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Revision 38 - (hide annotations)
Thu Jan 6 17:52:19 2011 UTC (13 years, 4 months ago) by guez
Original Path: trunk/libf/phylmd/transp.f
File size: 1625 byte(s)
Extracted ASCII art from "inigeom" into a separate text file in the
documentation.

"test_disvert" now creates a separate file for layer thicknesses.

Moved variables from module "yomcst" to module "suphec_m" because this
is where those variables are defined. Kept in "yomcst" only parameters
of Earth orbit. Gave the attribute "parameter" to some variables of
module "suphec_m".

Variables of module "yoethf" were defined in procedure "suphec". Moved
these definitions to a new procedure "yoethf" in module "yoethf_m".

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

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