1 | ! |
---|
2 | ! aeropt_lw_rrtm.F90 2014-05-13 C. Kleinschmitt |
---|
3 | ! 2016-05-03 O. Boucher |
---|
4 | ! 2016-12-17 O. Boucher |
---|
5 | ! |
---|
6 | ! This routine feeds aerosol LW properties to RRTM |
---|
7 | ! we only consider absorption (not scattering) |
---|
8 | ! we only consider dust for now |
---|
9 | |
---|
10 | SUBROUTINE AEROPT_LW_RRTM(ok_alw, pdel, zrho, flag_aerosol, m_allaer, m_allaer_pi) |
---|
11 | |
---|
12 | USE dimphy |
---|
13 | USE aero_mod |
---|
14 | USE phys_state_var_mod, ONLY: tau_aero_lw_rrtm |
---|
15 | USE YOERAD, ONLY: NLW |
---|
16 | USE YOMCST, ONLY: RG |
---|
17 | |
---|
18 | IMPLICIT NONE |
---|
19 | |
---|
20 | INCLUDE "clesphys.h" |
---|
21 | ! |
---|
22 | ! Input arguments: |
---|
23 | ! |
---|
24 | LOGICAL, INTENT(IN) :: ok_alw |
---|
25 | INTEGER, INTENT(IN) :: flag_aerosol |
---|
26 | REAL, DIMENSION(klon,klev), INTENT(IN) :: pdel, zrho |
---|
27 | REAL, DIMENSION(klon,klev,naero_tot), INTENT(IN) :: m_allaer, m_allaer_pi |
---|
28 | ! |
---|
29 | INTEGER inu, i, k |
---|
30 | REAL :: zdh(klon,klev) |
---|
31 | REAL :: tmp_var, tmp_var_pi |
---|
32 | CHARACTER*20 modname |
---|
33 | ! |
---|
34 | !--absorption coefficient for CIDUST |
---|
35 | REAL:: alpha_abs_CIDUST_16bands(nbands_lw_rrtm) !--unit m2/g |
---|
36 | DATA alpha_abs_CIDUST_16bands / & |
---|
37 | 0.001, 0.003, 0.005, 0.006, 0.012, 0.030, 0.148, 0.098, & |
---|
38 | 0.017, 0.053, 0.031, 0.008, 0.010, 0.011, 0.013, 0.015 / |
---|
39 | ! |
---|
40 | modname='aeropt_lw_rrtm' |
---|
41 | ! |
---|
42 | IF (NLW.NE.nbands_lw_rrtm) THEN |
---|
43 | CALL abort_physic(modname,'Erreur NLW doit etre egal a 16 pour cette routine',1) |
---|
44 | ENDIF |
---|
45 | ! |
---|
46 | IF (ok_alw) THEN !--aerosol LW effects |
---|
47 | ! |
---|
48 | IF (flag_aerosol.EQ.5.OR.flag_aerosol.EQ.6.OR.flag_aerosol.EQ.7) THEN !-Dust |
---|
49 | ! |
---|
50 | zdh(:,:)=pdel(:,:)/(RG*zrho(:,:)) ! m |
---|
51 | ! |
---|
52 | DO k=1, klev |
---|
53 | DO i=1, klon |
---|
54 | ! |
---|
55 | tmp_var =m_allaer(i,k,id_CIDUSTM_phy) /1.e6*zdh(i,k) !--g/m2 |
---|
56 | tmp_var_pi=m_allaer_pi(i,k,id_CIDUSTM_phy)/1.e6*zdh(i,k) !--g/m2 |
---|
57 | ! |
---|
58 | DO inu=1, NLW |
---|
59 | ! |
---|
60 | !--total aerosol |
---|
61 | tau_aero_lw_rrtm(i,k,2,inu) = MAX(1.e-15,tmp_var*alpha_abs_CIDUST_16bands(inu)) |
---|
62 | !--natural aerosol |
---|
63 | ! tau_aero_lw_rrtm(:,:,1,inu) = MAX(1.e-15,tmp_var_pi*alpha_abs_CIDUST_16bands(inu)) |
---|
64 | tau_aero_lw_rrtm(i,k,1,inu) = 1.e-15 !--test |
---|
65 | ! |
---|
66 | ENDDO |
---|
67 | ENDDO |
---|
68 | ! |
---|
69 | ENDDO |
---|
70 | ! |
---|
71 | ENDIF |
---|
72 | ! |
---|
73 | ELSE !--no aerosol LW effects |
---|
74 | ! |
---|
75 | tau_aero_lw_rrtm = 1.e-15 |
---|
76 | ENDIF |
---|
77 | ! |
---|
78 | END SUBROUTINE AEROPT_LW_RRTM |
---|