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#include "CTRL_CPPOPTIONS.h" |
#include "CTRL_CPPOPTIONS.h" |
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CBOP |
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C !ROUTINE: ctrl_map_ini |
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C !INTERFACE: |
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subroutine ctrl_map_ini( mythid ) |
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C !DESCRIPTION: \bv |
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c *================================================================= |
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c | SUBROUTINE ctrl_map_ini |
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c | Add the temperature, salinity, and diffusivity parts of the |
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c | control vector to the model state and update the tile halos. |
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c | The control vector is defined in the header file "ctrl.h". |
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c *================================================================= |
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C \ev |
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subroutine ctrl_map_ini( |
C !USES: |
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I mythid |
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& ) |
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c ================================================================== |
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c SUBROUTINE ctrl_map_ini |
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c ================================================================== |
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c |
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c o Add the temperature and salinity parts of the control vector to |
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c the model state and update the tile edges. The control vector is |
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c defined in the header file "ctrl.h". |
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c |
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c started: Christian Eckert eckert@mit.edu 30-Jun-1999 |
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c |
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c changed: Christian Eckert eckert@mit.edu 23-Feb-2000 |
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c |
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c - Restructured the code in order to create a package |
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c for the MITgcmUV. |
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c |
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c ================================================================== |
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c SUBROUTINE ctrl_map_ini |
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c ================================================================== |
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implicit none |
implicit none |
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c == global variables == |
c == global variables == |
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#include "EEPARAMS.h" |
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#include "SIZE.h" |
#include "SIZE.h" |
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#include "EEPARAMS.h" |
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#include "PARAMS.h" |
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#include "GRID.h" |
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#include "DYNVARS.h" |
#include "DYNVARS.h" |
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#include "TR1.h" |
#include "FFIELDS.h" |
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#include "ctrl.h" |
#include "ctrl.h" |
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#include "ctrl_dummy.h" |
#include "ctrl_dummy.h" |
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#include "optim.h" |
#include "optim.h" |
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#ifdef ALLOW_PTRACERS |
