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bdydyn.F90 in branches/2011/DEV_r2739_STFC_dCSE/NEMOGCM/NEMO/OPA_SRC/BDY – NEMO

source: branches/2011/DEV_r2739_STFC_dCSE/NEMOGCM/NEMO/OPA_SRC/BDY/bdydyn.F90 @ 4434

Last change on this file since 4434 was 4434, checked in by trackstand2, 10 years ago

Removed erroneous use of bound_exch_list in bdy_dyn_fla

  • Property svn:keywords set to Id
File size: 10.0 KB
Line 
1MODULE bdydyn
2   !!======================================================================
3   !!                       ***  MODULE  bdydyn  ***
4   !! Unstructured Open Boundary Cond. :   Flow relaxation scheme on velocities
5   !!======================================================================
6   !! History :  1.0  !  2005-02  (J. Chanut, A. Sellar)  Original code
7   !!             -   !  2007-07  (D. Storkey) Move Flather implementation to separate routine.
8   !!            3.0  !  2008-04  (NEMO team)  add in the reference version
9   !!            3.2  !  2008-04  (R. Benshila) consider velocity instead of transport
10   !!            3.3  !  2010-09  (E.O'Dea) modifications for Shelf configurations
11   !!            3.3  !  2010-09  (D.Storkey) add ice boundary conditions
12   !!----------------------------------------------------------------------
13#if defined key_bdy 
14   !!----------------------------------------------------------------------
15   !!   'key_bdy' :                    Unstructured Open Boundary Condition
16   !!----------------------------------------------------------------------
17   !!   bdy_dyn_frs    : relaxation of velocities on unstructured open boundary
18   !!   bdy_dyn_fla    : Flather condition for barotropic solution
19   !!----------------------------------------------------------------------
20   USE oce             ! ocean dynamics and tracers
21   USE dom_oce         ! ocean space and time domain
22   USE bdy_oce         ! ocean open boundary conditions
23   USE dynspg_oce      ! for barotropic variables
24   USE phycst          ! physical constants
25   USE lbclnk          ! ocean lateral boundary conditions (or mpp link)
26   USE bdytides        ! for tidal harmonic forcing at boundary
27   USE in_out_manager  !
28   USE timing,  ONLY: timing_start, timing_stop
29
30   IMPLICIT NONE
31   PRIVATE
32
33   PUBLIC   bdy_dyn_frs   ! routine called in dynspg_flt (free surface case ONLY)
34# if defined key_dynspg_exp || defined key_dynspg_ts
35   PUBLIC   bdy_dyn_fla   ! routine called in dynspg_flt (free surface case ONLY)
36# endif
37
38   !! * Control permutation of array indices
39#  include "oce_ftrans.h90"
40#  include "dom_oce_ftrans.h90"
41
42   !!----------------------------------------------------------------------
43   !! NEMO/OPA 3.3 , NEMO Consortium (2010)
44   !! $Id$
45   !! Software governed by the CeCILL licence (NEMOGCM/NEMO_CeCILL.txt)
46   !!----------------------------------------------------------------------
47CONTAINS
48
49   SUBROUTINE bdy_dyn_frs( kt )
50      !!----------------------------------------------------------------------
51      !!                  ***  SUBROUTINE bdy_dyn_frs  ***
52      !!
53      !! ** Purpose : - Apply the Flow Relaxation Scheme for dynamic in the 
54      !!                case of unstructured open boundaries.
55      !!
56      !! References :- Engedahl H., 1995: Use of the flow relaxation scheme in
57      !!               a three-dimensional baroclinic ocean model with realistic
58      !!               topography. Tellus, 365-382.
59      !!----------------------------------------------------------------------
60      INTEGER, INTENT( in ) ::   kt   ! Main time step counter
61      !!
62      INTEGER  ::   jb, jk         ! dummy loop indices
63      INTEGER  ::   ii, ij, igrd   ! local integers
64      REAL(wp) ::   zwgt           ! boundary weight
65      !!----------------------------------------------------------------------
66      !
67      IF(ln_dyn_frs) THEN       ! If this is false, then this routine does nothing.
68         !
