LMDZ
srtm_taumol29.F90
Go to the documentation of this file.
1 SUBROUTINE srtm_taumol29 &
2  & ( klev,&
3  & p_fac00 , p_fac01 , p_fac10 , p_fac11,&
4  & k_jp , k_jt , k_jt1 , p_oneminus,&
5  & p_colh2o , p_colco2 , p_colmol,&
6  & k_laytrop , p_selffac, p_selffrac, k_indself , p_forfac, p_forfrac, k_indfor,&
7  & p_sfluxzen, p_taug , p_taur &
8  & )
9 
10 ! Written by Eli J. Mlawer, Atmospheric & Environmental Research.
11 
12 ! BAND 29: 820-2600 cm-1 (low - H2O; high - CO2)
13 
14 ! Modifications
15 ! M.Hamrud 01-Oct-2003 CY28 Cleaning
16 
17 ! JJMorcrette 2002-10-03 adapted to ECMWF environment
18 
19 ! PARAMETER (MG=16, MXLAY=203, NBANDS=14)
20 
21 USE parkind1 ,ONLY : jpim ,jprb
22 USE yomhook ,ONLY : lhook, dr_hook
23 
24 USE parsrtm , ONLY : jplay, jpg, ng29
25 USE yoesrta29, ONLY : absa, absb, forrefc, selfrefc &
26  & , sfluxrefc, absh2oc, absco2c, rayl &
27  & , layreffr
28 USE yoesrtwn , ONLY : nspa, nspb
29 
30 IMPLICIT NONE
31 
32 !-- Output
33 INTEGER(KIND=JPIM),INTENT(IN) :: KLEV
34 REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC00(jplay)
35 REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC01(jplay)
36 REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC10(jplay)
37 REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC11(jplay)
38 INTEGER(KIND=JPIM),INTENT(IN) :: K_JP(jplay)
39 INTEGER(KIND=JPIM),INTENT(IN) :: K_JT(jplay)
40 INTEGER(KIND=JPIM),INTENT(IN) :: K_JT1(jplay)
41 REAL(KIND=JPRB) :: P_ONEMINUS ! Argument NOT used
42 REAL(KIND=JPRB) ,INTENT(IN) :: P_COLH2O(jplay)
43 REAL(KIND=JPRB) ,INTENT(IN) :: P_COLCO2(jplay)
44 REAL(KIND=JPRB) ,INTENT(IN) :: P_COLMOL(jplay)
45 INTEGER(KIND=JPIM),INTENT(IN) :: K_LAYTROP
46 REAL(KIND=JPRB) ,INTENT(IN) :: P_SELFFAC(jplay)
47 REAL(KIND=JPRB) ,INTENT(IN) :: P_SELFFRAC(jplay)
48 INTEGER(KIND=JPIM),INTENT(IN) :: K_INDSELF(jplay)
49 REAL(KIND=JPRB) ,INTENT(IN) :: P_FORFAC(jplay)
50 REAL(KIND=JPRB) ,INTENT(IN) :: P_FORFRAC(jplay)
51 INTEGER(KIND=JPIM),INTENT(IN) :: K_INDFOR(jplay)
52 
53 REAL(KIND=JPRB) ,INTENT(OUT) :: P_SFLUXZEN(jpg)
54 REAL(KIND=JPRB) ,INTENT(OUT) :: P_TAUG(jplay,jpg)
55 REAL(KIND=JPRB) ,INTENT(OUT) :: P_TAUR(jplay,jpg)
56 !- from INTFAC
57 !- from INTIND
58 !- from PRECISE
59 !- from PROFDATA
60 !- from SELF
61 !-- from FOREIGN
62 INTEGER(KIND=JPIM) :: IG, IND0, IND1, INDS, INDF, I_LAY, I_LAYSOLFR, I_NLAYERS
63 
64 REAL(KIND=JPRB) :: &
65  & Z_TAURAY
66 REAL(KIND=JPRB) :: ZHOOK_HANDLE
67 
68 IF (lhook) CALL dr_hook('SRTM_TAUMOL29',0,zhook_handle)
69 i_nlayers = klev
70 
71 ! Compute the optical depth by interpolating in ln(pressure),
72 ! temperature, and appropriate species. Below LAYTROP, the water
73 ! vapor self-continuum is interpolated (in temperature) separately.