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# include "PTRACERS_SIZE.h" |
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# include "PTRACERS.h" |
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#endif |
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#ifdef ALLOW_ECCO |
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# include "ecco_cost.h" |
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#endif |
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C !INPUT/OUTPUT PARAMETERS: |
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c == routine arguments == |
c == routine arguments == |
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integer mythid |
integer mythid |
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C !LOCAL VARIABLES: |
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c == local variables == |
c == local variables == |
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_RL fac |
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integer bi,bj |
integer bi,bj |
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integer i,j,k |
integer i,j,k |
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integer itlo,ithi |
integer itlo,ithi |
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logical doglobalread |
logical doglobalread |
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logical ladinit |
logical ladinit |
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character*( 80) fnametheta |
character*( 80) fnamegeneric |
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character*( 80) fnamesalt |
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character*( 80) fnametr1 |
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character*( 80) fnamediffkr |
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character*( 80) fnamekapgm |
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c == external == |
_RL fac |
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_RL tmptest |
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c == external == |
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integer ilnblnk |
integer ilnblnk |
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external ilnblnk |
external ilnblnk |
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c == end of interface == |
c == end of interface == |
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CEOP |
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jtlo = mybylo(mythid) |
jtlo = mybylo(mythid) |
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jthi = mybyhi(mythid) |
jthi = mybyhi(mythid) |
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itlo = mybxlo(mythid) |
itlo = mybxlo(mythid) |
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ithi = mybxhi(mythid) |
ithi = mybxhi(mythid) |
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jmin = 1-oly |
jmin = 1 |
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jmax = sny+oly |
jmax = sny |
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imin = 1-olx |
imin = 1 |
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imax = snx+olx |
imax = snx |
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doglobalread = .false. |
doglobalread = .false. |
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ladinit = .false. |
ladinit = .false. |
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#ifdef ALLOW_THETA0_CONTROL |
#ifdef ALLOW_THETA0_CONTROL |
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c-- Temperature field. |
c-- Temperature field. |
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il=ilnblnk( xx_theta_file ) |
il=ilnblnk( xx_theta_file ) |
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write(fnametheta(1:80),'(2a,i10.10)') |
write(fnamegeneric(1:80),'(2a,i10.10)') |
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& xx_theta_file(1:il),'.',optimcycle |
& xx_theta_file(1:il),'.',optimcycle |
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call active_read_xyz( fnametheta, tmpfld3d, 1, |
call active_read_xyz_loc( fnamegeneric, tmpfld3d, 1, |
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& doglobalread, ladinit, optimcycle, |
& doglobalread, ladinit, optimcycle, |
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& mythid, xx_theta_dummy ) |
& mythid, xx_theta_dummy ) |
