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Contents of /trunk/phylmd/Interface_surf/interfsurf_hq.f

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Revision 311 - (show annotations)
Mon Dec 3 17:52:21 2018 UTC (5 years, 5 months ago) by guez
File size: 8242 byte(s)
Move file cv_thermo.f to directory CV30_routines since it is only used
there. Rename module cv_thermo_m to cv_thermo.

Named constants instead of variables in module suphec_m.

Rename dummy argument spechum of procedure interfsurf_hq to q1lay
(same as corresponding dummy argument in calcul_fluxs).

1 module interfsurf_hq_m
2
3 implicit none
4
5 contains
6
7 SUBROUTINE interfsurf_hq(julien, mu0, nisurf, knindex, tsoil, qsol, u1lay, &
8 v1lay, temp_air, q1lay, cdragh, tAcoef, qAcoef, tBcoef, qBcoef, &
9 rain_fall, snow_fall, rugos, rugoro, snow, qsurf, ts, p1lay, ps, &
10 radsol, evap, flux_t, fluxlat, dflux_l, dflux_s, tsurf_new, albedo, &
11 z0_new, pctsrf_new_sic, agesno, fqcalving, ffonte, run_off_lic_0, &
12 run_off_lic)
13
14 ! Cette routine sert d'aiguillage entre l'atmosph\`ere et la surface
15 ! en g\'en\'eral (sols continentaux, oc\'eans, glaces) pour les flux de
16 ! chaleur et d'humidit\'e.
17
18 ! Laurent Fairhead, February 2000
19
20 USE abort_gcm_m, ONLY: abort_gcm
21 use alboc_cd_m, only: alboc_cd
22 USE albsno_m, ONLY: albsno
23 USE calcul_fluxs_m, ONLY: calcul_fluxs
24 USE fonte_neige_m, ONLY: fonte_neige
25 USE indicesol, ONLY: epsfra, is_lic, is_oce, is_sic, is_ter
26 USE interfsur_lim_m, ONLY: interfsur_lim
27 use limit_read_sst_m, only: limit_read_sst
28 use soil_m, only: soil
29 USE suphec_m, ONLY: rcpd, rtt
30
31 integer, intent(IN):: julien ! jour dans l'annee en cours
32 real, intent(IN):: mu0(:) ! (knon) cosinus de l'angle solaire zenithal
33 integer, intent(IN):: nisurf ! index de la surface a traiter
34
35 integer, intent(in):: knindex(:) ! (knon)
36 ! index des points de la surface a traiter
37
38 REAL, intent(inout):: tsoil(:, :) ! (knon, nsoilmx)
39
40 REAL, intent(INOUT):: qsol(:) ! (knon)
41 ! column-density of water in soil, in kg m-2
42
43 real, intent(IN):: u1lay(:), v1lay(:) ! (knon) vitesse 1ere couche
44
45 real, intent(IN):: temp_air(:) ! (knon) temperature de l'air 1ere couche
46
47 real, intent(IN):: q1lay(:) ! (knon)
48 ! humidit\'e sp\'ecifique de la premi\`ere couche
49
50 real, intent(IN):: cdragh(:) ! (knon) coefficient d'echange
51
52 real, intent(IN):: tAcoef(:), qAcoef(:) ! (knon)
53 ! coefficients A de la r\'esolution de la couche limite pour t et q
54
55 real, intent(IN):: tBcoef(:), qBcoef(:) ! (knon)
56 ! coefficients B de la r\'esolution de la couche limite pour t et q
57
58 real, intent(IN):: rain_fall(:) ! (knon)
59 ! precipitation, liquid water mass flux (kg / m2 / s), positive down
60
61 real, intent(IN):: snow_fall(:) ! (knon)
62 ! precipitation, solid water mass flux (kg / m2 / s), positive down
