source: LMDZ5/trunk/libf/dyn3dpar/covnat_p.F @ 1994

Last change on this file since 1994 was 1907, checked in by lguez, 11 years ago

Added a copyright property to every file of the distribution, except
for the fcm files (which have their own copyright). Use svn propget on
a file to see the copyright. For instance:

$ svn propget copyright libf/phylmd/physiq.F90
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

Also added the files defining the CeCILL version 2 license, in French
and English, at the top of the LMDZ tree.

  • 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
  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 1.6 KB
RevLine 
[630]1!
2! $Header$
3!
4      SUBROUTINE covnat_p(klevel,ucov, vcov, unat, vnat )
[1823]5      USE parallel_lmdz
[630]6      IMPLICIT NONE
7
8c=======================================================================
9c
10c   Auteur:  F Hourdin Phu LeVan
11c   -------
12c
13c   Objet:
14c   ------
15c
16c  *********************************************************************
17c    calcul des compos. naturelles a partir des comp.covariantes
18c  ********************************************************************
19c
20c=======================================================================
21
22#include "dimensions.h"
23#include "paramet.h"
24#include "comgeom.h"
25
26      INTEGER klevel
27      REAL ucov( ip1jmp1,klevel ),  vcov( ip1jm,klevel )
28      REAL unat( ip1jmp1,klevel ), vnat( ip1jm,klevel )
29      INTEGER   l,ij
30      INTEGER :: ijb,ije
31     
32     
33      ijb=ij_begin
34      ije=ij_end
35     
36      if (pole_nord) then
37        DO l = 1,klevel
38           DO ij = 1, iip1
39              unat (ij,l) =0.
40           END DO
41        ENDDO
42      endif
43
44      if (pole_sud) then
45        DO l = 1,klevel
46           DO ij = ip1jm+1, ip1jmp1 
47            unat (ij,l) =0.
48           END DO
49        ENDDO
50      endif
51
52      ijb=ij_begin
53      ije=ij_end
54      if (pole_nord) ijb=ij_begin+iip1
55      if (pole_sud)  ije=ij_end-iip1
56     
57      DO l = 1,klevel
58         DO ij = ijb, ije
59            unat( ij,l ) = ucov( ij,l ) / cu(ij)
60         ENDDO
61      END DO
62
[1146]63      ijb=ij_begin-iip1
[630]64      ije=ij_end
[1146]65      if (pole_nord) ijb=ij_begin
[630]66      if (pole_sud)  ije=ij_end-iip1
67     
68      DO l = 1,klevel
[1000]69         DO ij = ijb,ije
[630]70            vnat( ij,l ) = vcov( ij,l ) / cv(ij)
71         ENDDO
72
73      ENDDO
74     
75      RETURN
76      END
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