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do k = 1,nr |
do k = 1,nr |
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do j = jmin,jmax |
do j = jmin,jmax |
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do i = imin,imax |
do i = imin,imax |
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#ifdef ALLOW_ECCO |
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IF (abs(tmpfld3d(i,j,k,bi,bj)).gt. |
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$ 2.0/sqrt(wtheta(k,bi,bj))) |
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$ tmpfld3d(i,j,k,bi,bj)= |
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$ sign(2.0/sqrt(wtheta(k,bi,bj)),tmpfld3d(i,j,k,bi,bj)) |
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#endif |
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#ifdef ALLOW_OPENAD |
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theta(i,j,k,bi,bj) = theta(i,j,k,bi,bj) + |
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& fac*xx_theta(i,j,k,bi,bj) |
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#else |
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theta(i,j,k,bi,bj) = theta(i,j,k,bi,bj) + |
theta(i,j,k,bi,bj) = theta(i,j,k,bi,bj) + |
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& fac*tmpfld3d(i,j,k,bi,bj) |
& fac*tmpfld3d(i,j,k,bi,bj) |
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gtNm1(i,j,k,bi,bj) = gtNm1(i,j,k,bi,bj) + |
#endif |
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& fac*tmpfld3d(i,j,k,bi,bj) |
if(theta(i,j,k,bi,bj).lt.-2.0) |
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& theta(i,j,k,bi,bj)= -2.0 |
120 |
enddo |
enddo |
121 |
enddo |
enddo |
122 |
enddo |
enddo |
123 |
enddo |
enddo |
124 |
enddo |
enddo |
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126 |
#endif |
#endif |
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#ifdef ALLOW_SALT0_CONTROL |
#ifdef ALLOW_SALT0_CONTROL |
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c-- Temperature field. |
c-- Temperature field. |
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il=ilnblnk( xx_salt_file ) |
il=ilnblnk( xx_salt_file ) |
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write(fnamesalt(1:80),'(2a,i10.10)') |
write(fnamegeneric(1:80),'(2a,i10.10)') |
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& xx_salt_file(1:il),'.',optimcycle |
& xx_salt_file(1:il),'.',optimcycle |
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call active_read_xyz( fnamesalt, tmpfld3d, 1, |
call active_read_xyz_loc( fnamegeneric, tmpfld3d, 1, |
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& doglobalread, ladinit, optimcycle, |
& doglobalread, ladinit, optimcycle, |
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& mythid, xx_salt_dummy ) |
& mythid, xx_salt_dummy ) |
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do k = 1,nr |
do k = 1,nr |
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do j = jmin,jmax |
do j = jmin,jmax |
141 |
do i = imin,imax |
do i = imin,imax |
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#ifdef ALLOW_ECCO |
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IF (abs(tmpfld3d(i,j,k,bi,bj)).gt. |
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$ 2.0/sqrt(wsalt(k,bi,bj))) |
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$ tmpfld3d(i,j,k,bi,bj)= |
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$ sign(2.0/sqrt(wsalt(k,bi,bj)),tmpfld3d(i,j,k,bi,bj)) |
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#endif |
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#ifdef ALLOW_OPENAD |
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salt(i,j,k,bi,bj) = salt(i,j,k,bi,bj) + |
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& fac*xx_salt(i,j,k,bi,bj) |
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#else |
152 |
salt(i,j,k,bi,bj) = salt(i,j,k,bi,bj) + |
salt(i,j,k,bi,bj) = salt(i,j,k,bi,bj) + |
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& fac*tmpfld3d(i,j,k,bi,bj) |
& fac*tmpfld3d(i,j,k,bi,bj) |
154 |
gsNm1(i,j,k,bi,bj) = gsNm1(i,j,k,bi,bj) + |
#endif |
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& fac*tmpfld3d(i,j,k,bi,bj) |
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156 |
enddo |
enddo |
157 |
enddo |
enddo |
158 |
enddo |
enddo |