74 
75 DO i_lay = 1, k_laytrop
76  ind0 = ((k_jp(i_lay)-1)*5+(k_jt(i_lay)-1))*nspa(29) + 1
77  ind1 = (k_jp(i_lay)*5+(k_jt1(i_lay)-1))*nspa(29) + 1
78  inds = k_indself(i_lay)
79  indf = k_indfor(i_lay)
80  z_tauray = p_colmol(i_lay) * rayl
81 
82 ! DO IG = 1, NG(29)
83  DO ig = 1, ng29
84  p_taug(i_lay,ig) = p_colh2o(i_lay) * &
85  & ((p_fac00(i_lay) * absa(ind0,ig) + &
86  & p_fac10(i_lay) * absa(ind0+1,ig) + &
87  & p_fac01(i_lay) * absa(ind1,ig) + &
88  & p_fac11(i_lay) * absa(ind1+1,ig)) + &
89  & p_selffac(i_lay) * (selfrefc(inds,ig) + &
90  & p_selffrac(i_lay) * &
91  & (selfrefc(inds+1,ig) - selfrefc(inds,ig))) + &
92  & p_forfac(i_lay) * (forrefc(indf,ig) + &
93  & p_forfrac(i_lay) * &
94  & (forrefc(indf+1,ig) - forrefc(indf,ig)))) &
95  & + p_colco2(i_lay) * absco2c(ig)
96 ! & + TAURAY &
97 ! SSA(LAY,IG) = TAURAY/TAUG(LAY,IG)
98  p_taur(i_lay,ig) = z_tauray
99  ENDDO
100 ENDDO
101 
102 i_laysolfr = i_nlayers
103 DO i_lay = k_laytrop+1, i_nlayers
104  IF (k_jp(i_lay-1) < layreffr .AND. k_jp(i_lay) >= layreffr) &
105  & i_laysolfr = i_lay
106  ind0 = ((k_jp(i_lay)-13)*5+(k_jt(i_lay)-1))*nspb(29) + 1
107  ind1 = ((k_jp(i_lay)-12)*5+(k_jt1(i_lay)-1))*nspb(29) + 1
108  z_tauray = p_colmol(i_lay) * rayl
109 
110 ! DO IG = 1, NG(29)
111  DO ig = 1 , ng29
112  p_taug(i_lay,ig) = p_colco2(i_lay) * &
113  & (p_fac00(i_lay) * absb(ind0,ig) + &
114  & p_fac10(i_lay) * absb(ind0+1,ig) + &
115  & p_fac01(i_lay) * absb(ind1,ig) + &
116  & p_fac11(i_lay) * absb(ind1+1,ig)) &
117  & + p_colh2o(i_lay) * absh2oc(ig)
118 ! & + TAURAY
119 ! SSA(LAY,IG) = TAURAY/TAUG(LAY,IG)
120  IF (i_lay == i_laysolfr) p_sfluxzen(ig) = sfluxrefc(ig)
121  p_taur(i_lay,ig) = z_tauray
122  ENDDO
123 ENDDO
124 
125 !-----------------------------------------------------------------------
126 IF (lhook) CALL dr_hook('SRTM_TAUMOL29',1,zhook_handle)
127 END SUBROUTINE srtm_taumol29
128 
integer(kind=jpim), parameter jplay
Definition: parsrtm.F90:19
real(kind=jprb), dimension(65, ng29) absa
Definition: yoesrta29.F90:23
integer, save klev
Definition: dimphy.F90:7
real(kind=jprb), dimension(ng29) sfluxrefc
Definition: yoesrta29.F90:26
integer(kind=jpim), parameter ng29
Definition: parsrtm.F90:51
real(kind=jprb), dimension(235, ng29) absb
Definition: yoesrta29.F90:24
real(kind=jprb), dimension(10, ng29) selfrefc
Definition: yoesrta29.F90:25
integer(kind=jpim), dimension(16:29) nspa
Definition: yoesrtwn.F90:12
subroutine srtm_taumol29(KLEV, P_FAC00, P_FAC01, P_FAC10, P_FAC11, K_JP, K_JT, K_JT1, P_ONEMINUS, P_COLH2O, P_COLCO2, P_COLMOL, K_LAYTROP, P_SELFFAC, P_SELFFRAC, K_INDSELF, P_FORFAC, P_FORFRAC, K_INDFOR, P_SFLUXZEN, P_TAUG, P_TAUR)
integer, parameter jprb
Definition: parkind1.F90:31
integer(kind=jpim), dimension(16:29) nspb
Definition: yoesrtwn.F90:13
real(kind=jprb), dimension(ng29) absco2c
Definition: yoesrta29.F90:26
logical lhook
Definition: yomhook.F90:12
real(kind=jprb), dimension(4, ng29) forrefc
Definition: yoesrta29.F90:25
subroutine dr_hook(CDNAME, KSWITCH, PKEY)
Definition: yomhook.F90:17
real(kind=jprb) rayl
Definition: yoesrta29.F90:20
integer, parameter jpim
Definition: parkind1.F90:13
real(kind=jprb), dimension(ng29) absh2oc
Definition: yoesrta29.F90:26
integer(kind=jpim) layreffr
Definition: yoesrta29.F90:21
integer(kind=jpim), parameter jpg
Definition: parsrtm.F90:21