LMDZ
rrtm_taumol13.F90
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1 !----------------------------------------------------------------------------
2 SUBROUTINE rrtm_taumol13 (KLEV,P_TAU,&
3  & p_tauaerl,p_fac00,p_fac01,p_fac10,p_fac11,k_jp,k_jt,k_jt1,p_oneminus,&
4  & p_colh2o,p_coln2o,k_laytrop,p_selffac,p_selffrac,k_indself,pfrac)
5 
6 ! BAND 13: 2080-2250 cm-1 (low - H2O,N2O; high - nothing)
7 
8 ! Modifications
9 ! M.Hamrud 01-Oct-2003 CY28 Cleaning
10 
11 ! D Salmond 2000-05-15 speed-up
12 
13 USE parkind1 ,ONLY : jpim ,jprb
14 USE yomhook ,ONLY : lhook, dr_hook
15 
16 USE parrrtm , ONLY : jplay ,jpband ,jpgpt ,ng13 ,ngs12
17 USE yoerrtwn , ONLY : nspa
19 
20 ! Input
21 !#include "yoeratm.h"
22 
23 ! REAL TAUAER(JPLAY)
24 
25 IMPLICIT NONE
26 
27 ! Output
28 INTEGER(KIND=JPIM),INTENT(IN) :: KLEV
29 REAL(KIND=JPRB) ,INTENT(OUT) :: P_TAU(jpgpt,jplay)
30 REAL(KIND=JPRB) ,INTENT(IN) :: P_TAUAERL(jplay,jpband)
31 REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC00(jplay)
32 REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC01(jplay)
33 REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC10(jplay)
34 REAL(KIND=JPRB) ,INTENT(IN) :: P_FAC11(jplay)
35 INTEGER(KIND=JPIM),INTENT(IN) :: K_JP(jplay)
36 INTEGER(KIND=JPIM),INTENT(IN) :: K_JT(jplay)
37 INTEGER(KIND=JPIM),INTENT(IN) :: K_JT1(jplay)
38 REAL(KIND=JPRB) ,INTENT(IN) :: P_ONEMINUS
39 REAL(KIND=JPRB) ,INTENT(IN) :: P_COLH2O(jplay)
40 REAL(KIND=JPRB) ,INTENT(IN) :: P_COLN2O(jplay)
41 INTEGER(KIND=JPIM),INTENT(IN) :: K_LAYTROP
42 REAL(KIND=JPRB) ,INTENT(IN) :: P_SELFFAC(jplay)
43 REAL(KIND=JPRB) ,INTENT(IN) :: P_SELFFRAC(jplay)
44 INTEGER(KIND=JPIM),INTENT(IN) :: K_INDSELF(jplay)
45 REAL(KIND=JPRB) ,INTENT(OUT) :: PFRAC(jpgpt,jplay)
46 !- from AER
47 !- from INTFAC
48 !- from INTIND
49 !- from PRECISE
50 !- from PROFDATA
51 !- from SELF
52 !- from SP
53 INTEGER(KIND=JPIM) :: IJS(jplay)
54 REAL(KIND=JPRB) :: ZFS(jplay),Z_SPECCOMB(jplay)
55 INTEGER(KIND=JPIM) :: IND0(jplay),IND1(jplay),INDS(jplay)
56 
57 INTEGER(KIND=JPIM) :: IG, JS, I_LAY
58 
59 REAL(KIND=JPRB) :: Z_FAC000, Z_FAC001, Z_FAC010, Z_FAC011, Z_FAC100, Z_FAC101,&
60  & Z_FAC110, Z_FAC111, Z_FS, Z_SPECMULT, Z_SPECPARM
61 REAL(KIND=JPRB) :: ZHOOK_HANDLE
62 
63 ! EQUIVALENCE (TAUAERL(1,13),TAUAER)
64 
65 ! Compute the optical depth by interpolating in ln(pressure),
66 ! temperature, and appropriate species. Below LAYTROP, the water
67 ! vapor self-continuum is interpolated (in temperature) separately.
