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 &
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
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)
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)
62 INTEGER(KIND=JPIM) :: IG, IND0, IND1, INDS, INDF, I_LAY, I_LAYSOLFR, I_NLAYERS
66 REAL(KIND=JPRB) :: ZHOOK_HANDLE
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
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) * &
92 & p_forfac(i_lay) * (
forrefc(indf,ig) + &
93 & p_forfrac(i_lay) * &
95 & + p_colco2(i_lay) *
absco2c(ig)
98 p_taur(i_lay,ig) = z_tauray
102 i_laysolfr = i_nlayers
103 DO i_lay = k_laytrop+1, i_nlayers
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
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)
120 IF (i_lay == i_laysolfr) p_sfluxzen(ig) =
sfluxrefc(ig)
121 p_taur(i_lay,ig) = z_tauray
integer(kind=jpim), parameter jplay
real(kind=jprb), dimension(65, ng29) absa
real(kind=jprb), dimension(ng29) sfluxrefc
integer(kind=jpim), parameter ng29
real(kind=jprb), dimension(235, ng29) absb
real(kind=jprb), dimension(10, ng29) selfrefc
integer(kind=jpim), dimension(16:29) nspa
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(kind=jpim), dimension(16:29) nspb
real(kind=jprb), dimension(ng29) absco2c
real(kind=jprb), dimension(4, ng29) forrefc
subroutine dr_hook(CDNAME, KSWITCH, PKEY)
real(kind=jprb), dimension(ng29) absh2oc
integer(kind=jpim) layreffr
integer(kind=jpim), parameter jpg