63
64 real, intent(IN):: rugos(:) ! (knon) rugosite
65 real, intent(IN):: rugoro(:) ! (knon) rugosite orographique
66 real, intent(INOUT):: snow(:) ! (knon)
67 real, intent(OUT):: qsurf(:) ! (knon)
68 real, intent(IN):: ts(:) ! (knon) temp\'erature de surface
69 real, intent(IN):: p1lay(:) ! (knon) pression 1er niveau (milieu de couche)
70 real, intent(IN):: ps(:) ! (knon) pression au sol, en Pa
71
72 REAL, INTENT(IN):: radsol(:) ! (knon)
73 ! surface net downward radiative flux, in W / m2
74
75 real, intent(OUT):: evap(:) ! (knon) evaporation totale
76
77 real, intent(OUT):: flux_t(:) ! (knon) flux de chaleur sensible
78 ! (Cp T) à la surface, positif vers le bas, W / m2
79
80 real, intent(OUT):: fluxlat(:) ! (knon) flux de chaleur latente, en W m-2
81 real, intent(OUT):: dflux_l(:), dflux_s(:) ! (knon)
82 real, intent(OUT):: tsurf_new(:) ! (knon) temp\'erature au sol
83 real, intent(OUT):: albedo(:) ! (knon) albedo
84 real, intent(OUT):: z0_new(:) ! (knon) surface roughness
85
86 real, intent(in):: pctsrf_new_sic(:) ! (knon)
87 ! nouvelle repartition des surfaces
88
89 real, intent(INOUT):: agesno(:) ! (knon)
90
91 real, intent(OUT):: fqcalving(:) ! (knon)
92 ! Flux d'eau "perdue" par la surface et n\'ecessaire pour limiter la
93 ! hauteur de neige, en kg / m2 / s
94
95 real, intent(OUT):: ffonte(:) ! (knon)
96 ! flux thermique utilis\'e pour fondre la neige
97
98 real, intent(INOUT):: run_off_lic_0(:) ! (knon)
99 ! run_off_lic_0 runoff glacier du pas de temps precedent
100
101 REAL, intent(OUT):: run_off_lic(:) ! (knon) ruissellement total
102
103 ! Local:
104 REAL soilcap(size(knindex)) ! (knon)
105 REAL soilflux(size(knindex)) ! (knon)
106 integer ii
107 real cal(size(knindex)) ! (knon)
108 real beta(size(knindex)) ! (knon) evap reelle
109 real tsurf(size(knindex)) ! (knon)
110 real alb_neig(size(knindex)) ! (knon)
111 real zfra(size(knindex)) ! (knon)
112 REAL, PARAMETER:: fmagic = 1. ! facteur magique pour r\'egler l'alb\'edo
113 REAL, PARAMETER:: max_eau_sol = 150. ! in kg m-2
114 REAL, PARAMETER:: tau_gl = 86400. * 5.
115
116 !-------------------------------------------------------------
117
118 select case (nisurf)
119 case (is_ter)
120 ! Surface "terre", appel \`a l'interface avec les sols continentaux
121
122 ! Calcul age de la neige
123
124 ! Read albedo from the file containing boundary conditions then
125 ! add the albedo of snow:
126
127 call interfsur_lim(julien, knindex, albedo, z0_new)
128
129 beta = min(2. * qsol / max_eau_sol, 1.)
130 CALL soil(is_ter, snow, ts, tsoil, soilcap, soilflux)
131 cal = RCPD / soilcap
132
133 CALL calcul_fluxs(ts, p1lay, cal, beta, cdragh, ps, qsurf, &
134 radsol + soilflux, temp_air, q1lay, u1lay, v1lay, tAcoef, &
135 qAcoef, tBcoef, qBcoef, tsurf_new, evap, fluxlat, flux_t, dflux_s, &
136 dflux_l, dif_grnd = 0.)
