source: LMDZ4/branches/LMDZ4-dev/libf/phylmd/aeropt_5wv.F90 @ 1266

Last change on this file since 1266 was 1266, checked in by Laurent Fairhead, 15 years ago

Correction d'un bug dans aeropt_5wv.F90 : une variable était utilisée sans
être calculée
Ajout de tests sur l'écriture de variables dans les fichiers de sortie
Changement des arguments d'appels à INCA
ACo

  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 34.6 KB
Line 
1!
2! $Id: aeropt_5wv.F90 1266 2009-11-20 16:27:40Z fairhead $
3!
4
5SUBROUTINE AEROPT_5WV(&
6   pdel, m_allaer, delt, &
7   RHcl, ai, flag_aerosol, &
8   pplay, t_seri, &
9   tausum, tau, presnivs)
10
11  USE DIMPHY
12  USE aero_mod
13
14  !
15  !    Yves Balkanski le 12 avril 2006
16  !    Celine Deandreis
17  !    Anne Cozic  Avril 2009
18  !    a partir d'une sous-routine de Johannes Quaas pour les sulfates
19  !
20  !
21  ! Refractive indices for seasalt come from Shettle and Fenn (1979)
22  !
23  ! Refractive indices from water come from Hale and Querry (1973)
24  !
25  ! Refractive indices from Ammonium Sulfate Toon and Pollack (1976)
26  !
27  ! Refractive indices for Dust, internal mixture of minerals coated with 1.5% hematite
28  ! by Volume (Balkanski et al., 2006)
29  !
30  ! Refractive indices for POM: Kinne (pers. Communication
31  !
32  ! Refractive index for BC from Shettle and Fenn (1979)
33  !
34  ! Shettle, E. P., & Fenn, R. W. (1979), Models for the aerosols of the lower atmosphere and
35  ! the effects of humidity variations on their optical properties, U.S. Air Force Geophysics
36  ! Laboratory Rept. AFGL-TR-79-0214, Hanscomb Air Force Base, MA.
37  !
38  ! Hale, G. M. and M. R. Querry, Optical constants of water in the 200-nm to 200-m
39  ! wavelength region, Appl. Opt., 12, 555-563, 1973.
40  !
41  ! Toon, O. B. and J. B. Pollack, The optical constants of several atmospheric aerosol species:
42  ! Ammonium sulfate, aluminum oxide, and sodium chloride, J. Geohys. Res., 81, 5733-5748,
43  ! 1976.
44  !
45  ! Balkanski, Y., M. Schulz, T. Claquin And O. Boucher, Reevaluation of mineral aerosol
46  ! radiative forcings suggests a better agreement with satellite and AERONET data, Atmospheric
47  ! Chemistry and Physics Discussions., 6, pp 8383-8419, 2006.
48  !
49  IMPLICIT NONE
50  INCLUDE "YOMCST.h"
51  !
52  ! Input arguments:
53  !
54  REAL, DIMENSION(klon,klev), INTENT(in)   :: pdel
55  REAL, INTENT(in)                         :: delt
56  REAL, DIMENSION(klon,klev,naero_spc), INTENT(in) :: m_allaer
57  REAL, DIMENSION(klon,klev), INTENT(in)   :: RHcl     ! humidite relative ciel clair
58  INTEGER,INTENT(in)                       :: flag_aerosol
59  REAL, DIMENSION(klon,klev), INTENT(in)   :: pplay
60  REAL, DIMENSION(klon,klev), INTENT(in)   :: t_seri
61  REAL, DIMENSION(klev),      INTENT(in)   :: presnivs
62  !
63  ! Output arguments:
64  !
65  REAL, DIMENSION(klon), INTENT(out)          :: ai      ! POLDER aerosol index
66  REAL, DIMENSION(klon,nwave,naero_spc), INTENT(out)      :: tausum
67  REAL, DIMENSION(klon,klev,nwave,naero_spc), INTENT(out) :: tau
68
69
70  !
71  ! Local
72  !
73  INTEGER, PARAMETER :: las = nwave
74  LOGICAL :: soluble
75 
76  INTEGER :: i, k, ierr, m
77  INTEGER :: spsol, spinsol, spss, la
78  INTEGER :: RH_num
79  INTEGER, PARAMETER :: la443 = 1
80  INTEGER, PARAMETER :: la550 = 2
81  INTEGER, PARAMETER :: la670 = 3
82  INTEGER, PARAMETER :: la765 = 4
83  INTEGER, PARAMETER :: la865 = 5
84  INTEGER, PARAMETER :: nbre_RH=12
85  INTEGER, PARAMETER :: naero_soluble=7   !  1- BC soluble; 2- POM soluble; 3- SO4 acc.
86                                          !  4- SO4 coarse; 5 seasalt super-C; 6 seasalt coarse; 7 seasalt acc.
