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Revision 76 - (hide annotations)
Fri Nov 15 18:45:49 2013 UTC (10 years, 6 months ago) by guez
Original Path: trunk/phylmd/nuage.f90
File size: 7400 byte(s)
Moved everything out of libf.
1 guez 51 SUBROUTINE nuage (paprs, pplay, &
2     t, pqlwp, pclc, pcltau, pclemi, &
3     pch, pcl, pcm, pct, pctlwp, &
4     ok_aie, &
5     sulfate, sulfate_pi, &
6     bl95_b0, bl95_b1, &
7     cldtaupi, re, fl)
8     !
9     ! From LMDZ4/libf/phylmd/nuage.F, version 1.1.1.1 2004/05/19 12:53:07
10     !
11     use dimens_m
12     use dimphy
13     use SUPHEC_M
14     IMPLICIT none
15     !======================================================================
16     ! Auteur(s): Z.X. Li (LMD/CNRS) date: 19930910
17     ! Objet: Calculer epaisseur optique et emmissivite des nuages
18     !======================================================================
19     ! Arguments:
20     ! t-------input-R-temperature
21     ! pqlwp---input-R-eau liquide nuageuse dans l'atmosphere (kg/kg)
22     ! pclc----input-R-couverture nuageuse pour le rayonnement (0 a 1)
23     ! ok_aie--input-L-apply aerosol indirect effect or not
24     ! sulfate-input-R-sulfate aerosol mass concentration [um/m^3]
25     ! sulfate_pi-input-R-dito, pre-industrial value
26     ! bl95_b0-input-R-a parameter, may be varied for tests (s-sea, l-land)
27     ! bl95_b1-input-R-a parameter, may be varied for tests ( -"- )
28     !
29     ! cldtaupi-output-R-pre-industrial value of cloud optical thickness,
30     ! needed for the diagnostics of the aerosol indirect
31     ! radiative forcing (see radlwsw)
32     ! re------output-R-Cloud droplet effective radius multiplied by fl [um]
33     ! fl------output-R-Denominator to re, introduced to avoid problems in
34     ! the averaging of the output. fl is the fraction of liquid
35     ! water clouds within a grid cell
36     !
37     ! pcltau--output-R-epaisseur optique des nuages
38     ! pclemi--output-R-emissivite des nuages (0 a 1)
39     !======================================================================
40     !
41     !
42     REAL, intent(in):: paprs(klon,klev+1)
43     real, intent(in):: pplay(klon,klev)
44 guez 52 REAL, intent(in):: t(klon,klev)
45 guez 51 !
46     REAL pclc(klon,klev)
47     REAL pqlwp(klon,klev)
48     REAL pcltau(klon,klev), pclemi(klon,klev)
49     !
50     REAL pct(klon), pctlwp(klon), pch(klon), pcl(klon), pcm(klon)
51     !
52     LOGICAL lo
53     !
54     REAL cetahb, cetamb
55     PARAMETER (cetahb = 0.45, cetamb = 0.80)
56     !
57     INTEGER i, k
58     REAL zflwp, zradef, zfice, zmsac
59     !
60     REAL radius, rad_froid, rad_chaud, rad_chau1, rad_chau2
61     PARAMETER (rad_chau1=13.0, rad_chau2=9.0, rad_froid=35.0)
62     !cc PARAMETER (rad_chaud=15.0, rad_froid=35.0)
63     ! sintex initial PARAMETER (rad_chaud=10.0, rad_froid=30.0)
64     REAL coef, coef_froi, coef_chau
65     PARAMETER (coef_chau=0.13, coef_froi=0.09)
66     REAL seuil_neb, t_glace
67     PARAMETER (seuil_neb=0.001, t_glace=273.0-15.0)
68     INTEGER nexpo ! exponentiel pour glace/eau
69     PARAMETER (nexpo=6)
70 guez 3
71 guez 51 !jq for the aerosol indirect effect
72     !jq introduced by Johannes Quaas (quaas@lmd.jussieu.fr), 27/11/2003
73     !jq
74     LOGICAL ok_aie ! Apply AIE or not?
75 guez 3
76 guez 51 REAL sulfate(klon, klev) ! sulfate aerosol mass concentration [ug m-3]
77     REAL cdnc(klon, klev) ! cloud droplet number concentration [m-3]
78     REAL re(klon, klev) ! cloud droplet effective radius [um]
79     REAL sulfate_pi(klon, klev) ! sulfate aerosol mass concentration [ug m-3] (pre-industrial value)
80     REAL cdnc_pi(klon, klev) ! cloud droplet number concentration [m-3] (pi value)
81     REAL re_pi(klon, klev) ! cloud droplet effective radius [um] (pi value)
82    
83     REAL fl(klon, klev) ! xliq * rneb (denominator to re ; fraction of liquid water clouds within the grid cell)
84    
85     REAL bl95_b0, bl95_b1 ! Parameter in B&L 95-Formula
86    
87     REAL cldtaupi(klon, klev) ! pre-industrial cloud opt thickness for diag
88    
89     !cc PARAMETER (nexpo=1)
90     !
91     ! Calculer l'epaisseur optique et l'emmissivite des nuages
92     !