137 CALL fonte_neige(is_ter, rain_fall, snow_fall, snow, qsol, &
138 tsurf_new, evap, fqcalving, ffonte, run_off_lic_0, run_off_lic)
139
140 call albsno(agesno, alb_neig, snow_fall)
141 where (snow < 0.0001) agesno = 0.
142 zfra = max(0., min(1., snow / (snow + 10.)))
143 albedo = alb_neig * zfra + albedo * (1. - zfra)
144 z0_new = sqrt(z0_new**2 + rugoro**2)
145 case (is_oce)
146 ! Surface "oc\'ean", appel \`a l'interface avec l'oc\'ean
147
148 ffonte = 0.
149 call limit_read_sst(julien, knindex, tsurf)
150 cal = 0.
151 beta = 1.
152 call calcul_fluxs(tsurf, p1lay, cal, beta, cdragh, ps, qsurf, radsol, &
153 temp_air, q1lay, u1lay, v1lay, tAcoef, qAcoef, tBcoef, qBcoef, &
154 tsurf_new, evap, fluxlat, flux_t, dflux_s, dflux_l, dif_grnd = 0.)
155 agesno = 0.
156 albedo = alboc_cd(mu0) * fmagic
157 z0_new = sqrt(rugos**2 + rugoro**2)
158 fqcalving = 0.
159 case (is_sic)
160 ! Surface "glace de mer" appel a l'interface avec l'ocean
161
162 DO ii = 1, size(knindex)
163 IF (pctsrf_new_sic(ii) < EPSFRA) then
164 snow(ii) = 0.
165 tsurf_new(ii) = RTT - 1.8
166 tsoil(ii, :) = RTT - 1.8
167 else
168 tsurf_new(ii) = ts(ii)
169 endif
170 enddo
171
172 CALL soil(is_sic, snow, tsurf_new, tsoil, soilcap, soilflux)
173 cal = RCPD / soilcap
174 tsurf = tsurf_new
175 beta = 1.
176 CALL calcul_fluxs(tsurf, p1lay, cal, beta, cdragh, ps, qsurf, &
177 radsol + soilflux, temp_air, q1lay, u1lay, v1lay, tAcoef, &
178 qAcoef, tBcoef, qBcoef, tsurf_new, evap, fluxlat, flux_t, dflux_s, &
179 dflux_l, dif_grnd = 1. / tau_gl)
180 CALL fonte_neige(is_sic, rain_fall, snow_fall, snow, qsol, &
181 tsurf_new, evap, fqcalving, ffonte, run_off_lic_0, run_off_lic)
182
183 ! Compute the albedo:
184
185 CALL albsno(agesno, alb_neig, snow_fall)
186 WHERE (snow < 0.0001) agesno = 0.
187 zfra = MAX(0., MIN(1., snow / (snow + 10.)))
188 albedo = alb_neig * zfra + 0.6 * (1. - zfra)
189
190 z0_new = SQRT(0.002**2 + rugoro**2)
191 case (is_lic)
192 ! Surface "glacier continentaux" appel a l'interface avec le sol
193
194 CALL soil(is_lic, snow, ts, tsoil, soilcap, soilflux)
195 cal = RCPD / soilcap
196 beta = 1.
197 call calcul_fluxs(ts, p1lay, cal, beta, cdragh, ps, qsurf, &
198 radsol + soilflux, temp_air, q1lay, u1lay, v1lay, tAcoef, &
199 qAcoef, tBcoef, qBcoef, tsurf_new, evap, fluxlat, flux_t, dflux_s, &
200 dflux_l, dif_grnd = 0.)
201 call fonte_neige(is_lic, rain_fall, snow_fall, snow, qsol, &
202 tsurf_new, evap, fqcalving, ffonte, run_off_lic_0, run_off_lic)
203
204 ! calcul albedo
205 CALL albsno(agesno, alb_neig, snow_fall)
206 WHERE (snow < 0.0001) agesno = 0.
207 albedo = 0.77
208
209 ! Rugosite
210 z0_new = rugoro
211 case default
212 print *, 'Index surface = ', nisurf
213 call abort_gcm("interfsurf_hq", 'Index surface non valable')
214 end select
215
216 END SUBROUTINE interfsurf_hq
217
218 end module interfsurf_hq_m

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