/[lmdze]/trunk/Sources/phylmd/transp.f
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Annotation of /trunk/Sources/phylmd/transp.f

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Revision 81 - (hide annotations)
Wed Mar 5 14:38:41 2014 UTC (10 years, 2 months ago) by guez
Original Path: trunk/phylmd/transp.f90
File size: 1480 byte(s)
 Converted to free source form files which were still in fixed source
form. The conversion was done using the polish mode of the NAG Fortran
Compiler.

In addition to converting to free source form, the processing of the
files also:

-- indented the code (including comments);

-- set Fortran keywords to uppercase, and set all other identifiers
to lower case;

-- added qualifiers to end statements (for example "end subroutine
conflx", instead of "end");

-- changed the terminating statements of all DO loops so that each
loop ends with an ENDDO statement (instead of a labeled continue).

1 guez 81
2     ! $Header: /home/cvsroot/LMDZ4/libf/phylmd/transp.F,v 1.1.1.1 2004/05/19
3     ! 12:53:09 lmdzadmin Exp $
4    
5     SUBROUTINE transp(paprs, tsol, t, q, u, v, geom, vtran_e, vtran_q, utran_e, &
6     utran_q)
7    
8     USE dimens_m
9     USE dimphy
10     USE suphec_m
11     IMPLICIT NONE
12     ! ======================================================================
13     ! Auteur(s): Z.X.Li (LMD/CNRS)
14     ! Date: le 25 avril 1994
15     ! Objet: Calculer le transport de l'energie et de la vapeur d'eau
16     ! ======================================================================
17    
18    
19     REAL, INTENT (IN) :: paprs(klon, klev+1)
20     REAL tsol(klon)
21     REAL, INTENT (IN) :: t(klon, klev)
22     REAL q(klon, klev), u(klon, klev), v(klon, klev)
23     REAL utran_e(klon), utran_q(klon), vtran_e(klon), vtran_q(klon)
24    
25     INTEGER i, l
26     ! ------------------------------------------------------------------
27     REAL geom(klon, klev), e
28     ! ------------------------------------------------------------------
29     DO i = 1, klon
30     utran_e(i) = 0.0
31     utran_q(i) = 0.0
32     vtran_e(i) = 0.0
33     vtran_q(i) = 0.0
34     END DO
35    
36     DO l = 1, klev
37     DO i = 1, klon
38     e = rcpd*t(i, l) + rlvtt*q(i, l) + geom(i, l)
39     utran_e(i) = utran_e(i) + u(i, l)*e*(paprs(i,l)-paprs(i,l+1))/rg
40     utran_q(i) = utran_q(i) + u(i, l)*q(i, l)*(paprs(i,l)-paprs(i,l+1))/rg
41     vtran_e(i) = vtran_e(i) + v(i, l)*e*(paprs(i,l)-paprs(i,l+1))/rg
42     vtran_q(i) = vtran_q(i) + v(i, l)*q(i, l)*(paprs(i,l)-paprs(i,l+1))/rg
43     END DO
44     END DO
45    
46     RETURN
47     END SUBROUTINE transp

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