87  INTEGER, PARAMETER :: naero_insoluble=3 !  1- Dust; 2- BC insoluble; 3- POM insoluble
88  INTEGER, PARAMETER :: nb_level = 19     ! number of vertical levels
89  LOGICAL, SAVE :: firstcall=.TRUE.
90!$OMP THREADPRIVATE(firstcall)
91
92  REAL :: zrho
93
94  ! Coefficient optiques sur 19 niveaux
95  REAL, SAVE, DIMENSION(nb_level) :: presnivs_19  ! Pression milieux couche pour 19 niveaux (nb_level)
96!$OMP THREADPRIVATE(presnivs_19)
97
98  REAL, SAVE, DIMENSION(nb_level) :: A1_ASSSM_19, A2_ASSSM_19, A3_ASSSM_19,&
99          B1_ASSSM_19, B2_ASSSM_19, C1_ASSSM_19, C2_ASSSM_19,&
100          A1_CSSSM_19, A2_CSSSM_19, A3_CSSSM_19,&
101          B1_CSSSM_19, B2_CSSSM_19, C1_CSSSM_19, C2_CSSSM_19, &
102          A1_SSSSM_19, A2_SSSSM_19, A3_SSSSM_19,&
103          B1_SSSSM_19, B2_SSSSM_19, C1_SSSSM_19, C2_SSSSM_19
104!$OMP THREADPRIVATE(A1_ASSSM_19, A2_ASSSM_19, A3_ASSSM_19)
105!$OMP THREADPRIVATE(B1_ASSSM_19, B2_ASSSM_19, C1_ASSSM_19, C2_ASSSM_19)
106!$OMP THREADPRIVATE(A1_CSSSM_19, A2_CSSSM_19, A3_CSSSM_19)
107!$OMP THREADPRIVATE(B1_CSSSM_19, B2_CSSSM_19, C1_CSSSM_19, C2_CSSSM_19)
108!$OMP THREADPRIVATE(A1_SSSSM_19, A2_SSSSM_19, A3_SSSSM_19)
109!$OMP THREADPRIVATE(B1_SSSSM_19, B2_SSSSM_19, C1_SSSSM_19, C2_SSSSM_19)
110
111  ! Coefficient optiques interpole sur le nombre de niveau du modele
112  REAL, ALLOCATABLE,  DIMENSION(:), SAVE :: &
113          A1_ASSSM, A2_ASSSM, A3_ASSSM,&
114          B1_ASSSM, B2_ASSSM, C1_ASSSM, C2_ASSSM,&
115          A1_CSSSM, A2_CSSSM, A3_CSSSM,&
116          B1_CSSSM, B2_CSSSM, C1_CSSSM, C2_CSSSM, &
117          A1_SSSSM, A2_SSSSM, A3_SSSSM,&
118          B1_SSSSM, B2_SSSSM, C1_SSSSM, C2_SSSSM
119!$OMP THREADPRIVATE(A1_ASSSM, A2_ASSSM, A3_ASSSM)
120!$OMP THREADPRIVATE(B1_ASSSM, B2_ASSSM, C1_ASSSM, C2_ASSSM)
121!$OMP THREADPRIVATE(A1_CSSSM, A2_CSSSM, A3_CSSSM)
122!$OMP THREADPRIVATE(B1_CSSSM, B2_CSSSM, C1_CSSSM, C2_CSSSM)
123!$OMP THREADPRIVATE(A1_SSSSM, A2_SSSSM, A3_SSSSM)
124!$OMP THREADPRIVATE(B1_SSSSM, B2_SSSSM, C1_SSSSM, C2_SSSSM)
125
126
127  REAL,PARAMETER :: RH_tab(nbre_RH)=(/0.,10.,20.,30.,40.,50.,60.,70.,80.,85.,90.,95./)
128  REAL :: DELTA(klon,klev), rh(klon,klev), H
129  REAL :: tau_ae5wv_int ! Intermediate computation of epaisseur optique aerosol
130  REAL :: piz_ae5wv_int ! Intermediate single scattering albedo aerosol
131  REAL :: cg_ae5wv_int  ! Intermediate asymmetry parameter aerosol
132  REAL, PARAMETER :: RH_MAX=95.
133  REAL :: taue670(KLON)       ! epaisseur optique aerosol absorption 550 nm
134  REAL :: taue865(KLON)       ! epaisseur optique aerosol extinction 865 nm
135  REAL :: fac
136  REAL :: zdp1(klon,klev)
137  REAL, PARAMETER ::  gravit = 9.80616    ! m2/s
138  INTEGER, ALLOCATABLE, DIMENSION(:)  :: aerosol_name
139  INTEGER :: nb_aer
140 
141  REAL :: tau3d(KLON,KLEV), piz3d(KLON,KLEV), cg3d(KLON,KLEV)
142  REAL :: abs3d(KLON,KLEV)     ! epaisseur optique d'absorption
143
144 
145  REAL :: alpha_aers_5wv(nbre_RH,las,naero_soluble)   ! ext. coeff. Soluble comp. units *** m2/g
146  REAL :: alpha_aeri_5wv(las,naero_insoluble)         ! ext. coeff. Insoluble comp.
147  REAL :: cg_aers_5wv(nbre_RH,las,naero_soluble)      ! Asym. param. soluble comp.
148  REAL :: cg_aeri_5wv(las,naero_insoluble)            ! Asym. param. insoluble comp.
149  REAL :: piz_aers_5wv(nbre_RH,las,naero_soluble)   
150  REAL :: piz_aeri_5wv(las,naero_insoluble)           ! Insoluble comp.
151
152  REAL, DIMENSION(klon,klev,naero_spc) :: mass_temp
153 
154  !
155  ! Proprietes optiques
156  !
157  REAL :: radry = 287.054
158  REAL :: tau_tmp                     ! dry air mass constant
159  REAL :: fact_RH(nbre_RH)
160  LOGICAL :: used_tau(naero_spc)
161 
162  DATA presnivs_19/&
163       100426.5,  98327.6, 95346.5, 90966.8, 84776.9, &
164       76536.5,   66292.2, 54559.3, 42501.8, 31806, &
165       23787.5,   18252.7, 13996,   10320.8, 7191.1, &
166       4661.7,    2732.9,  1345.6,  388.2/
167
168!!ACCUMULATION MODE
169  DATA A1_ASSSM_19/ 4.373E+00,  4.361E+00,  4.331E+00, &
170                 4.278E+00,  4.223E+00,  4.162E+00, &
171                 4.103E+00,  4.035E+00,  3.962E+00, &
172                 3.904E+00,  3.871E+00,  3.847E+00, &
173                 3.824E+00,  3.780E+00,  3.646E+00, &
174                 3.448E+00,  3.179E+00,  2.855E+00,  2.630E+00/
175  DATA A2_ASSSM_19/ 2.496E+00,  2.489E+00,  2.472E+00, &
176                 2.442E+00,  2.411E+00,  2.376E+00, &
177                 2.342E+00,  2.303E+00,  2.261E+00, &
178                 2.228E+00,  2.210E+00,  2.196E+00, &
179                 2.183E+00,  2.158E+00,  2.081E+00, &
180                 1.968E+00,  1.814E+00,  1.630E+00,  1.501E+00/
181  DATA A3_ASSSM_19/-4.688E-02, -4.676E-02, -4.644E-02, &
182                -4.587E-02, -4.528E-02, -4.463E-02, &
183                -4.399E-02, -4.326E-02, -4.248E-02, &
184                -4.186E-02, -4.151E-02, -4.125E-02, &
185                -4.100E-02, -4.053E-02, -3.910E-02, &
186                -3.697E-02, -3.408E-02, -3.061E-02, -2.819E-02/
187  DATA B1_ASSSM_19/ 1.165E-08,  1.145E-08,  1.097E-08, &
188                 1.012E-08,  9.233E-09,  8.261E-09, &
189                 7.297E-09,  6.201E-09,  5.026E-09, &
190                 4.098E-09,  3.567E-09,  3.187E-09, &
191                 2.807E-09,  2.291E-09,  2.075E-09, &
192                 1.756E-09,  1.322E-09,  8.011E-10, 4.379E-10/
193  DATA B2_ASSSM_19/ 2.193E-08,  2.192E-08,  2.187E-08, &
194                 2.179E-08,  2.171E-08,  2.162E-08, &
195                 2.153E-08,  2.143E-08,  2.132E-08, &
196                 2.124E-08,  2.119E-08,  2.115E-08, &
197                 2.112E-08,  2.106E-08,  2.100E-08, &
198                 2.090E-08,  2.077E-08,  2.061E-08,  2.049E-08/
199  DATA C1_ASSSM_19/ 7.365E-01,  7.365E-01,  7.365E-01, &