69         IF( kt == nit000 ) THEN
70            IF(lwp) WRITE(numout,*)
71            IF(lwp) WRITE(numout,*) 'bdy_dyn_frs : Flow Relaxation Scheme on momentum'
72            IF(lwp) WRITE(numout,*) '~~~~~~~'
73         ENDIF
74         !
75         igrd = 2                      ! Relaxation of zonal velocity
76         DO jb = 1, nblen(igrd)
77            DO jk = 1, jpkm1
78               ii   = nbi(jb,igrd)
79               ij   = nbj(jb,igrd)
80               zwgt = nbw(jb,igrd)
81               ua(ii,ij,jk) = ( ua(ii,ij,jk) * ( 1.- zwgt ) + ubdy(jb,jk) * zwgt ) * umask(ii,ij,jk)
82            END DO
83         END DO
84         !
85         igrd = 3                      ! Relaxation of meridional velocity
86         DO jb = 1, nblen(igrd)
87            DO jk = 1, jpkm1
88               ii   = nbi(jb,igrd)
89               ij   = nbj(jb,igrd)
90               zwgt = nbw(jb,igrd)
91               va(ii,ij,jk) = ( va(ii,ij,jk) * ( 1.- zwgt ) + vbdy(jb,jk) * zwgt ) * vmask(ii,ij,jk)
92            END DO
93         END DO
94         CALL lbc_lnk( ua, 'U', -1. )   ;   CALL lbc_lnk( va, 'V', -1. )   ! Boundary points should be updated
95         !
96      ENDIF ! ln_dyn_frs
97      !
98   END SUBROUTINE bdy_dyn_frs
99
100
101# if defined   key_dynspg_exp   ||   defined key_dynspg_ts
102   !!----------------------------------------------------------------------
103   !!   'key_dynspg_exp'        OR              explicit sea surface height
104   !!   'key_dynspg_ts '                  split-explicit sea surface height
105   !!----------------------------------------------------------------------
106   
107!! Option to use Flather with dynspg_flt not coded yet...
108
109   SUBROUTINE bdy_dyn_fla( pssh )
110      !!----------------------------------------------------------------------
111      !!                 ***  SUBROUTINE bdy_dyn_fla  ***
112      !!             
113      !!              - Apply Flather boundary conditions on normal barotropic velocities
114      !!                (ln_dyn_fla=.true. or ln_tides=.true.)
115      !!
116      !! ** WARNINGS about FLATHER implementation:
117      !!1. According to Palma and Matano, 1998 "after ssh" is used.
118      !!   In ROMS and POM implementations, it is "now ssh". In the current
119      !!   implementation (tested only in the EEL-R5 conf.), both cases were unstable.
120      !!   So I use "before ssh" in the following.
121      !!
122      !!2. We assume that the normal ssh gradient at the bdy is zero. As a matter of
123      !!   fact, the model ssh just inside the dynamical boundary is used (the outside 
124      !!   ssh in the code is not updated).
125      !!
126      !! References:  Flather, R. A., 1976: A tidal model of the northwest European
127      !!              continental shelf. Mem. Soc. R. Sci. Liege, Ser. 6,10, 141-164.     
128      !!----------------------------------------------------------------------
129      USE exchmod, Only: add_exch, bound_exch_list
130      REAL(wp), DIMENSION(jpi,jpj), INTENT(in) ::   pssh
131
132      INTEGER  ::   jb, igrd                         ! dummy loop indices
133      INTEGER  ::   ii, ij, iim1, iip1, ijm1, ijp1   ! 2D addresses
134      REAL(wp) ::   zcorr                            ! Flather correction
135      REAL(wp) ::   zforc                            ! temporary scalar
136      !!----------------------------------------------------------------------
137
138      CALL timing_start('bdy_dyn_fla')
139
140      ! ---------------------------------!
141      ! Flather boundary conditions     :!
142      ! ---------------------------------!
