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Contents of /trunk/Sources/phylmd/Interface_surf/fonte_neige.f

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Revision 207 - (show annotations)
Thu Sep 1 10:30:53 2016 UTC (7 years, 8 months ago) by guez
File size: 5743 byte(s)
New philosophy on compiler options.

Removed source code for thermcep = f. (Not used in LMDZ either.)

1 module fonte_neige_m
2
3 implicit none
4
5 contains
6
7 SUBROUTINE fonte_neige(nisurf, dtime, tsurf, p1lay, beta, coef1lay, ps, &
8 precip_rain, precip_snow, snow, qsol, t1lay, q1lay, u1lay, v1lay, &
9 petAcoef, peqAcoef, petBcoef, peqBcoef, tsurf_new, evap, fqcalving, &
10 ffonte, run_off_lic_0)
11
12 ! Routine de traitement de la fonte de la neige dans le cas du traitement
13 ! de sol simplifi\'e
14
15 ! Laurent Fairhead, March, 2001
16
17 USE fcttre, ONLY: foeew, qsatl, qsats
18 USE indicesol, ONLY: epsfra, is_lic, is_sic, is_ter
19 USE interface_surf, ONLY: run_off_lic, tau_calv
20 use nr_util, only: assert_eq
21 USE suphec_m, ONLY: rcpd, rday, retv, rlmlt, rlstt, rlvtt, rtt
22 USE yoethf_m, ONLY: r2es, r5ies, r5les, rvtmp2
23
24 integer, intent(IN):: nisurf ! surface \`a traiter
25 real, intent(IN):: dtime ! pas de temps de la physique (en s)
26 real, intent(IN):: tsurf(:) ! (knon) temperature de surface
27 real, intent(IN):: p1lay(:) ! (knon) pression 1er niveau (milieu de couche)
28 real, intent(IN):: beta(:) ! (knon) evap reelle
29 real, intent(IN):: coef1lay(:) ! (knon) coefficient d'echange
30 real, intent(IN):: ps(:) ! (knon) pression au sol
31
32 real, intent(IN):: precip_rain(:) ! (knon)
33 ! precipitation, liquid water mass flux (kg / m2 / s), positive down
34
35 real, intent(IN):: precip_snow(:) ! (knon)
36 ! precipitation, solid water mass flux (kg / m2 / s), positive down
37
38 real, intent(INOUT):: snow(:) ! (knon)
39 ! column-density of mass of snow, in kg m-2
40
41 real, intent(INOUT):: qsol(:) ! (knon)
42 ! column-density of water in soil, in kg m-2
43
44 real, intent(IN):: t1lay(:) ! (knon)
45 real, intent(IN):: q1lay(:) ! (knon)
46 real, intent(IN):: u1lay(:), v1lay(:) ! (knon)
47
48 real, intent(IN):: petAcoef(:), peqAcoef(:) ! (knon)
49 ! coefficients A de la r\'esolution de la couche limite pour t et q
50
51 real, intent(IN):: petBcoef(:), peqBcoef(:) ! (knon)
52 ! coefficients B de la r\'esolution de la couche limite pour t et q
53
54 real, intent(INOUT):: tsurf_new(:) ! (knon) temp\'erature au sol
55 real, intent(IN):: evap(:) ! (knon)
56
57 real, intent(OUT):: fqcalving(:) ! (knon)
58 ! flux d'eau "perdue" par la surface et n\'ecessaire pour limiter la
59 ! hauteur de neige, en kg / m2 / s
60
61 real, intent(OUT):: ffonte(:) ! (knon)
62 ! flux thermique utilis\'é pour fondre la neige
63
64 real, intent(INOUT):: run_off_lic_0(:) ! (knon)
65 ! run off glacier du pas de temps pr\'ecedent
66
67 ! Local:
68
69 integer knon ! nombre de points \`a traiter
70 real, parameter:: snow_max=3000.
71 ! Masse maximum de neige (kg / m2). Au dessus de ce seuil, la neige