159 |
enddo |
enddo |
160 |
enddo |
enddO |
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#endif |
#endif |
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#ifdef ALLOW_TR10_CONTROL |
#ifdef ALLOW_TR10_CONTROL |
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#ifdef ALLOW_PTRACERS |
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c-- Temperature field. |
c-- Temperature field. |
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il=ilnblnk( xx_tr1_file ) |
il=ilnblnk( xx_tr1_file ) |
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write(fnametr1(1:80),'(2a,i10.10)') |
write(fnamegeneric(1:80),'(2a,i10.10)') |
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& xx_tr1_file(1:il),'.',optimcycle |
& xx_tr1_file(1:il),'.',optimcycle |
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call active_read_xyz( fnametr1, tmpfld3d, 1, |
call active_read_xyz_loc( fnamegeneric, tmpfld3d, 1, |
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& doglobalread, ladinit, optimcycle, |
& doglobalread, ladinit, optimcycle, |
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& mythid, xx_tr1_dummy ) |
& mythid, xx_tr1_dummy ) |
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do k = 1,nr |
do k = 1,nr |
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do j = jmin,jmax |
do j = jmin,jmax |
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do i = imin,imax |
do i = imin,imax |
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tr1(i,j,k,bi,bj) = tr1(i,j,k,bi,bj) + |
ptracer(i,j,k,bi,bj,1) = ptracer(i,j,k,bi,bj,1) + |
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& fac*tmpfld3d(i,j,k,bi,bj) |
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gsNm1(i,j,k,bi,bj) = gsNm1(i,j,k,bi,bj) + |
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& fac*tmpfld3d(i,j,k,bi,bj) |
& fac*tmpfld3d(i,j,k,bi,bj) |
180 |
enddo |
enddo |
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enddo |
enddo |
183 |
enddo |
enddo |
184 |
enddo |
enddo |
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#endif |
#endif |
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#endif |
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#ifdef ALLOW_SST0_CONTROL |
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c-- sst0. |
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il=ilnblnk( xx_sst_file ) |
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write(fnamegeneric(1:80),'(2a,i10.10)') |
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& xx_sst_file(1:il),'.',optimcycle |
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call active_read_xy_loc ( fnamegeneric, tmpfld2d, 1, |
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& doglobalread, ladinit, optimcycle, |
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& mythid, xx_sst_dummy ) |
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do bj = jtlo,jthi |
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do bi = itlo,ithi |
198 |
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do j = jmin,jmax |
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do i = imin,imax |
200 |
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cph sst(i,j,bi,bj) = sst(i,j,bi,bj) + tmpfld2d(i,j,bi,bj) |
201 |
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theta(i,j,1,bi,bj) = theta(i,j,1,bi,bj) |
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& + tmpfld2d(i,j,bi,bj) |
203 |
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enddo |
204 |
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enddo |
205 |
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enddo |
206 |
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enddo |
207 |
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#endif |
208 |
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209 |
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#ifdef ALLOW_SSS0_CONTROL |
210 |
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c-- sss0. |
211 |
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il=ilnblnk( xx_sss_file ) |
212 |
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write(fnamegeneric(1:80),'(2a,i10.10)') |
213 |
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& xx_sss_file(1:il),'.',optimcycle |
214 |