143
144      IF(ln_dyn_fla .OR. ln_tides) THEN ! If these are both false, then this routine does nothing.
145
146         ! Fill temporary array with ssh data (here spgu):
147         igrd = 4
148         spgu(:,:) = 0.0
149         DO jb = 1, nblenrim(igrd)
150            ii = nbi(jb,igrd)
151            ij = nbj(jb,igrd)
152            IF( ln_dyn_fla ) spgu(ii, ij) = sshbdy(jb)
153            IF( ln_tides )   spgu(ii, ij) = spgu(ii, ij) + sshtide(jb)
154         END DO
155         !
156         igrd = 5      ! Flather bc on u-velocity;
157         !             ! remember that flagu=-1 if normal velocity direction is outward
158         !             ! I think we should rather use after ssh ?
159         DO jb = 1, nblenrim(igrd)
160            ii  = nbi(jb,igrd)
161            ij  = nbj(jb,igrd) 
162            iim1 = ii + MAX( 0, INT( flagu(jb) ) )   ! T pts i-indice inside the boundary
163            iip1 = ii - MIN( 0, INT( flagu(jb) ) )   ! T pts i-indice outside the boundary
164            !
165            zcorr = - flagu(jb) * SQRT( grav * hur_e(ii, ij) ) * ( pssh(iim1, ij) - spgu(iip1,ij) )
166            zforc = ubtbdy(jb) + utide(jb)
167#if defined key_z_first
168            ua_e(ii,ij) = zforc + zcorr * umask_1(ii,ij)
169#else
170            ua_e(ii,ij) = zforc + zcorr * umask(ii,ij,1)
171#endif
172         END DO
173         !
174         igrd = 6      ! Flather bc on v-velocity
175         !             ! remember that flagv=-1 if normal velocity direction is outward
176         DO jb = 1, nblenrim(igrd)
177            ii  = nbi(jb,igrd)
178            ij  = nbj(jb,igrd) 
179            ijm1 = ij + MAX( 0, INT( flagv(jb) ) )   ! T pts j-indice inside the boundary
180            ijp1 = ij - MIN( 0, INT( flagv(jb) ) )   ! T pts j-indice outside the boundary
181            !
182            zcorr = - flagv(jb) * SQRT( grav * hvr_e(ii, ij) ) * ( pssh(ii, ijm1) - spgu(ii,ijp1) )
183            zforc = vbtbdy(jb) + vtide(jb)
184#if defined key_z_first
185            va_e(ii,ij) = zforc + zcorr * vmask_1(ii,ij)
186#else
187            va_e(ii,ij) = zforc + zcorr * vmask(ii,ij,1)
188#endif
189         END DO
190
191         !
192!#if defined key_mpp_rkpart
193         ! Is quicker to pack halo-swaps for 2D fields than to do them
194         ! individually
195!         CALL add_exch(jpreci,'U',Iminus,Jminus,Iplus,Jplus,ua_e,isgn=-1)
196!         CALL add_exch(jpreci,'V',Iminus,Jminus,Iplus,Jplus,va_e,isgn=-1)
197!         CALL bound_exch_list()
198!#else
199         CALL lbc_lnk( ua_e, 'U', -1. )   ! Boundary points should be updated
200         CALL lbc_lnk( va_e, 'V', -1. )   !
201!#endif
202         !
203      ENDIF ! ln_dyn_fla .or. ln_tides
204      !
205      CALL timing_stop('bdy_dyn_fla','section')
206      !
207   END SUBROUTINE bdy_dyn_fla
208#endif
209
210#else
211   !!----------------------------------------------------------------------
212   !!   Dummy module                   NO Unstruct Open Boundary Conditions
213   !!----------------------------------------------------------------------
214CONTAINS
215   SUBROUTINE bdy_dyn_frs( kt )      ! Empty routine
216      WRITE(*,*) 'bdy_dyn_frs: You should not have seen this print! error?', kt
217   END SUBROUTINE bdy_dyn_frs
218   SUBROUTINE bdy_dyn_fla( pssh )    ! Empty routine
219      REAL :: pssh(:,:)
220      WRITE(*,*) 'bdy_dyn_fla: You should not have seen this print! error?', pssh(1,1)
221   END SUBROUTINE bdy_dyn_fla
222#endif
223
224   !!======================================================================
225END MODULE bdydyn
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