72 ! en exces "s'ecoule" (calving)
73
74 integer i
75 logical zdelta
76 real zcvm5, zx_qs, zcor
77 real fq_fonte
78 REAL bil_eau_s(size(ps)) ! in kg m-2
79 real snow_evap(size(ps)) ! in kg m-2 s-1
80 REAL, parameter:: chasno = 3.334E5 / (2.3867E6*0.15)
81 REAL, parameter:: chaice = 3.334E5 / (2.3867E6*0.15)
82 real, parameter:: max_eau_sol = 150. ! in kg m-2
83 real coeff_rel
84
85 !--------------------------------------------------------------------
86
87 knon = assert_eq((/size(tsurf), size(p1lay), size(beta), size(coef1lay), &
88 size(ps), size(precip_rain), size(precip_snow), size(snow), &
89 size(qsol), size(t1lay), size(q1lay), size(u1lay), size(v1lay), &
90 size(petAcoef), size(peqAcoef), size(petBcoef), size(peqBcoef), &
91 size(tsurf_new), size(evap), size(fqcalving), size(ffonte), &
92 size(run_off_lic_0)/), "fonte_neige knon")
93
94 ! Initialisations
95 coeff_rel = dtime / (tau_calv * rday)
96 bil_eau_s = 0.
97 DO i = 1, knon
98 zdelta= rtt >= tsurf(i)
99 zcvm5 = merge(R5IES*RLSTT, R5LES*RLVTT, zdelta)
100 zcvm5 = zcvm5 / RCPD / (1. + RVTMP2*q1lay(i))
101 zx_qs= r2es * FOEEW(tsurf(i), zdelta) / ps(i)
102 zx_qs=MIN(0.5, zx_qs)
103 zcor=1. / (1. - retv*zx_qs)
104 zx_qs=zx_qs*zcor
105 ENDDO
106
107 ! Calcul de la temperature de surface
108
109 WHERE (precip_snow > 0.) snow = snow + precip_snow * dtime
110
111 WHERE (evap > 0.)
112 snow_evap = MIN(snow / dtime, evap)
113 snow = snow - snow_evap * dtime
114 snow = MAX(0., snow)
115 elsewhere
116 snow_evap = 0.
117 end where
118
119 bil_eau_s = precip_rain * dtime - (evap(:knon) - snow_evap(:knon)) * dtime
120
121 ! Y a-t-il fonte de neige ?
122
123 ffonte=0.
124 do i = 1, knon
125 if ((snow(i) > epsfra .OR. nisurf == is_sic &
126 .OR. nisurf == is_lic) .AND. tsurf_new(i) >= RTT) then
127 fq_fonte = MIN(MAX((tsurf_new(i) - RTT) / chasno, 0.), snow(i))
128 ffonte(i) = fq_fonte * RLMLT / dtime
129 snow(i) = max(0., snow(i) - fq_fonte)
130 bil_eau_s(i) = bil_eau_s(i) + fq_fonte
131 tsurf_new(i) = tsurf_new(i) - fq_fonte * chasno
132 !IM cf JLD/ GKtest fonte aussi pour la glace
133 IF (nisurf == is_sic .OR. nisurf == is_lic) THEN
134 fq_fonte = MAX((tsurf_new(i) - RTT) / chaice, 0.)
135 ffonte(i) = ffonte(i) + fq_fonte * RLMLT / dtime
136 bil_eau_s(i) = bil_eau_s(i) + fq_fonte
137 tsurf_new(i) = RTT
138 ENDIF
139 endif
140
141 ! S'il y a une hauteur trop importante de neige, elle s'\'ecoule
142 fqcalving(i) = max(0., snow(i) - snow_max) / dtime
143 snow(i)=min(snow(i), snow_max)
144
145 IF (nisurf == is_ter) then
146 qsol(i) = qsol(i) + bil_eau_s(i)
147 qsol(i) = MIN(qsol(i), max_eau_sol)
148 else if (nisurf == is_lic) then
149 run_off_lic(i) = (coeff_rel * fqcalving(i)) + &
150 (1. - coeff_rel) * run_off_lic_0(i)
151 run_off_lic_0(i) = run_off_lic(i)
152 run_off_lic(i) = run_off_lic(i) + bil_eau_s(i) / dtime
153 endif
154 enddo
155
156 END SUBROUTINE fonte_neige
157
158 end module fonte_neige_m

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