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call active_read_xy_loc ( fnamegeneric, tmpfld2d, 1, |
215 |
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& doglobalread, ladinit, optimcycle, |
216 |
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& mythid, xx_sss_dummy ) |
217 |
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do bj = jtlo,jthi |
218 |
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do bi = itlo,ithi |
219 |
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do j = jmin,jmax |
220 |
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do i = imin,imax |
221 |
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cph sss(i,j,bi,bj) = sss(i,j,bi,bj) + tmpfld2d(i,j,bi,bj) |
222 |
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salt(i,j,1,bi,bj) = salt(i,j,1,bi,bj) |
223 |
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& + tmpfld2d(i,j,bi,bj) |
224 |
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enddo |
225 |
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enddo |
226 |
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enddo |
227 |
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enddo |
228 |
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#endif |
229 |
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230 |
#ifdef ALLOW_DIFFKR_CONTROL |
#ifdef ALLOW_DIFFKR_CONTROL |
231 |
c-- diffkr. |
c-- diffkr. |
232 |
il=ilnblnk( xx_diffkr_file ) |
il=ilnblnk( xx_diffkr_file ) |
233 |
write(fnamediffkr(1:80),'(2a,i10.10)') |
write(fnamegeneric(1:80),'(2a,i10.10)') |
234 |
& xx_diffkr_file(1:il),'.',optimcycle |
& xx_diffkr_file(1:il),'.',optimcycle |
235 |
call active_read_xyz( fnamediffkr, tmpfld3d, 1, |
call active_read_xyz_loc( fnamegeneric, tmpfld3d, 1, |
236 |
& doglobalread, ladinit, optimcycle, |
& doglobalread, ladinit, optimcycle, |
237 |
& mythid, xx_diffkr_dummy ) |
& mythid, xx_diffkr_dummy ) |
238 |
do bj = jtlo,jthi |
do bj = jtlo,jthi |
252 |
#ifdef ALLOW_KAPGM_CONTROL |
#ifdef ALLOW_KAPGM_CONTROL |
253 |
c-- kapgm. |
c-- kapgm. |
254 |
il=ilnblnk( xx_kapgm_file ) |
il=ilnblnk( xx_kapgm_file ) |
255 |
write(fnamekapgm(1:80),'(2a,i10.10)') |
write(fnamegeneric(1:80),'(2a,i10.10)') |
256 |
& xx_kapgm_file(1:il),'.',optimcycle |
& xx_kapgm_file(1:il),'.',optimcycle |
257 |
call active_read_xyz( fnamekapgm, tmpfld3d, 1, |
call active_read_xyz_loc( fnamegeneric, tmpfld3d, 1, |
258 |
& doglobalread, ladinit, optimcycle, |
& doglobalread, ladinit, optimcycle, |
259 |
& mythid, xx_kapgm_dummy ) |
& mythid, xx_kapgm_dummy ) |
260 |
do bj = jtlo,jthi |
do bj = jtlo,jthi |
271 |
enddo |
enddo |
272 |
#endif |
#endif |
273 |
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274 |
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#ifdef ALLOW_EFLUXY0_CONTROL |
275 |
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c-- y-component EP-flux field. |
276 |
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il=ilnblnk( xx_efluxy_file ) |
277 |
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write(fnamegeneric(1:80),'(2a,i10.10)') |
278 |
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& xx_efluxy_file(1:il),'.',optimcycle |
279 |
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call active_read_xyz_loc( fnamegeneric, tmpfld3d, 1, |
280 |
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& doglobalread, ladinit, optimcycle, |
281 |
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& mythid, xx_efluxy_dummy ) |
282 |
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283 |
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do bj = jtlo,jthi |
284 |
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do bi = itlo,ithi |
285 |
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do k = 1,nr |
286 |
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do j = jmin,jmax |
287 |
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do i = imin,imax |
288 |
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EfluxY(i,j,k,bi,bj) = EfluxY(i,j,k,bi,bj) |
289 |
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& - fac*tmpfld3d(i,j,k,bi,bj) |
290 |
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& *maskS(i,j,k,bi,bj) |
291 |
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cph EfluxY(i,j,k,bi,bj) = EfluxY(i,j,k,bi,bj) |
292 |
