/[lmdze]/trunk/phylmd/diagcld1.f90
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Contents of /trunk/phylmd/diagcld1.f90

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Revision 328 - (show annotations)
Thu Jun 13 14:40:06 2019 UTC (4 years, 11 months ago) by guez
File size: 2513 byte(s)
Change all `.f` suffixes to `.f90`. (The opposite was done in revision
82.)  Because of change of philosopy in GNUmakefile: we already had a
rewritten rule for `.f`, so it does not make the makefile longer to
replace it by a rule for `.f90`. And it spares us options of
makedepf90 and of the compiler. Also we prepare the way for a simpler
`CMakeLists.txt`.

1 SUBROUTINE diagcld1(paprs,pplay,rain,snow,kbot,ktop, &
2 diafra,dialiq)
3 use dimensions
4 use dimphy
5 use SUPHEC_M
6 IMPLICIT none
7 !
8 ! Laurent Li (LMD/CNRS), le 12 octobre 1998
9 ! (adaptation du code ECMWF)
10 !
11 ! Dans certains cas, le schema pronostique des nuages n'est
12 ! pas suffisament performant. On a donc besoin de diagnostiquer
13 ! ces nuages. Je dois avouer que c'est une frustration.
14 !
15 !
16 ! Arguments d'entree:
17 REAL, intent(in):: paprs(klon,klev+1) ! pression (Pa) a inter-couche
18 REAL, intent(in):: pplay(klon,klev) ! pression (Pa) au milieu de couche
19 REAL rain(klon) ! pluie convective (kg/m2/s)
20 REAL snow(klon) ! neige convective (kg/m2/s)
21 INTEGER ktop(klon) ! sommet de la convection
22 INTEGER kbot(klon) ! bas de la convection
23 !
24 ! Arguments de sortie:
25 REAL diafra(klon,klev) ! fraction nuageuse diagnostiquee
26 REAL dialiq(klon,klev) ! eau liquide nuageuse
27 !
28 ! Constantes ajustables:
29 REAL CANVA, CANVB, CANVH
30 PARAMETER (CANVA=2.0, CANVB=0.3, CANVH=0.4)
31 REAL CCA, CCB, CCC
32 PARAMETER (CCA=0.125, CCB=1.5, CCC=0.8)
33 REAL CCFCT, CCSCAL
34 PARAMETER (CCFCT=0.400)
35 PARAMETER (CCSCAL=1.0E+11)
36 REAL CETAHB
37 PARAMETER (CETAHB=0.45)
38 REAL CCLWMR
39 PARAMETER (CCLWMR=1.E-04)
40 REAL ZEPSCR
41 PARAMETER (ZEPSCR=1.0E-10)
42 !
43 ! Variables locales:
44 INTEGER i, k
45 REAL zcc(klon)
46 !
47 ! Initialisation:
48 !
49 DO k = 1, klev
50 DO i = 1, klon
51 diafra(i,k) = 0.0
52 dialiq(i,k) = 0.0
53 ENDDO
54 ENDDO
55 !
56 DO i = 1, klon ! Calculer la fraction nuageuse
57 zcc(i) = 0.0
58 IF((rain(i)+snow(i)).GT.0.) THEN
59 zcc(i)= CCA * LOG(MAX(ZEPSCR,(rain(i)+snow(i))*CCSCAL))-CCB
60 zcc(i)= MIN(CCC,MAX(0.0,zcc(i)))
61 ENDIF
62 ENDDO
63 !
64 DO i = 1, klon ! pour traiter les enclumes
65 diafra(i,ktop(i)) = MAX(diafra(i,ktop(i)),zcc(i)*CCFCT)
66 IF ((zcc(i).GE.CANVH) .AND. &
67 (pplay(i,ktop(i)).LE.CETAHB*paprs(i,1))) &
68 diafra(i,ktop(i)) = MAX(diafra(i,ktop(i)), &
69 MAX(zcc(i)*CCFCT,CANVA*(zcc(i)-CANVB)))
70 dialiq(i,ktop(i))=CCLWMR*diafra(i,ktop(i))
71 ENDDO
72 !
73 DO k = 1, klev ! nuages convectifs (sauf enclumes)
74 DO i = 1, klon
75 IF (k.LT.ktop(i) .AND. k.GE.kbot(i)) THEN
76 diafra(i,k)=MAX(diafra(i,k),zcc(i)*CCFCT)
77 dialiq(i,k)=CCLWMR*diafra(i,k)
78 ENDIF
79 ENDDO
80 ENDDO
81 !
82 RETURN
83 END

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