93     DO k = 1, klev
94     DO i = 1, klon
95     rad_chaud = rad_chau1
96     IF (k.LE.3) rad_chaud = rad_chau2
97    
98     pclc(i,k) = MAX(pclc(i,k), seuil_neb)
99     zflwp = 1000.*pqlwp(i,k)/RG/pclc(i,k) &
100     *(paprs(i,k)-paprs(i,k+1))
101     zfice = 1.0 - (t(i,k)-t_glace) / (273.13-t_glace)
102     zfice = MIN(MAX(zfice,0.0),1.0)
103     zfice = zfice**nexpo
104    
105     IF (ok_aie) THEN
106     ! Formula "D" of Boucher and Lohmann, Tellus, 1995
107     !
108     cdnc(i,k) = 10.**(bl95_b0+bl95_b1* &
109     log(MAX(sulfate(i,k),1.e-4))/log(10.))*1.e6 !-m-3
110     ! Cloud droplet number concentration (CDNC) is restricted
111     ! to be within [20, 1000 cm^3]
112     !
113     cdnc(i,k)=MIN(1000.e6,MAX(20.e6,cdnc(i,k)))
114     cdnc_pi(i,k) = 10.**(bl95_b0+bl95_b1* &
115     log(MAX(sulfate_pi(i,k),1.e-4))/log(10.))*1.e6 !-m-3
116     cdnc_pi(i,k)=MIN(1000.e6,MAX(20.e6,cdnc_pi(i,k)))
117     !
118     !
119     ! air density: pplay(i,k) / (RD * zT(i,k))
120     ! factor 1.1: derive effective radius from volume-mean radius
121     ! factor 1000 is the water density
122     ! _chaud means that this is the CDR for liquid water clouds
123     !
124     rad_chaud = &
125     1.1 * ( (pqlwp(i,k) * pplay(i,k) / (RD * T(i,k)) ) &
126     / (4./3. * RPI * 1000. * cdnc(i,k)) )**(1./3.)
127     !
128     ! Convert to um. CDR shall be at least 3 um.
129     !
130     rad_chaud = MAX(rad_chaud*1.e6, 3.)
131    
132     ! For output diagnostics
133     !
134     ! Cloud droplet effective radius [um]
135     !
136     ! we multiply here with f * xl (fraction of liquid water
137     ! clouds in the grid cell) to avoid problems in the
138     ! averaging of the output.
139     ! In the output of IOIPSL, derive the real cloud droplet
140     ! effective radius as re/fl
141     !
142     fl(i,k) = pclc(i,k)*(1.-zfice)
143     re(i,k) = rad_chaud*fl(i,k)
144    
145     ! Pre-industrial cloud opt thickness
146     !
147     ! "radius" is calculated as rad_chaud above (plus the
148     ! ice cloud contribution) but using cdnc_pi instead of
149     ! cdnc.
150     radius = MAX(1.1e6 * ( (pqlwp(i,k)*pplay(i,k)/(RD*T(i,k))) &
151     / (4./3.*RPI*1000.*cdnc_pi(i,k)) )**(1./3.), &
152     3.) * (1.-zfice) + rad_froid * zfice
153     cldtaupi(i,k) = 3.0/2.0 * zflwp / radius
154    
155     END IF ! ok_aie
156    
157     radius = rad_chaud * (1.-zfice) + rad_froid * zfice
158     coef = coef_chau * (1.-zfice) + coef_froi * zfice
159     pcltau(i,k) = 3.0/2.0 * zflwp / radius
160     pclemi(i,k) = 1.0 - EXP( - coef * zflwp)
161     lo = (pclc(i,k) .LE. seuil_neb)
162     IF (lo) pclc(i,k) = 0.0
163     IF (lo) pcltau(i,k) = 0.0
164     IF (lo) pclemi(i,k) = 0.0
165    
166     IF (.NOT.ok_aie) cldtaupi(i,k)=pcltau(i,k)
167     END DO
168     END DO
169     !
170     ! COMPUTE CLOUD LIQUID PATH AND TOTAL CLOUDINESS
171     !
172     DO i = 1, klon
173     pct(i)=1.0
174     pch(i)=1.0
175     pcm(i) = 1.0
176     pcl(i) = 1.0
177     pctlwp(i) = 0.0
178     END DO
179     !
180     DO k = klev, 1, -1
181     DO i = 1, klon
182     pctlwp(i) = pctlwp(i) &
183     + pqlwp(i,k)*(paprs(i,k)-paprs(i,k+1))/RG
184     pct(i) = pct(i)*(1.0-pclc(i,k))
185     if (pplay(i,k).LE.cetahb*paprs(i,1)) &
186     pch(i) = pch(i)*(1.0-pclc(i,k))
187     if (pplay(i,k).GT.cetahb*paprs(i,1) .AND. &
188     pplay(i,k).LE.cetamb*paprs(i,1)) &
189     pcm(i) = pcm(i)*(1.0-pclc(i,k))
190     if (pplay(i,k).GT.cetamb*paprs(i,1)) &
191     pcl(i) = pcl(i)*(1.0-pclc(i,k))
192     END DO
193     END DO
194     !
195     DO i = 1, klon
196     pct(i)=1.-pct(i)
197     pch(i)=1.-pch(i)
198     pcm(i)=1.-pcm(i)
199     pcl(i)=1.-pcl(i)
200     END DO
201     !
202     END SUBROUTINE nuage

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