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cph & - rSphere*cosFacU(J,bi,bj) |
293 |
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cph & *fac*tmpfld3d(i,j,k,bi,bj) |
294 |
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enddo |
295 |
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enddo |
296 |
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enddo |
297 |
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enddo |
298 |
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enddo |
299 |
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#endif |
300 |
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301 |
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#ifdef ALLOW_EFLUXP0_CONTROL |
302 |
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c-- p-component EP-flux field. |
303 |
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il=ilnblnk( xx_efluxp_file ) |
304 |
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write(fnamegeneric(1:80),'(2a,i10.10)') |
305 |
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& xx_efluxp_file(1:il),'.',optimcycle |
306 |
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call active_read_xyz_loc( fnamegeneric, tmpfld3d, 1, |
307 |
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& doglobalread, ladinit, optimcycle, |
308 |
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& mythid, xx_efluxp_dummy ) |
309 |
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310 |
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do bj = jtlo,jthi |
311 |
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do bi = itlo,ithi |
312 |
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do k = 1,nr |
313 |
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do j = jmin,jmax |
314 |
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do i = imin,imax |
315 |
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EfluxP(i,j,k,bi,bj) = EfluxP(i,j,k,bi,bj) |
316 |
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& + fCori(i,j,bi,bj) |
317 |
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& *fac*tmpfld3d(i,j,k,bi,bj) |
318 |
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& *hFacV(i,j,k,bi,bj) |
319 |
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cph EfluxP(i,j,k,bi,bj) = EfluxP(i,j,k,bi,bj) |
320 |
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cph & + fCori(i,j,bi,bj) |
321 |
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cph & *rSphere*cosFacU(J,bi,bj) |
322 |
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cph & *fac*tmpfld3d(i,j,k,bi,bj) |
323 |
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enddo |
324 |
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enddo |
325 |
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enddo |
326 |
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enddo |
327 |
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enddo |
328 |
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#endif |
329 |
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330 |
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#ifdef ALLOW_BOTTOMDRAG_CONTROL |
331 |
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c-- bottom drag |
332 |
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il=ilnblnk( xx_bottomdrag_file ) |
333 |
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write(fnamegeneric(1:80),'(2a,i10.10)') |
334 |
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& xx_bottomdrag_file(1:il),'.',optimcycle |
335 |
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call active_read_xy_loc ( fnamegeneric, tmpfld2d, 1, |
336 |
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& doglobalread, ladinit, optimcycle, |
337 |
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& mythid, xx_bottomdrag_dummy ) |
338 |
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do bj = jtlo,jthi |
339 |
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do bi = itlo,ithi |
340 |
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do j = jmin,jmax |
341 |
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do i = imin,imax |
342 |
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bottomdragfld(i,j,bi,bj) = bottomdragfld(i,j,bi,bj) |
343 |
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& + tmpfld2d(i,j,bi,bj) |
