/[lmdze]/trunk/phylmd/Interface_surf/calcul_fluxs.f
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Contents of /trunk/phylmd/Interface_surf/calcul_fluxs.f

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Revision 299 - (show annotations)
Thu Aug 2 14:27:11 2018 UTC (5 years, 11 months ago) by guez
File size: 4220 byte(s)
Use directly dtphys from module comconst when possible instead of
having it trickle down through procedure arguments.

1 module calcul_fluxs_m
2
3 implicit none
4
5 contains
6
7 SUBROUTINE calcul_fluxs(tsurf, p1lay, cal, beta, coef1lay, ps, qsurf, &
8 radsol, dif_grnd, t1lay, q1lay, u1lay, v1lay, tAcoef, qAcoef, tBcoef, &
9 qBcoef, tsurf_new, evap, fluxlat, flux_t, dflux_s, dflux_l)
10
11 ! Cette routine calcule les flux en h et q à l'interface et une
12 ! température de surface.
13
14 ! L. Fairhead, April 2000
15
16 ! Note that, if cal = 0, beta = 1 and dif_grnd = 0, then tsurf_new
17 ! = tsurf and qsurf = qsat.
18
19 ! Libraries:
20 use nr_util, only: assert_eq
21
22 use comconst, only: dtphys
23 USE fcttre, ONLY: foede, foeew
24 USE suphec_m, ONLY: rcpd, rd, retv, rlstt, rlvtt, rtt
25 USE yoethf_m, ONLY: r2es, r5ies, r5les, rvtmp2
26
27 real, intent(IN):: tsurf(:) ! (knon) température de surface
28
29 real, intent(IN):: p1lay(:) ! (knon)
30 ! pression première couche (milieu de couche)
31
32 real, intent(IN):: cal(:) ! (knon) capacité calorifique du sol
33 real, intent(IN):: beta(:) ! (knon) évaporation réelle
34 real, intent(IN):: coef1lay(:) ! (knon) coefficient d'échange
35 real, intent(IN):: ps(:) ! (knon) pression au sol
36 real, intent(OUT):: qsurf(:) ! (knon) humidité de l'air au-dessus du sol
37
38 real, intent(IN):: radsol(:) ! (knon)
39 ! rayonnement net au sol (longwave + shortwave)
40
41 real, intent(IN):: dif_grnd(:) ! (knon)
42 ! coefficient de diffusion vers le sol profond
43
44 real, intent(IN):: t1lay(:), q1lay(:), u1lay(:), v1lay(:) ! (knon)
45
46 real, intent(IN):: tAcoef(:), qAcoef(:) ! (knon)
47 ! coefficients A de la résolution de la couche limite pour T et q
48
49 real, intent(IN):: tBcoef(:), qBcoef(:) ! (knon)
50 ! coefficients B de la résolution de la couche limite pour t et q
51
52 real, intent(OUT):: tsurf_new(:) ! (knon) température au sol
53 real, intent(OUT):: evap(:) ! (knon)
54
55 real, intent(OUT):: fluxlat(:), flux_t(:) ! (knon)
56 ! flux de chaleurs latente et sensible
57
58 real, intent(OUT):: dflux_s(:), dflux_l(:) ! (knon)
59 ! dérivées des flux de chaleurs sensible et latente par rapport à
60 ! Ts (W m-2 K-1)
61
62 ! Local:
63 integer i
64 integer knon ! nombre de points \`a traiter
65 real, dimension(size(ps)):: mh, oh, mq, nq, oq, dq_s_dt, coef ! (knon)
66 real qsat(size(ps)) ! (knon) mass fraction
67 real sl(size(ps)) ! (knon) chaleur latente d'évaporation ou de sublimation
68 logical delta
69 real zcor
70 real, parameter:: t_grnd = 271.35
71
72 !---------------------------------------------------------------------
73
74 knon = assert_eq([size(tsurf), size(p1lay), size(cal), size(beta), &
75 size(coef1lay), size(ps), size(qsurf), size(radsol), size(dif_grnd), &
76 size(t1lay), size(q1lay), size(u1lay), size(v1lay), size(tAcoef), &
77 size(qAcoef), size(tBcoef), size(qBcoef), size(tsurf_new), &
78 size(evap), size(fluxlat), size(flux_t), size(dflux_s), &
79 size(dflux_l)], "calcul_fluxs knon")
80
81 ! Traitement de l'humidité du sol
82
83 DO i = 1, knon
84 delta = rtt >= tsurf(i)
85 qsat(i) = MIN(0.5, r2es * FOEEW(tsurf(i), delta) / ps(i))
86 zcor = 1. / (1. - retv * qsat(i))
87 qsat(i) = qsat(i) * zcor
88 dq_s_dt(i) = RCPD * FOEDE(tsurf(i), delta, merge(R5IES * RLSTT, &
89 R5LES * RLVTT, delta) / RCPD / (1. + RVTMP2 * q1lay(i)), &
90 qsat(i), zcor) / RLVTT
91 ENDDO
92
93 coef = coef1lay * (1. + SQRT(u1lay**2 + v1lay**2)) * p1lay / (RD * t1lay)
94 sl = merge(RLSTT, RLVTT, tsurf < RTT)
95
96 ! Q
97 oq = 1. - beta * coef * qBcoef * dtphys
98 mq = beta * coef * (qAcoef - qsat + dq_s_dt * tsurf) / oq
99 nq = - beta * coef * dq_s_dt / oq
100
101 ! H
102 oh = 1. - coef * tBcoef * dtphys
103 mh = coef * tAcoef / oh
104 dflux_s = - coef * RCPD / oh
105
106 tsurf_new = (tsurf + cal / RCPD * dtphys * (radsol + mh + sl * mq) &
107 + dif_grnd * t_grnd * dtphys) / (1. - dtphys * cal / RCPD * (dflux_s &
108 + sl * nq) + dtphys * dif_grnd)
109 evap = - mq - nq * tsurf_new
110 fluxlat = - evap * sl
111 flux_t = mh + dflux_s * tsurf_new
112 dflux_l = sl * nq
113 qsurf = (qAcoef - qBcoef * evap * dtphys) * (1. - beta) + beta * (qsat &
114 + dq_s_dt * (tsurf_new - tsurf))
115
116 END SUBROUTINE calcul_fluxs
117
118 end module calcul_fluxs_m

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