200                 7.364E-01,  7.363E-01,  7.362E-01, &
201                 7.361E-01,  7.359E-01,  7.358E-01, &
202                 7.357E-01,  7.356E-01,  7.356E-01, &
203                 7.356E-01,  7.355E-01,  7.354E-01, &
204                 7.352E-01,  7.350E-01,  7.347E-01,  7.345E-01/
205  DATA C2_ASSSM_19/ 5.833E-02,  5.835E-02,  5.841E-02, &
206                 5.850E-02,  5.859E-02,  5.870E-02, &
207                 5.880E-02,  5.891E-02,  5.904E-02, &
208                 5.914E-02,  5.920E-02,  5.924E-02, &
209                 5.928E-02,  5.934E-02,  5.944E-02, &
210                 5.959E-02,  5.979E-02,  6.003E-02,  6.020E-02/
211!COARSE MODE
212  DATA A1_CSSSM_19/ 7.403E-01,  7.422E-01,  7.626E-01, &
213                 8.019E-01,  8.270E-01,  8.527E-01, &
214                 8.702E-01,  8.806E-01,  8.937E-01, &
215                 9.489E-01,  1.030E+00,  1.105E+00, &
216                 1.199E+00,  1.357E+00,  1.660E+00, &
217                 2.540E+00,  4.421E+00,  2.151E+00,  9.518E-01/
218  DATA A2_CSSSM_19/ 4.522E-01,  4.532E-01,  4.644E-01, &
219                 4.859E-01,  4.996E-01,  5.137E-01, &
220                 5.233E-01,  5.290E-01,  5.361E-01, &
221                 5.655E-01,  6.085E-01,  6.483E-01, &
222                 6.979E-01,  7.819E-01,  9.488E-01, &
223                 1.450E+00,  2.523E+00,  1.228E+00,  5.433E-01/
224  DATA A3_CSSSM_19/-8.516E-03, -8.535E-03, -8.744E-03, &
225                -9.148E-03, -9.406E-03, -9.668E-03, &
226                -9.848E-03, -9.955E-03, -1.009E-02, &
227                -1.064E-02, -1.145E-02, -1.219E-02, &
228                -1.312E-02, -1.470E-02, -1.783E-02, &
229                -2.724E-02, -4.740E-02, -2.306E-02, -1.021E-02/
230  DATA B1_CSSSM_19/ 2.535E-07,  2.530E-07,  2.479E-07, &
231                 2.380E-07,  2.317E-07,  2.252E-07, &
232                 2.208E-07,  2.182E-07,  2.149E-07, &
233                 2.051E-07,  1.912E-07,  1.784E-07, &
234                 1.624E-07,  1.353E-07,  1.012E-07, &
235                 6.016E-08,  2.102E-08,  0.000E+00,  0.000E+00/
236  DATA B2_CSSSM_19/ 1.221E-07,  1.217E-07,  1.179E-07, &
237                 1.104E-07,  1.056E-07,  1.008E-07, &
238                 9.744E-08,  9.546E-08,  9.299E-08, &
239                 8.807E-08,  8.150E-08,  7.544E-08, &
240                 6.786E-08,  5.504E-08,  4.080E-08, &
241                 2.960E-08,  2.300E-08,  2.030E-08,  1.997E-08/
242  DATA C1_CSSSM_19/ 7.659E-01,  7.658E-01,  7.652E-01, &
243                 7.639E-01,  7.631E-01,  7.623E-01, &
244                 7.618E-01,  7.614E-01,  7.610E-01, &
245                 7.598E-01,  7.581E-01,  7.566E-01, &
246                 7.546E-01,  7.513E-01,  7.472E-01, &
247                 7.423E-01,  7.376E-01,  7.342E-01,  7.334E-01/
248  DATA C2_CSSSM_19/ 3.691E-02,  3.694E-02,  3.729E-02, &
249                 3.796E-02,  3.839E-02,  3.883E-02, &
250                 3.913E-02,  3.931E-02,  3.953E-02, &
251                 4.035E-02,  4.153E-02,  4.263E-02, &
252                 4.400E-02,  4.631E-02,  4.933E-02, &
253                 5.331E-02,  5.734E-02,  6.053E-02,  6.128E-02/
254!SUPER COARSE MODE
255  DATA A1_SSSSM_19/ 2.836E-01,  2.876E-01,  2.563E-01, &
256                 2.414E-01,  2.541E-01,  2.546E-01, &
257                 2.572E-01,  2.638E-01,  2.781E-01, &
258                 3.167E-01,  4.209E-01,  5.286E-01, &
259                 6.959E-01,  9.233E-01,  1.282E+00, &
260                 1.836E+00,  2.981E+00,  4.355E+00,  4.059E+00/
261  DATA A2_SSSSM_19/ 1.608E-01,  1.651E-01,  1.577E-01, &
262                 1.587E-01,  1.686E-01,  1.690E-01, &
263                 1.711E-01,  1.762E-01,  1.874E-01, &
264                 2.138E-01,  2.751E-01,  3.363E-01, &
265                 4.279E-01,  5.519E-01,  7.421E-01, &
266                 1.048E+00,  1.702E+00,  2.485E+00,  2.317E+00/
267  DATA A3_SSSSM_19/-3.025E-03, -3.111E-03, -2.981E-03, &
268                -3.005E-03, -3.193E-03, -3.200E-03, &
269                -3.239E-03, -3.336E-03, -3.548E-03, &
270                -4.047E-03, -5.196E-03, -6.345E-03, &
271                -8.061E-03, -1.038E-02, -1.395E-02, &
272                -1.970E-02, -3.197E-02, -4.669E-02, -4.352E-02/
273  DATA B1_SSSSM_19/ 6.759E-07,  6.246E-07,  5.542E-07, &
274                 4.953E-07,  4.746E-07,  4.738E-07, &
275                 4.695E-07,  4.588E-07,  4.354E-07, &
276                 3.947E-07,  3.461E-07,  3.067E-07, &
277                 2.646E-07,  2.095E-07,  1.481E-07, &
278                 9.024E-08,  5.747E-08,  2.384E-08,  6.599E-09/
279  DATA B2_SSSSM_19/ 5.977E-07,  5.390E-07,  4.468E-07, &
280                 3.696E-07,  3.443E-07,  3.433E-07, &
281                 3.380E-07,  3.249E-07,  2.962E-07, &
282                 2.483E-07,  1.989E-07,  1.623E-07, &
283                 1.305E-07,  9.015E-08,  6.111E-08, &
284                 3.761E-08,  2.903E-08,  2.337E-08,  2.147E-08/
285  DATA C1_SSSSM_19/ 8.120E-01,  8.084E-01,  8.016E-01, &
286                 7.953E-01,  7.929E-01,  7.928E-01, &
287                 7.923E-01,  7.910E-01,  7.882E-01, &
288                 7.834E-01,  7.774E-01,  7.725E-01, &
289                 7.673E-01,  7.604E-01,  7.529E-01, &
290                 7.458E-01,  7.419E-01,  7.379E-01,  7.360E-01/
291  DATA C2_SSSSM_19/ 2.388E-02,  2.392E-02,  2.457E-02,  2.552E-02, &
292                 2.615E-02,  2.618E-02,  2.631E-02,  2.663E-02, &
293                 2.735E-02,  2.875E-02,  3.113E-02,  3.330E-02, &
294                 3.615E-02,  3.997E-02,  4.521E-02,  5.038E-02, &
295                 5.358E-02,  5.705E-02,  5.887E-02/
296!*********************************************************************
297!