344 |
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enddo |
345 |
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enddo |
346 |
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enddo |
347 |
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enddo |
348 |
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#endif |
349 |
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350 |
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#ifdef ALLOW_EDTAUX_CONTROL |
351 |
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c-- zonal eddy stress : edtaux |
352 |
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il=ilnblnk( xx_edtaux_file ) |
353 |
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write(fnamegeneric(1:80),'(2a,i10.10)') |
354 |
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& xx_edtaux_file(1:il),'.',optimcycle |
355 |
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call active_read_xyz( fnamegeneric, tmpfld3d, 1, |
356 |
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& doglobalread, ladinit, optimcycle, |
357 |
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& mythid, xx_edtaux_dummy ) |
358 |
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do bj = jtlo,jthi |
359 |
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do bi = itlo,ithi |
360 |
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do k = 1,nr |
361 |
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do j = jmin,jmax |
362 |
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do i = imin,imax |
363 |
|
Eddytaux(i,j,k,bi,bj) = Eddytaux(i,j,k,bi,bj) + |
364 |
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& tmpfld3d(i,j,k,bi,bj) |
365 |
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enddo |
366 |
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enddo |
367 |
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enddo |
368 |
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enddo |
369 |
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enddo |
370 |
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#endif |
371 |
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372 |
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#ifdef ALLOW_EDTAUY_CONTROL |
373 |
|
c-- meridional eddy stress : edtauy |
374 |
|
il=ilnblnk( xx_edtauy_file ) |
375 |
|
write(fnamegeneric(1:80),'(2a,i10.10)') |
376 |
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& xx_edtauy_file(1:il),'.',optimcycle |
377 |
|
call active_read_xyz( fnamegeneric, tmpfld3d, 1, |
378 |
|
& doglobalread, ladinit, optimcycle, |
379 |
|
& mythid, xx_edtauy_dummy ) |
380 |
|
do bj = jtlo,jthi |
381 |
|
do bi = itlo,ithi |
382 |
|
do k = 1,nr |
383 |
|
do j = jmin,jmax |
384 |
|
do i = imin,imax |
385 |
|
Eddytauy(i,j,k,bi,bj) = Eddytauy(i,j,k,bi,bj) + |
386 |
|
& tmpfld3d(i,j,k,bi,bj) |
387 |
|
enddo |
388 |
|
enddo |
389 |
|
enddo |
390 |
|
enddo |
391 |
|
enddo |
392 |
|
#endif |
393 |
|
|
394 |
|
#ifdef ALLOW_UVEL0_CONTROL |
395 |
|
c-- initial zonal velocity |
396 |
|
il=ilnblnk( xx_uvel_file ) |
397 |
|
write(fnamegeneric(1:80),'(2a,i10.10)') |
398 |
|
& xx_uvel_file(1:il),'.',optimcycle |
399 |
|
call active_read_xyz( fnamegeneric, tmpfld3d, 1, |
400 |
|
& doglobalread, ladinit, optimcycle, |
401 |
|
& mythid, xx_uvel_dummy ) |
402 |
|
do bj = jtlo,jthi |
403 |
|
do bi = itlo,ithi |
404 |
|
do k = 1,nr |
405 |
|
do j = jmin,jmax |
406 |
|
do i = imin,imax |
407 |
|
uVel(i,j,k,bi,bj) = uVel(i,j,k,bi,bj) + |
408 |
|
& tmpfld3d(i,j,k,bi,bj) |
409 |
|
enddo |
410 |
|
enddo |
411 |
|
enddo |
412 |
|
enddo |
413 |
|
enddo |
414 |
|
#endif |
415 |
|
|
416 |
|
#ifdef ALLOW_VVEL0_CONTROL |
417 |
|
c-- initial merid. velocity |
418 |
|
il=ilnblnk( xx_vvel_file ) |
419 |
|
write(fnamegeneric(1:80),'(2a,i10.10)') |
420 |
|
& xx_vvel_file(1:il),'.',optimcycle |
421 |
|
call active_read_xyz( fnamegeneric, tmpfld3d, 1, |
422 |
|
& doglobalread, ladinit, optimcycle, |
423 |
|
& mythid, xx_vvel_dummy ) |
424 |
|
do bj = jtlo,jthi |
425 |
|
do bi = itlo,ithi |
426 |
|
do k = 1,nr |
427 |
|
do j = jmin,jmax |
428 |
|
do i = imin,imax |
429 |
|
vVel(i,j,k,bi,bj) = vVel(i,j,k,bi,bj) + |
430 |
|
& tmpfld3d(i,j,k,bi,bj) |
431 |
|
enddo |
432 |
|
enddo |
433 |
|
enddo |
434 |
|
enddo |
435 |
|
enddo |
436 |
|
#endif |
437 |
|
|
438 |
|
