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Contents of /trunk/phylmd/clcdrag.f

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Revision 254 - (show annotations)
Mon Feb 5 10:39:38 2018 UTC (6 years, 3 months ago) by guez
File size: 3195 byte(s)
Move Sources/* to root directory.
1 module clcdrag_m
2
3 IMPLICIT NONE
4
5 contains
6
7 SUBROUTINE clcdrag(nsrf, u, v, t, q, zgeop, ts, qsurf, rugos, pcfm, pcfh)
8
9 ! From LMDZ4/libf/phylmd/clcdrag.F90, version 1.1.1.1, 2004/05/19 12:53:07
10
11 ! Objet : calcul des cdrags pour le moment (pcfm) et les flux de
12 ! chaleur sensible et latente (pcfh).
13 ! Calculer le frottement au sol (Cdrag)
14
15 USE indicesol, ONLY: is_oce
16 use nr_util, only: assert_eq
17 USE suphec_m, ONLY: rcpd, retv, rg
18 USE yoethf_m, ONLY: rvtmp2
19
20 INTEGER, intent(in):: nsrf ! indice pour le type de surface
21
22 REAL, intent(in):: u(:), v(:) ! (knon) vent au 1er niveau du mod\`ele
23
24 REAL, intent(in):: t(:) ! (knon)
25 ! temperature de l'air au 1er niveau du modele
26
27 REAL, intent(in):: q(:) ! (knon) ! humidite de l'air au 1er niveau du modele
28 REAL, intent(in):: zgeop(:) ! (knon) géopotentiel au 1er niveau du modèle
29 REAL, intent(in):: ts(:) ! (knon) temperature de l'air a la surface
30 REAL, intent(in):: qsurf(:) ! (knon) humidite de l'air a la surface
31 REAL, intent(in):: rugos(:) ! (knon) rugosit\'e
32 REAL, intent(out):: pcfm(:) ! (knon) cdrag pour le moment
33
34 REAL, intent(out):: pcfh(:) ! (knon)
35 ! cdrag pour les flux de chaleur latente et sensible
36
37 ! Local:
38
39 ! Quelques constantes et options:
40 REAL, PARAMETER:: ckap=0.40, cb=5.0, cc=5.0, cd=5.0, cepdu2=0.1**2
41
42 INTEGER:: i, knon
43 REAL:: zdu2, ztsolv, ztvd, zscf
44 REAL:: zucf, zcr
45 REAL:: friv, frih
46 REAL, dimension(size(u)):: zcfm1, zcfm2
47 REAL, dimension(size(u)):: zcfh1, zcfh2
48 REAL, dimension(size(u)):: zcdn
49 REAL, dimension(size(u)):: zri
50
51 !--------------------------------------------------------------------
52
53 knon = assert_eq([size(u), size(v), size(t), size(q), size(zgeop), &
54 size(ts), size(qsurf), size(rugos), size(pcfm), size(pcfh), &
55 size(pcfm)], "clcdrag knon")
56
57 DO i = 1, knon
58 zdu2 = max(cepdu2,u(i)**2+v(i)**2)
59 ztsolv = ts(i) * (1.0+RETV*qsurf(i))
60 ztvd = (t(i)+zgeop(i)/RCPD/(1.+RVTMP2*q(i))) &
61 *(1.+RETV*q(i))
62 zri(i) = zgeop(i)*(ztvd-ztsolv)/(zdu2*ztvd)
63 zcdn(i) = (ckap/log(1.+zgeop(i)/(RG*rugos(i))))**2
64
65 IF (zri(i) .gt. 0.) THEN
66 ! situation stable
67 zri(i) = min(20.,zri(i))
68 zscf = SQRT(1.+cd*ABS(zri(i)))
69 FRIV = AMAX1(1. / (1.+2.*CB*zri(i)/ZSCF), 0.1)
70 zcfm1(i) = zcdn(i) * FRIV
71 FRIH = AMAX1(1./ (1.+3.*CB*zri(i)*ZSCF), 0.1 )
72 zcfh1(i) = 0.8 * zcdn(i) * FRIH
73 pcfm(i) = zcfm1(i)
74 pcfh(i) = zcfh1(i)
75 ELSE
76 ! situation instable
77 zucf = 1./(1.+3.0*cb*cc*zcdn(i)*SQRT(ABS(zri(i)) &
78 *(1.0+zgeop(i)/(RG*rugos(i)))))
79 zcfm2(i) = zcdn(i)*amax1((1.-2.0*cb*zri(i)*zucf),0.1)
80 zcfh2(i) = 0.8 * zcdn(i)*amax1((1.-3.0*cb*zri(i)*zucf),0.1)
81 pcfm(i) = zcfm2(i)
82 pcfh(i) = zcfh2(i)
83 zcr = (0.0016/(zcdn(i)*SQRT(zdu2)))*ABS(ztvd-ztsolv)**(1./3.)
84 IF(nsrf == is_oce) pcfh(i) = 0.8 * zcdn(i) &
85 * (1. + zcr**1.25)**(1. / 1.25)
86 ENDIF
87 END DO
88
89 END SUBROUTINE clcdrag
90
91 end module clcdrag_m

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