298!
299!
300!
301
302!
303! From here on we look at the optical parameters at 5 wavelengths: 
304! 443nm, 550, 670, 765 and 865 nm
305!                                   le 12 AVRIL 2006
306
307  DATA alpha_aers_5wv/ &
308                                ! bc soluble
309     7.930,7.930,7.930,7.930,7.930,7.930,     &
310     7.930,7.930,10.893,12.618,14.550,16.613, &
311     7.658,7.658,7.658,7.658,7.658,7.658,     &
312     7.658,7.658,10.351,11.879,13.642,15.510, &
313     7.195,7.195,7.195,7.195,7.195,7.195,     &
314     7.195,7.195,9.551,10.847,12.381,13.994,  &
315     6.736,6.736,6.736,6.736,6.736,6.736,     &
316     6.736,6.736,8.818,9.938,11.283,12.687,   &
317     6.277,6.277,6.277,6.277,6.277,6.277,     &
318     6.277,6.277,8.123,9.094,10.275,11.501,   &
319     ! pom soluble
320     6.676,6.676,6.676,6.676,6.710,6.934,   &
321     7.141,7.569,8.034,8.529,9.456,10.511,  &
322     5.109,5.109,5.109,5.109,5.189,5.535,   &
323     5.960,6.852,8.008,9.712,12.897,19.676, &
324     3.718,3.718,3.718,3.718,3.779,4.042,   &
325     4.364,5.052,5.956,7.314,9.896,15.688,  &
326     2.849,2.849,2.849,2.849,2.897,3.107,   &
327     3.365,3.916,4.649,5.760,7.900,12.863,  &
328     2.229,2.229,2.229,2.229,2.268,2.437,   &
329     2.645,3.095,3.692,4.608,6.391,10.633,  &
330     ! Sulfate (Accumulation)
331     5.751,6.215,6.690,7.024,7.599,8.195,      &
332     9.156,10.355,12.660,14.823,18.908,24.508, &
333     4.320,4.675,5.052,5.375,5.787,6.274,      &
334     7.066,8.083,10.088,12.003,15.697,21.133,  &
335     3.079,3.351,3.639,3.886,4.205,4.584,      &
336     5.206,6.019,7.648,9.234,12.391,17.220,    &
337     2.336,2.552,2.781,2.979,3.236,3.540,      &
338     4.046,4.711,6.056,7.388,10.093,14.313,    &
339     1.777,1.949,2.134,2.292,2.503,2.751,      &
340     3.166,3.712,4.828,5.949,8.264,11.922,     &
341     ! Sulfate (Coarse)
342     5.751,6.215,6.690,7.024,7.599,8.195,      &
343     9.156,10.355,12.660,14.823,18.908,24.508, &
344     4.320,4.675,5.052,5.375,5.787,6.274,      &
345     7.066,8.083,10.088,12.003,15.697,21.133,  &
346     3.079,3.351,3.639,3.886,4.205,4.584,      &
347     5.206,6.019,7.648,9.234,12.391,17.220,    &
348     2.336,2.552,2.781,2.979,3.236,3.540,      &
349     4.046,4.711,6.056,7.388,10.093,14.313,    &
350     1.777,1.949,2.134,2.292,2.503,2.751,      &
351     3.166,3.712,4.828,5.949,8.264,11.922,     &
352     ! Seasalt soluble super_coarse (computed below for 550nm)
353     0.50,0.90,1.05,1.21,1.40,2.41, & 
354     2.66,3.11,3.88,4.52,5.69,8.84, & 
355     0.000,0.000,0.000,0.000,0.000,0.000, & 
356     0.000,0.000,0.000,0.000,0.000,0.000, & 
357     0.52,0.93,1.08,1.24,1.43,2.47, & 
358     2.73,3.20,3.99,4.64,5.84,9.04, & 
359     0.52,0.93,1.09,1.25,1.44,2.50, & 
360     2.76,3.23,4.03,4.68,5.89,9.14, & 
361     0.52,0.94,1.09,1.26,1.45,2.51, & 
362     2.78,3.25,4.06,4.72,5.94,9.22, & 
363     ! seasalt soluble coarse (computed below for 550nm)
364     0.50,0.90,1.05,1.21,1.40,2.41, & 
365     2.66,3.11,3.88,4.52,5.69,8.84, & 
366     0.000,0.000,0.000,0.000,0.000,0.000, & 
367     0.000,0.000,0.000,0.000,0.000,0.000, & 
368     0.52,0.93,1.08,1.24,1.43,2.47, & 
369     2.73,3.20,3.99,4.64,5.84,9.04, & 
370     0.52,0.93,1.09,1.25,1.44,2.50, & 
371     2.76,3.23,4.03,4.68,5.89,9.14, & 
372     0.52,0.94,1.09,1.26,1.45,2.51, & 
373     2.78,3.25,4.06,4.72,5.94,9.22, & 
374     ! seasalt soluble accumulation (computed below for 550nm)
375     4.28, 7.17, 8.44, 9.85,11.60,22.44,  & 
376     25.34,30.54,39.38,46.52,59.33,91.77, & 
377     0.000,0.000,0.000,0.000,0.000,0.000, & 
378     0.000,0.000,0.000,0.000,0.000,0.000, & 
379     2.48, 4.22, 5.02, 5.94, 7.11,15.29,  & 
380     17.70,22.31,30.73,38.06,52.15,90.59, & 
381     1.90, 3.29, 3.94, 4.69, 5.65, 12.58, & 
382     14.68,18.77,26.41,33.25,46.77,85.50, & 
383     1.47, 2.59, 3.12, 3.74, 4.54, 10.42, & 
384     12.24,15.82,22.66,28.91,41.54,79.33/
385 
386  DATA alpha_aeri_5wv/ &
387     ! dust insoluble
388     0.759, 0.770, 0.775, 0.775, 0.772, &
389     !!jb bc insoluble
390     11.536,10.033, 8.422, 7.234, 6.270, &
391     ! pom insoluble
392     5.042, 3.101, 1.890, 1.294, 0.934/
393  !