#ifdef ALLOW_ETAN0_CONTROL |
439 |
|
c-- initial Eta. |
440 |
|
il=ilnblnk( xx_etan_file ) |
441 |
|
write(fnamegeneric(1:80),'(2a,i10.10)') |
442 |
|
& xx_etan_file(1:il),'.',optimcycle |
443 |
|
call active_read_xy_loc ( fnamegeneric, tmpfld2d, 1, |
444 |
|
& doglobalread, ladinit, optimcycle, |
445 |
|
& mythid, xx_etan_dummy ) |
446 |
|
do bj = jtlo,jthi |
447 |
|
do bi = itlo,ithi |
448 |
|
do j = jmin,jmax |
449 |
|
do i = imin,imax |
450 |
|
etaN(i,j,bi,bj) = etaN(i,j,bi,bj) + tmpfld2d(i,j,bi,bj) |
451 |
|
enddo |
452 |
|
enddo |
453 |
|
enddo |
454 |
|
enddo |
455 |
|
#endif |
456 |
|
|
457 |
|
#ifdef ALLOW_RELAXSST_CONTROL |
458 |
|
c-- SST relaxation coefficient. |
459 |
|
il=ilnblnk( xx_relaxsst_file ) |
460 |
|
write(fnamegeneric(1:80),'(2a,i10.10)') |
461 |
|
& xx_relaxsst_file(1:il),'.',optimcycle |
462 |
|
call active_read_xy_loc ( fnamegeneric, tmpfld2d, 1, |
463 |
|
& doglobalread, ladinit, optimcycle, |
464 |
|
& mythid, xx_relaxsst_dummy ) |
465 |
|
do bj = jtlo,jthi |
466 |
|
do bi = itlo,ithi |
467 |
|
do j = jmin,jmax |
468 |
|
do i = imin,imax |
469 |
|
lambdaThetaClimRelax(i,j,bi,bj) = |
470 |
|
& lambdaThetaClimRelax(i,j,bi,bj) |
471 |
|
& + tmpfld2d(i,j,bi,bj) |
472 |
|
enddo |
473 |
|
enddo |
474 |
|
enddo |
475 |
|
enddo |
476 |
|
#endif |
477 |
|
|
478 |
|
#ifdef ALLOW_RELAXSSS_CONTROL |
479 |
|
c-- SSS relaxation coefficient. |
480 |
|
il=ilnblnk( xx_relaxsss_file ) |
481 |
|
write(fnamegeneric(1:80),'(2a,i10.10)') |
482 |
|
& xx_relaxsss_file(1:il),'.',optimcycle |
483 |
|
call active_read_xy_loc ( fnamegeneric, tmpfld2d, 1, |
484 |
|
& doglobalread, ladinit, optimcycle, |
485 |
|
& mythid, xx_relaxsss_dummy ) |
486 |
|
do bj = jtlo,jthi |
487 |
|
do bi = itlo,ithi |
488 |
|
do j = jmin,jmax |
489 |
|
do i = imin,imax |
490 |
|
lambdaSaltClimRelax(i,j,bi,bj) = |
491 |
|
& lambdaSaltClimRelax(i,j,bi,bj) |
492 |
|
& + tmpfld2d(i,j,bi,bj) |
493 |
|
enddo |
494 |
|
enddo |
495 |
|
enddo |
496 |
|
enddo |
497 |
|
#endif |
498 |
|
|
499 |
c-- Update the tile edges. |
c-- Update the tile edges. |
500 |
|
|
501 |
#ifdef ALLOW_THETA0_CONTROL |
#if (defined (ALLOW_THETA0_CONTROL) || defined (ALLOW_SST0_CONTROL)) |
502 |
_EXCH_XYZ_R8( theta, mythid ) |
_EXCH_XYZ_R8( theta, mythid ) |
|
_EXCH_XYZ_R8( gtNm1, mythid ) |
|
503 |
#endif |
#endif |
504 |
#ifdef ALLOW_SALT0_CONTROL |
#if (defined (ALLOW_SALT0_CONTROL) || defined (ALLOW_SSS0_CONTROL)) |
505 |
_EXCH_XYZ_R8( salt, mythid ) |
_EXCH_XYZ_R8( salt, mythid ) |
|
_EXCH_XYZ_R8( gsNm1, mythid ) |
|
506 |
#endif |
#endif |
507 |
#ifdef ALLOW_TR10_CONTROL |
#ifdef ALLOW_TR10_CONTROL |
508 |
_EXCH_XYZ_R8( tr1, mythid ) |
#ifdef ALLOW_PTRACERS |
509 |
_EXCH_XYZ_R8( gTr1Nm1, mythid ) |
_EXCH_XYZ_R8(pTracer(1-Olx,1-Oly,1,1,1,1),myThid) |
510 |
|
#endif |
511 |
#endif |
#endif |
512 |
#ifdef ALLOW_DIFFKR_CONTROL |
#ifdef ALLOW_DIFFKR_CONTROL |
513 |
_EXCH_XYZ_R8( diffkr, mythid) |
_EXCH_XYZ_R8( diffkr, mythid) |
515 |
#ifdef ALLOW_KAPGM_CONTROL |
#ifdef ALLOW_KAPGM_CONTROL |
516 |
_EXCH_XYZ_R8( kapgm, mythid) |
_EXCH_XYZ_R8( kapgm, mythid) |
517 |
#endif |
#endif |
518 |
|
#ifdef ALLOW_EFLUXY0_CONTROL |
519 |
|
_EXCH_XYZ_R8( EfluxY, mythid ) |
520 |
|
#endif |
521 |
|
#ifdef ALLOW_EFLUXP0_CONTROL |
522 |
|
_EXCH_XYZ_R8( EfluxP, mythid ) |
523 |
|
#endif |
524 |
|
#ifdef ALLOW_BOTTOMDRAG_CONTROL |
525 |
|
_EXCH_XY_R8( bottomdragfld, mythid ) |
526 |
|
#endif |
527 |
|
|
528 |
|
#if (defined (ALLOW_EDTAUX_CONTROL) && defined (ALLOW_EDTAUY_CONTROL)) |
529 |
|
CALL EXCH_UV_XYZ_RS(Eddytaux,Eddytauy,.TRUE.,myThid) |
530 |
|
#elif (defined (ALLOW_EDTAUX_CONTROL) || defined (ALLOW_EDTAUY_CONTROL)) |
531 |
|
STOP 'ctrl_map_forcing: need BOTH ALLOW_EDTAU[X,Y]_CONTROL' |
532 |
|
#endif |
533 |
|
|
534 |
|
#ifdef ALLOW_UVEL0_CONTROL |
535 |
|
_EXCH_XYZ_R8( uVel, mythid) |
536 |
|
#endif |
537 |
|
|
538 |
|
#ifdef ALLOW_VVEL0_CONTROL |
539 |
|
_EXCH_XYZ_R8( vVel, mythid) |
540 |
|
#endif |
541 |
|
|
542 |
|
#ifdef ALLOW_ETAN0_CONTROL |
543 |
|
_EXCH_XY_R8( etaN, mythid ) |
544 |
|
#endif |
545 |
|
|
546 |
|
#ifdef ALLOW_RELAXSST_CONTROL |
547 |
|
_EXCH_XY_R4( lambdaThetaClimRelax, mythid ) |
548 |
|
#endif |
549 |
|
|
550 |
|
#ifdef ALLOW_RELAXSSS_CONTROL |
551 |
|
_EXCH_XY_R4( lambdaThetaClimRelax, mythid ) |
552 |
|
#endif |
553 |
|
|
554 |
return |
return |
555 |
end |
end |