source: LMDZ5/branches/AI-cosp/libf/dyn3dmem/tourpot_loc.F90 @ 3485

Last change on this file since 3485 was 2336, checked in by dcugnet, 9 years ago
  • Add parallel capability for ce0l.
  • Small bug in grid_noro fixed (smoothed topography was used instead of unsmoothed one for geopotential computation at north pole).
  • Removed average of mass at poles in etat0dyn_netcdf after start_init_dyn => different results in the zoomed grid case.
  • ok_etat0=n and ok_limit=y combination now works fine (if no initial state is needed, but only limit.nc file). This required:
    • to move grid_noro0 and start_init_noro0 subroutines from etat0dyn_netcdf.F90 to limit_netcdf.F90
    • to create init_ssrf_m.F90 file, so that sub-surfaces can be initialized from limit_netcdf.F90 without any etat0*_netcdf routines call).
  • Simplified somehow the corresponding code, in particular: 1) removed obsolete flags "oldice". 2) removed flag "ibar": barycentric interpolation is used everywhere (except in start_init_subsurf, still calling grille_m - to be changed soon). 3) removed useless CPP_PHY precompilation directives, considering the possibility to run ce0l without physics is useless (ce0l is dedicated to Earth physics).
  • Property copyright set to
    Name of program: LMDZ
    Creation date: 1984
    Version: LMDZ5
    License: CeCILL version 2
    Holder: Laboratoire de m\'et\'eorologie dynamique, CNRS, UMR 8539
    See the license file in the root directory
File size: 2.1 KB
Line 
1SUBROUTINE tourpot_loc ( vcov, ucov, massebxy, vorpot )
2!
3!-------------------------------------------------------------------------------
4! Authors: P. Le Van.
5!-------------------------------------------------------------------------------
6! Purpose: Compute potential vorticity.
7  USE parallel_lmdz
8  USE mod_filtreg_p
9  IMPLICIT NONE
10  include "dimensions.h"
11  include "paramet.h"
12  include "comgeom.h"
13  include "logic.h"
14!===============================================================================
15! Arguments:
16  REAL, INTENT(IN)  :: vcov    (ijb_v:ije_v,llm)
17  REAL, INTENT(IN)  :: ucov    (ijb_u:ije_u,llm)
18  REAL, INTENT(IN)  :: massebxy(ijb_v:ije_v,llm)
19  REAL, INTENT(OUT) :: vorpot  (ijb_v:ije_v,llm)
20!===============================================================================
21! Method used:
22!   vorpot = ( Filtre( d(vcov)/dx - d(ucov)/dy ) + fext ) /psbarxy
23!===============================================================================
24! Local variables:
25  INTEGER :: l, ij, ije, ijb, jje, jjb
26  REAL    :: rot(ijb_v:ije_v,llm)
27!===============================================================================
28
29  ijb=ij_begin-iip1
30  ije=ij_end
31  IF(pole_nord) ijb=ij_begin
32
33!--- Wind vorticity ; correction: rot(iip1,j,l) = rot(1,j,l)
34!$OMP DO SCHEDULE(STATIC,OMP_CHUNK)
35  DO l=1,llm
36    IF(pole_sud) ije=ij_end-iip1-1
37    DO ij=ijb,ije
38      rot(ij,l)=vcov(ij+1,l)-vcov(ij,l)+ucov(ij+iip1,l)-ucov(ij,l)
39    END DO
40    IF(pole_sud) ije=ij_end-iip1
41    DO ij=ijb+iip1-1,ije,iip1; rot(ij,l)=rot(ij-iim,l); END DO
42  END DO
43!$OMP END DO NOWAIT
44
45!--- Filter
46  jjb=jj_begin-1
47  jje=jj_end
48  IF(pole_nord) jjb=jjb+1
49  IF(pole_sud)  jje=jje-1
50  CALL filtreg_p(rot,jjb_v,jje_v,jjb,jje,jjm,llm,2,1,.FALSE.,1)
51
52!--- Potential vorticity ; correction: rot(iip1,j,l) = rot(1,j,l)
53!$OMP DO SCHEDULE(STATIC,OMP_CHUNK)
54  DO l=1,llm
55    IF(pole_sud) ije=ij_end-iip1-1
56    DO ij=ijb,ije
57      vorpot(ij,l)=(rot(ij,l)+fext(ij))/massebxy(ij,l)
58    END DO
59    IF(pole_sud) ije=ij_end-iip1
60    DO ij=ijb+iip1-1,ije,iip1; vorpot(ij,l)=vorpot(ij-iim,l); END DO
61  END DO
62!$OMP END DO NOWAIT
63
64END SUBROUTINE tourpot_loc
65
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