394  DATA cg_aers_5wv/ & 
395                                 ! bc soluble
396     .651, .651, .651, .651, .651, .651, &
397     .651, .651, .738, .764, .785, .800, &
398     .597, .597, .597, .597, .597, .597, &
399     .597, .597, .695, .725, .751, .770, &
400     .543, .543, .543, .543, .543, .543, &
401     .543, .543, .650, .684, .714, .736, & 
402     .504, .504, .504, .504, .504, .504, &
403     .504, .504, .614, .651, .683, .708, & 
404     .469, .469, .469, .469, .469, .469, &
405     .469, .469, .582, .620, .655, .681, &
406     ! pom soluble
407     .679, .679, .679, .679, .683, .691, &
408     .703, .720, .736, .751, .766, .784, &
409     .656, .656, .656, .656, .659, .669, &
410     .681, .699, .717, .735, .750, .779, & 
411     .623, .623, .623, .623, .627, .637, &
412     .649, .668, .688, .709, .734, .762, &
413     .592, .592, .592, .592, .595, .605, &
414     .618, .639, .660, .682, .711, .743, &
415     .561, .561, .561, .561, .565, .575, &
416     .588, .609, .632, .656, .688, .724, &
417     ! Accumulation sulfate
418     .671, .684, .697, .704, .714, .723, &
419     .734, .746, .762, .771, .781, .789, &
420     .653, .666, .678, .687, .697, .707, &
421     .719, .732, .751, .762, .775, .789, &
422     .622, .635, .648, .657, .667, .678, &
423     .691, .705, .728, .741, .758, .777, &
424     .591, .604, .617, .627, .638, .650, &
425     .664, .679, .704, .719, .739, .761, &
426     .560, .574, .587, .597, .609, .621, & 
427     .637, .653, .680, .697, .719, .745, &
428     ! Coarse sulfate
429     .671, .684, .697, .704, .714, .723, &
430     .734, .746, .762, .771, .781, .789, &
431     .653, .666, .678, .687, .697, .707, &
432     .719, .732, .751, .762, .775, .789, &
433     .622, .635, .648, .657, .667, .678, &
434     .691, .705, .728, .741, .758, .777, &
435     .591, .604, .617, .627, .638, .650, &
436     .664, .679, .704, .719, .739, .761, &
437     .560, .574, .587, .597, .609, .621, & 
438     .637, .653, .680, .697, .719, .745, &
439     ! For super coarse seasalt (computed below for 550nm!)
440     0.730,0.753,0.760,0.766,0.772,0.793, & 
441     0.797,0.802,0.809,0.813,0.820,0.830, & 
442     0.000,0.000,0.000,0.000,0.000,0.000, & 
443     0.000,0.000,0.000,0.000,0.000,0.000, & 
444     0.721,0.744,0.750,0.756,0.762,0.784, & 
445     0.787,0.793,0.800,0.804,0.811,0.822, & 
446     0.717,0.741,0.747,0.753,0.759,0.780, & 
447     0.784,0.789,0.795,0.800,0.806,0.817, & 
448     0.715,0.739,0.745,0.751,0.757,0.777, &   
449     0.781,0.786,0.793,0.797,0.803,0.814, & 
450     ! For coarse-soluble seasalt (computed below for 550nm!)
451     0.730,0.753,0.760,0.766,0.772,0.793, & 
452     0.797,0.802,0.809,0.813,0.820,0.830, & 
453     0.000,0.000,0.000,0.000,0.000,0.000, & 
454     0.000,0.000,0.000,0.000,0.000,0.000, & 
455     0.721,0.744,0.750,0.756,0.762,0.784, & 
456     0.787,0.793,0.800,0.804,0.811,0.822, & 
457     0.717,0.741,0.747,0.753,0.759,0.780, & 
458     0.784,0.789,0.795,0.800,0.806,0.817, & 
459     0.715,0.739,0.745,0.751,0.757,0.777, &   
460     0.781,0.786,0.793,0.797,0.803,0.814, & 
461     ! accumulation-seasalt soluble (computed below for 550nm!) 
462     0.698,0.722,0.729,0.736,0.743,0.765, & 
463     0.768,0.773,0.777,0.779,0.781,0.779, & 
464     0.000,0.000,0.000,0.000,0.000,0.000, & 
465     0.000,0.000,0.000,0.000,0.000,0.000, & 
466     0.658,0.691,0.701,0.710,0.720,0.756, & 
467     0.763,0.771,0.782,0.788,0.795,0.801, & 
468     0.632,0.668,0.679,0.690,0.701,0.743, & 
469     0.750,0.762,0.775,0.783,0.792,0.804, & 
470     0.605,0.644,0.656,0.669,0.681,0.729, & 
471     0.737,0.750,0.765,0.775,0.787,0.803/
472  !
473 
474  DATA cg_aeri_5wv/&
475     ! dust insoluble
476     0.714, 0.697, 0.688, 0.683, 0.679, &
477     ! bc insoluble
478     0.511, 0.445, 0.384, 0.342, 0.307, &
479     !c pom insoluble
480     0.596, 0.536, 0.466, 0.409, 0.359/
481  !
