
196      vv_b(:,:,Kbb) = vv_b(:,:,Kbb) * r1_hv(:,:,Kbb)
197      !
198   END SUBROUTINE istate_init
199
200   !!======================================================================
201END MODULE istate
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