68 
69 IF (lhook) CALL dr_hook('RRTM_TAUMOL13',0,zhook_handle)
70 DO i_lay = 1, k_laytrop
71  z_speccomb(i_lay) = p_colh2o(i_lay) + strrat*p_coln2o(i_lay)
72  z_specparm = p_colh2o(i_lay)/z_speccomb(i_lay)
73  z_specparm=min(p_oneminus,z_specparm)
74  z_specmult = 8._jprb*(z_specparm)
75  js = 1 + int(z_specmult)
76  z_fs = mod(z_specmult,1.0_jprb)
77  ind0(i_lay) = ((k_jp(i_lay)-1)*5+(k_jt(i_lay)-1))*nspa(13) + js
78  ind1(i_lay) = (k_jp(i_lay)*5+(k_jt1(i_lay)-1))*nspa(13) + js
79  inds(i_lay) = k_indself(i_lay)
80 
81  zfs(i_lay)=z_fs
82  ijs(i_lay)=js
83 
84 ENDDO
85 
86 !-- DS_000515
87 DO ig = 1, ng13
88  DO i_lay = 1, k_laytrop
89 !-- DS_000515
90 
91  z_fs=zfs(i_lay)
92  js=ijs(i_lay)
93 !---jjm
94 ! FAC000 = (_ONE_ - FS) * FAC00(LAY)
95 ! FAC010 = (_ONE_ - FS) * FAC10(LAY)
96 ! FAC100 = FS * FAC00(LAY)
97 ! FAC110 = FS * FAC10(LAY)
98 ! FAC001 = (_ONE_ - FS) * FAC01(LAY)
99 ! FAC011 = (_ONE_ - FS) * FAC11(LAY)
100 ! FAC101 = FS * FAC01(LAY)
101 ! FAC111 = FS * FAC11(LAY)
102 !----
103  p_tau(ngs12+ig,i_lay) = z_speccomb(i_lay) *&
104  !-- DS_000515
105  & ( (1. - z_fs) *( p_fac00(i_lay) * absa(ind0(i_lay) ,ig) + &
106  & p_fac10(i_lay) * absa(ind0(i_lay)+ 9,ig) + &
107  & p_fac01(i_lay) * absa(ind1(i_lay) ,ig) + &
108  & p_fac11(i_lay) * absa(ind1(i_lay)+ 9,ig))+ &
109  & z_fs *( p_fac00(i_lay) * absa(ind0(i_lay)+ 1,ig) + &
110  & p_fac10(i_lay) * absa(ind0(i_lay)+10,ig) + &
111  & p_fac01(i_lay) * absa(ind1(i_lay)+ 1,ig) + &
112  & p_fac11(i_lay) * absa(ind1(i_lay)+10,ig))) + &
113  ! &(Z_FAC000 * ABSA(IND0(I_LAY) ,IG) +&
114  ! & Z_FAC100 * ABSA(IND0(I_LAY)+ 1,IG) +&
115  ! & Z_FAC010 * ABSA(IND0(I_LAY)+ 9,IG) +&
116  ! & Z_FAC110 * ABSA(IND0(I_LAY)+10,IG) +&
117  ! & Z_FAC001 * ABSA(IND1(I_LAY) ,IG) +&
118  ! & Z_FAC101 * ABSA(IND1(I_LAY)+ 1,IG) +&
119  ! & Z_FAC011 * ABSA(IND1(I_LAY)+ 9,IG) +&
120  ! & Z_FAC111 * ABSA(IND1(I_LAY)+10,IG))+&
121  !-- DS_000515
122  & p_colh2o(i_lay) * &
123  & p_selffac(i_lay) * (selfref(inds(i_lay),ig) + &
124  & p_selffrac(i_lay) *&
125  & (selfref(inds(i_lay)+1,ig) - selfref(inds(i_lay),ig)))&
126  & + p_tauaerl(i_lay,13)
127  pfrac(ngs12+ig,i_lay) = fracrefa(ig,js) + z_fs *&
128  & (fracrefa(ig,js+1) - fracrefa(ig,js))
129  ENDDO
130 ENDDO
131 
132 !-- JJM_000517
133 DO ig = 1, ng13
134  DO i_lay = k_laytrop+1, klev
135 !-- JJM_000517
136  p_tau(ngs12+ig,i_lay) = p_tauaerl(i_lay,13)
137  pfrac(ngs12+ig,i_lay) = 0.0_jprb
138  ENDDO
139 ENDDO
140 
141 IF (lhook) CALL dr_hook('RRTM_TAUMOL13',1,zhook_handle)
142 END SUBROUTINE rrtm_taumol13
subroutine rrtm_taumol13(KLEV, P_TAU, P_TAUAERL, P_FAC00, P_FAC01, P_FAC10, P_FAC11, K_JP, K_JT, K_JT1, P_ONEMINUS, P_COLH2O, P_COLN2O, K_LAYTROP, P_SELFFAC, P_SELFFRAC, K_INDSELF, PFRAC)
real(kind=jprb), dimension(ng13, 9) fracrefa
Definition: yoerrta13.F90:16
integer(kind=jpim), parameter jpgpt
Definition: parrrtm.F90:21
integer(kind=jpim), parameter jpband
Definition: parrrtm.F90:18
integer, parameter jprb
Definition: parkind1.F90:31
real(kind=jprb), dimension(10, ng13) selfref
Definition: yoerrta13.F90:19
integer(kind=jpim), parameter ngs12
Definition: parrrtm.F90:51
integer(kind=jpim), dimension(16) nspa
Definition: yoerrtwn.F90:12
logical lhook
Definition: yomhook.F90:12
real(kind=jprb), dimension(585, ng13) absa
Definition: yoerrta13.F90:18
integer(kind=jpim), parameter jplay
Definition: parrrtm.F90:15
real(kind=jprb) strrat
Definition: yoerrta13.F90:20
subroutine dr_hook(CDNAME, KSWITCH, PKEY)
Definition: yomhook.F90:17
integer, parameter jpim
Definition: parkind1.F90:13
integer(kind=jpim), parameter ng13
Definition: parrrtm.F90:35