482  DATA piz_aers_5wv/&
483                           ! bc soluble
484     .445, .445, .445, .445, .445, .445, &
485     .445, .445, .470, .487, .508, .531, &
486     .442, .442, .442, .442, .442, .442, &
487     .442, .442, .462, .481, .506, .533, &
488     .427, .427, .427, .427, .427, .427, &
489     .427, .427, .449, .470, .497, .526, &
490     .413, .413, .413, .413, .413, .413, &
491     .413, .413, .437, .458, .486, .516, &
492     .399, .399, .399, .399, .399, .399, &
493     .399, .399, .423, .445, .473, .506, &
494     ! pom soluble
495     .975, .975, .975, .975, .975, .977, &
496     .979, .982, .984, .987, .990, .994, &
497     .972, .972, .972, .972, .973, .974, &
498     .977, .980, .983, .986, .989, .993, &
499     .963, .963, .963, .963, .964, .966, &
500     .969, .974, .977, .982, .986, .991, &
501     .955, .955, .955, .955, .955, .958, &
502     .962, .967, .972, .977, .983, .989, &
503     .944, .944, .944, .944, .944, .948, &
504     .952, .959, .962, .972, .979, .987, &
505     ! sulfate soluble accumulation
506     1.000,1.000,1.000,1.000,1.000,1.000, &
507     1.000,1.000,1.000,1.000,1.000,1.000, &
508     1.000,1.000,1.000,1.000,1.000,1.000, &
509     1.000,1.000,1.000,1.000,1.000,1.000, &
510     1.000,1.000,1.000,1.000,1.000,1.000, &
511     1.000,1.000,1.000,1.000,1.000,1.000, &
512     1.000,1.000,1.000,1.000,1.000,1.000, &
513     1.000,1.000,1.000,1.000,1.000,1.000, &
514     1.000,1.000,1.000,1.000,1.000,1.000, &
515     1.000,1.000,1.000,1.000,1.000,1.000, &
516     ! sulfate soluble coarse
517     1.000,1.000,1.000,1.000,1.000,1.000, & 
518     1.000,1.000,1.000,1.000,1.000,1.000, & 
519     1.000,1.000,1.000,1.000,1.000,1.000, & 
520     1.000,1.000,1.000,1.000,1.000,1.000, & 
521     1.000,1.000,1.000,1.000,1.000,1.000, & 
522     1.000,1.000,1.000,1.000,1.000,1.000, & 
523     1.000,1.000,1.000,1.000,1.000,1.000, & 
524     1.000,1.000,1.000,1.000,1.000,1.000, & 
525     1.000,1.000,1.000,1.000,1.000,1.000, & 
526     1.000,1.000,1.000,1.000,1.000,1.000, & 
527     ! seasalt super coarse (computed below for 550nm)
528     1.000,1.000,1.000,1.000,1.000,1.000, & 
529     1.000,1.000,1.000,1.000,1.000,1.000, & 
530     1.000,1.000,1.000,1.000,1.000,1.000, & 
531     1.000,1.000,1.000,1.000,1.000,1.000, & 
532     1.000,1.000,1.000,1.000,1.000,1.000, & 
533     1.000,1.000,1.000,1.000,1.000,1.000, & 
534     1.000,1.000,1.000,1.000,1.000,1.000, & 
535     1.000,1.000,1.000,1.000,1.000,1.000, & 
536     1.000,1.000,1.000,1.000,1.000,1.000, & 
537     1.000,1.000,1.000,1.000,1.000,1.000, &
538     ! seasalt coarse (computed below for 550nm)
539     1.000,1.000,1.000,1.000,1.000,1.000, & 
540     1.000,1.000,1.000,1.000,1.000,1.000, & 
541     1.000,1.000,1.000,1.000,1.000,1.000, & 
542     1.000,1.000,1.000,1.000,1.000,1.000, & 
543     1.000,1.000,1.000,1.000,1.000,1.000, & 
544     1.000,1.000,1.000,1.000,1.000,1.000, & 
545     1.000,1.000,1.000,1.000,1.000,1.000, & 
546     1.000,1.000,1.000,1.000,1.000,1.000, & 
547     1.000,1.000,1.000,1.000,1.000,1.000, & 
548     1.000,1.000,1.000,1.000,1.000,1.000, & 
549     ! seasalt soluble accumulation (computed below for 550nm)
550     1.000,1.000,1.000,1.000,1.000,1.000, & 
551     1.000,1.000,1.000,1.000,1.000,1.000, & 
552     1.000,1.000,1.000,1.000,1.000,1.000, & 
553     1.000,1.000,1.000,1.000,1.000,1.000, & 
554     1.000,1.000,1.000,1.000,1.000,1.000, & 
555     1.000,1.000,1.000,1.000,1.000,1.000, & 
556     1.000,1.000,1.000,1.000,1.000,1.000, & 
557     1.000,1.000,1.000,1.000,1.000,1.000, & 
558     1.000,1.000,1.000,1.000,1.000,1.000, & 
559     1.000,1.000,1.000,1.000,1.000,1.000/
560 
561  !
562  DATA piz_aeri_5wv/&
563     ! dust insoluble
564     0.944, 0.970, 0.977, 0.982, 0.987, &
565     ! bc insoluble
566     0.415, 0.387, 0.355, 0.328, 0.301, &
567     ! pom insoluble
568     0.972, 0.963, 0.943, 0.923, 0.897/
569
570! Interpolation des coefficients optiques de 19 niveaux vers le nombre des niveaux du model
571  IF (firstcall) THEN
572     firstcall=.FALSE.
573! Allocation
574    IF (.NOT. ALLOCATED(A1_ASSSM)) THEN
575        ALLOCATE(A1_ASSSM(klev),A2_ASSSM(klev), A3_ASSSM(klev),&
576          B1_ASSSM(klev), B2_ASSSM(klev), C1_ASSSM(klev), C2_ASSSM(klev),&
577          A1_CSSSM(klev), A2_CSSSM(klev), A3_CSSSM(klev),&
578          B1_CSSSM(klev), B2_CSSSM(klev), C1_CSSSM(klev), C2_CSSSM(klev),&
579          A1_SSSSM(klev), A2_SSSSM(klev), A3_SSSSM(klev),&
580          B1_SSSSM(klev), B2_SSSSM(klev), C1_SSSSM(klev), C2_SSSSM(klev), stat=ierr)
581        IF (ierr /= 0) CALL abort_gcm('aeropt_5mw', 'pb in allocation 1',1)
582     END IF
583
584!Accumulation mode
585     CALL pres2lev(A1_ASSSM_19, A1_ASSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
586     CALL pres2lev(A2_ASSSM_19, A2_ASSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
587     CALL pres2lev(A3_ASSSM_19, A3_ASSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
588     CALL pres2lev(B1_ASSSM_19, B1_ASSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
589     CALL pres2lev(B2_ASSSM_19, B2_ASSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
590     CALL pres2lev(C1_ASSSM_19, C1_ASSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
591     CALL pres2lev(C2_ASSSM_19, C2_ASSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
592!Coarse mode
593     CALL pres2lev(A1_CSSSM_19, A1_CSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
594     CALL pres2lev(A2_CSSSM_19, A2_CSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
595     CALL pres2lev(A3_CSSSM_19, A3_CSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
596     CALL pres2lev(B1_CSSSM_19, B1_CSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
597     CALL pres2lev(B2_CSSSM_19, B2_CSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
598     CALL pres2lev(C1_CSSSM_19, C1_CSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
599     CALL pres2lev(C2_CSSSM_19, C2_CSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
600!Super coarse mode
601     CALL pres2lev(A1_SSSSM_19, A1_SSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
602     CALL pres2lev(A2_SSSSM_19, A2_SSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
603     CALL pres2lev(A3_SSSSM_19, A3_SSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
604     CALL pres2lev(B1_SSSSM_19, B1_SSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
605     CALL pres2lev(B2_SSSSM_19, B2_SSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
606     CALL pres2lev(C1_SSSSM_19, C1_SSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
607     CALL pres2lev(C2_SSSSM_19, C2_SSSSM, nb_level, klev, presnivs_19, presnivs, 1, 1, .FALSE.)
608
609  END IF ! firstcall
610
611
612  ! Initialisations
613  ai(:) = 0.
614  tausum(:,:,:) = 0.
615
616
617  DO k=1, klev
618    DO i=1, klon
619!      IF (t_seri(i,k).EQ.0) stop 'stop aeropt_5wv T '
620!      IF (pplay(i,k).EQ.0) stop  'stop aeropt_5wv p '
621      zrho=pplay(i,k)/t_seri(i,k)/RD                  ! kg/m3
622!CDIR UNROLL=naero_spc
623      mass_temp(i,k,:) = m_allaer(i,k,:) / zrho / 1.e+9
624      zdp1(i,k)=pdel(i,k)/(gravit*delt)     ! air mass auxiliary  variable --> zdp1 [kg/(m^2 *s)]
625
626    ENDDO
627  ENDDO
628
629
630  IF (flag_aerosol .EQ. 1) THEN
631     nb_aer = 2
632     ALLOCATE (aerosol_name(nb_aer))
633     aerosol_name(1) = id_ASSO4M
634     aerosol_name(2) = id_CSSO4M
635  ELSEIF (flag_aerosol .EQ. 2) THEN
636     nb_aer = 2
637     ALLOCATE (aerosol_name(nb_aer))
638     aerosol_name(1) = id_ASBCM
639     aerosol_name(2) = id_AIBCM
640  ELSEIF (flag_aerosol .EQ. 3) THEN
641     nb_aer = 2
642     ALLOCATE (aerosol_name(nb_aer))
643     aerosol_name(1) = id_ASPOMM
644     aerosol_name(2) = id_AIPOMM
645  ELSEIF (flag_aerosol .EQ. 4) THEN
646     nb_aer = 3
647     ALLOCATE (aerosol_name(nb_aer))
648     aerosol_name(1) = id_CSSSM
649     aerosol_name(2) = id_SSSSM
650     aerosol_name(3) = id_ASSSM
651  ELSEIF (flag_aerosol .EQ. 5) THEN
652     nb_aer = 1
653     ALLOCATE (aerosol_name(nb_aer))
654     aerosol_name(1) = id_CIDUSTM
655  ELSEIF (flag_aerosol .EQ. 6) THEN
656     nb_aer = 10
657     ALLOCATE (aerosol_name(nb_aer))
658     aerosol_name(1) = id_ASSO4M     
659     aerosol_name(2) = id_ASBCM
660     aerosol_name(3) = id_AIBCM
661     aerosol_name(4) = id_ASPOMM
662     aerosol_name(5) = id_AIPOMM
663     aerosol_name(6) = id_CSSSM
664     aerosol_name(7) = id_SSSSM
665     aerosol_name(8) = id_ASSSM
666     aerosol_name(9) = id_CIDUSTM
667     aerosol_name(10) = id_CSSO4M
668  ENDIF
669
670  !
671  ! loop over modes, use of precalculated nmd and corresponding sigma
672  !    loop over wavelengths
673  !    for each mass species in mode
674  !      interpolate from Sext to retrieve Sext_at_gridpoint_per_species
675  !      compute optical_thickness_at_gridpoint_per_species
676 
677
678  !
679  ! Calculations that need to be done since we are not in the subroutines INCA
680  !     
681
682!!CDIR ON_ADB(RH_tab)
683!CDIR ON_ADB(fact_RH)
684!CDIR NOVECTOR
685  DO RH_Num=1,nbre_RH-1
686    fact_RH(RH_num)=1./(RH_tab(RH_num+1)-RH_tab(RH_num))
687  ENDDO
688   
689  DO k=1, KLEV
690!!CDIR ON_ADB(RH_tab)
691!CDIR ON_ADB(fact_RH)
692    DO i=1, KLON
693      rh(i,k)=MIN(RHcl(i,k)*100.,RH_MAX)
694      RH_num = INT( rh(i,k)/10. + 1.)
695      IF (rh(i,k).GT.85.) RH_num=10
696      IF (rh(i,k).GT.90.) RH_num=11
697      DELTA(i,k)=(rh(i,k)-RH_tab(RH_num))*fact_RH(RH_num)
698    ENDDO
699  ENDDO
700
701!CDIR SHORTLOOP 
702  used_tau(:)=.FALSE.
703   
704  DO m=1,nb_aer   ! tau is only computed for each mass   
705    fac=1.0
706    IF (aerosol_name(m).EQ.id_ASBCM) THEN
707        soluble=.TRUE.
708        spsol=1
709        spss=0
710    ELSEIF (aerosol_name(m).EQ.id_ASPOMM) THEN
711        soluble=.TRUE.
712        spsol=2
713        spss=0
714    ELSEIF (aerosol_name(m).EQ.id_ASSO4M) THEN
715        soluble=.TRUE.
716        spsol=3
717        spss=0
718        fac=1.375    ! (NH4)2-SO4/SO4 132/96 mass conversion factor for OD
719    ELSEIF (aerosol_name(m).EQ.id_CSSO4M) THEN
720        soluble=.TRUE.
721        spsol=4
722        spss=0
723        fac=1.375    ! (NH4)2-SO4/SO4 132/96 mass conversion factor for OD
724    ELSEIF (aerosol_name(m).EQ.id_SSSSM) THEN
725        soluble=.TRUE.
726        spsol=5
727        spss=3
728    ELSEIF (aerosol_name(m).EQ.id_CSSSM) THEN
729        soluble=.TRUE.
730        spsol=6
731        spss=2
732    ELSEIF (aerosol_name(m).EQ.id_ASSSM) THEN
733        soluble=.TRUE.
734        spsol=7
735        spss=1
736    ELSEIF (aerosol_name(m).EQ.id_CIDUSTM) THEN
737        soluble=.FALSE.
738        spinsol=1
739        spss=0
740    ELSEIF  (aerosol_name(m).EQ.id_AIBCM) THEN
741        soluble=.FALSE.
742        spinsol=2
743        spss=0
744    ELSEIF (aerosol_name(m).EQ.id_AIPOMM) THEN
745        soluble=.FALSE.
746        spinsol=3
747        spss=0
748    ELSE
749        CYCLE
750    ENDIF
751
752    used_tau(spsol)=.TRUE.
753    DO la=1,las
754
755      IF (soluble) THEN
756
757        IF((la.EQ.2).AND.(spss.NE.0)) THEN !la=2 corresponds to 550 nm
758          IF (spss.EQ.1) THEN !accumulation mode
759            DO k=1, KLEV
760!CDIR ON_ADB(A1_ASSSM)
761!CDIR ON_ADB(A2_ASSSM)
762!CDIR ON_ADB(A3_ASSSM)
763              DO i=1, KLON
764                H=rh(i,k)/100
765                tau_ae5wv_int=A1_ASSSM(k)+A2_ASSSM(k)*H+A3_ASSSM(k)/(H-1.05)
766                tau(i,k,la,spsol) = mass_temp(i,k,spsol)*1000.*zdp1(i,k)   &
767                                   *tau_ae5wv_int*delt*fac
768                tausum(i,la,spsol)=tausum(i,la,spsol)+tau(i,k,la,spsol)
769              ENDDO
770            ENDDO
771          ENDIF
772 
773          IF (spss.EQ.2) THEN !coarse mode
774            DO k=1, KLEV
775!CDIR ON_ADB(A1_CSSSM)
776!CDIR ON_ADB(A2_CSSSM)
777!CDIR ON_ADB(A3_CSSSM)
778              DO i=1, KLON
779                H=rh(i,k)/100
780                tau_ae5wv_int=A1_CSSSM(k)+A2_CSSSM(k)*H+A3_CSSSM(k)/(H-1.05)
781                tau(i,k,la,spsol) = mass_temp(i,k,spsol)*1000.*zdp1(i,k)  &
782                                   *tau_ae5wv_int*delt*fac
783                tausum(i,la,spsol) = tausum(i,la,spsol)+tau(i,k,la,spsol)
784              ENDDO
785            ENDDO
786          ENDIF
787
788          IF (spss.EQ.3) THEN !super coarse mode
789            DO k=1, KLEV
790!CDIR ON_ADB(A1_SSSSM)
791!CDIR ON_ADB(A2_SSSSM)
792!CDIR ON_ADB(A3_SSSSM)
793              DO i=1, KLON
794                H=rh(i,k)/100
795                tau_ae5wv_int=A1_SSSSM(k)+A2_SSSSM(k)*H+A3_SSSSM(k)/(H-1.05)
796                tau(i,k,la,spsol) = mass_temp(i,k,spsol)*1000.*zdp1(i,k)  &
797                                   *tau_ae5wv_int*delt*fac
798                tausum(i,la,spsol)=tausum(i,la,spsol)+tau(i,k,la,spsol)
799              ENDDO
800            ENDDO
801          ENDIF
802
803        ELSE
804          DO k=1, KLEV
805!CDIR ON_ADB(alpha_aers_5wv)
806            DO i=1, KLON
807              rh(i,k)=MIN(RHcl(i,k)*100.,RH_MAX)
808              RH_num = INT( rh(i,k)/10. + 1.)
809              IF (rh(i,k).GT.85.) RH_num=10
810              IF (rh(i,k).GT.90.) RH_num=11
811
812              tau_ae5wv_int = alpha_aers_5wv(RH_num,la,spsol)+DELTA(i,k)* &
813                             (alpha_aers_5wv(RH_num+1,la,spsol) - &
814                              alpha_aers_5wv(RH_num,la,spsol))
815
816              tau(i,k,la,spsol) = mass_temp(i,k,spsol)*1000.*zdp1(i,k)   &
817                                 *tau_ae5wv_int*delt*fac
818              tausum(i,la,spsol)=tausum(i,la,spsol)+tau(i,k,la,spsol)
819            ENDDO
820          ENDDO
821        ENDIF
822
823      ELSE                                                  ! For insoluble aerosol
824        DO k=1, KLEV
825!CDIR ON_ADB(alpha_aeri_5wv)
826          DO i=1, KLON
827            tau_ae5wv_int = alpha_aeri_5wv(la,spinsol)
828            tau(i,k,la,naero_soluble+spinsol) = mass_temp(i,k,naero_soluble+spinsol)*1000.*zdp1(i,k)* &
829                                                tau_ae5wv_int*delt*fac
830            tausum(i,la,naero_soluble+spinsol)= tausum(i,la,naero_soluble+spinsol)  &
831                                               +tau(i,k,la,naero_soluble+spinsol)
832          ENDDO
833        ENDDO
834      ENDIF
835    ENDDO   ! boucle sur les longueurs d'onde
836  ENDDO     ! Boucle  sur les masses de traceurs
837
838  DO m=1,naero_spc
839    IF (.NOT.used_tau(m)) tau(:,:,:,m)=0.
840  ENDDO 
841!
842!
843!  taue670(:) = SUM(tausum(:,la670,:),dim=2)
844!  taue865(:) = SUM(tausum(:,la865,:),dim=2)
845!
846!  DO i=1, klon
847!    ai(i)=-LOG(MAX(taue670(i),0.0001)/ &
848!       MAX(taue865(i),0.0001))/LOG(670./865.)
849!  ENDDO
850
851  DEALLOCATE(aerosol_name)
852 
853END SUBROUTINE AEROPT_5WV
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