SURFEX v8.1
General documentation of Surfex
coupling_townn.F90
Go to the documentation of this file.
1 !SFX_LIC Copyright 1994-2014 CNRS, Meteo-France and Universite Paul Sabatier
2 !SFX_LIC This is part of the SURFEX software governed by the CeCILL-C licence
3 !SFX_LIC version 1. See LICENSE, CeCILL-C_V1-en.txt and CeCILL-C_V1-fr.txt
4 !SFX_LIC for details. version 1.
5 ! ###############################################################################
6 SUBROUTINE coupling_town_n (DTCO, U, DGO, DL, DLC, DST, SLT, TM, GDM, GRM, &
7  HPROGRAM, HCOUPLING, PTIMEC, PTSTEP, KYEAR, KMONTH, KDAY, PTIME, &
8  KI, KSV, KSW, PTSUN, PZENITH, PAZIM, PZREF, PUREF, PZS, PU, PV, &
9  PQA, PTA, PRHOA, PSV, PCO2, HSV, PRAIN, PSNOW, PLW, PDIR_SW, &
10  PSCA_SW, PSW_BANDS, PPS, PPA, PSFTQ, PSFTH, PSFTS, PSFCO2, PSFU, &
11  PSFV, PTRAD, PDIR_ALB, PSCA_ALB, PEMIS, PTSURF, PZ0, PZ0H, &
12  PQSURF, PPEW_A_COEF, PPEW_B_COEF, PPET_A_COEF, PPEQ_A_COEF, &
13  PPET_B_COEF, PPEQ_B_COEF, HTEST )
14 ! ###############################################################################
15 !
16 !!**** *COUPLING_TOWN_n * - Chooses the surface schemes for towns
17 !!
18 !! PURPOSE
19 !! -------
20 !
21 !!** METHOD
22 !! ------
23 !!
24 !! REFERENCE
25 !! ---------
26 !!
27 !!
28 !! AUTHOR
29 !! ------
30 !! V. Masson
31 !!
32 !! MODIFICATIONS
33 !! -------------
34 !! Original 01/2004
35 !! B. Decharme 04/2013 new coupling variables
36 !!------------------------------------------------------------------
37 !
38 !
40 USE modd_surf_atm_n, ONLY : surf_atm_t
42 USE modd_dst_n, ONLY : dst_t
43 USE modd_slt_n, ONLY : slt_t
44 USE modd_surfex_n, ONLY : teb_model_t
47 !
48 USE modd_csts, ONLY : xtt, xcpd, xrd, xp00
49 !
50 !
51 !
52 USE yomhook ,ONLY : lhook, dr_hook
53 USE parkind1 ,ONLY : jprb
54 !
55 USE modi_coupling_ideal_flux
56 !
57 USE modi_coupling_teb_orography_n
58 !
59 IMPLICIT NONE
60 !
61 !* 0.1 declarations of arguments
62 !
63 !
64 TYPE(data_cover_t), INTENT(INOUT) :: DTCO
65 TYPE(surf_atm_t), INTENT(INOUT) :: U
66 TYPE(diag_options_t), INTENT(IN) :: DGO
67 TYPE(diag_t), INTENT(INOUT) :: DL
68 TYPE(diag_t), INTENT(INOUT) :: DLC
69 TYPE(dst_t), INTENT(INOUT) :: DST
70 TYPE(slt_t), INTENT(INOUT) :: SLT
71 TYPE(teb_model_t), INTENT(INOUT) :: TM
72 TYPE(teb_garden_model_t), INTENT(INOUT) :: GDM
73 TYPE(teb_greenroof_model_t), INTENT(INOUT) :: GRM
74 !
75  CHARACTER(LEN=6), INTENT(IN) :: HPROGRAM ! program calling surf. schemes
76  CHARACTER(LEN=1), INTENT(IN) :: HCOUPLING ! type of coupling
77  ! 'E' : explicit
78  ! 'I' : implicit
79 REAL, INTENT(IN) :: PTIMEC ! cumulated time since beginning of simulation
80 INTEGER, INTENT(IN) :: KYEAR ! current year (UTC)
81 INTEGER, INTENT(IN) :: KMONTH ! current month (UTC)
82 INTEGER, INTENT(IN) :: KDAY ! current day (UTC)
83 REAL, INTENT(IN) :: PTIME ! current time since midnight (UTC, s)
84 INTEGER, INTENT(IN) :: KI ! number of points
85 INTEGER, INTENT(IN) :: KSV ! number of scalars
86 INTEGER, INTENT(IN) :: KSW ! number of short-wave spectral bands
87 REAL, DIMENSION(KI), INTENT(IN) :: PTSUN ! solar time (s from midnight)
88 REAL, INTENT(IN) :: PTSTEP ! atmospheric time-step (s)
89 REAL, DIMENSION(KI), INTENT(IN) :: PZREF ! height of T,q forcing (m)
90 REAL, DIMENSION(KI), INTENT(IN) :: PUREF ! height of wind forcing (m)
91 !
92 REAL, DIMENSION(KI), INTENT(IN) :: PTA ! air temperature forcing (K)
93 REAL, DIMENSION(KI), INTENT(IN) :: PQA ! air humidity forcing (kg/m3)
94 REAL, DIMENSION(KI), INTENT(IN) :: PRHOA ! air density (kg/m3)
95 REAL, DIMENSION(KI,KSV),INTENT(IN) :: PSV ! scalar variables
96 ! ! chemistry: first char. in HSV: '#' (molecule/m3)
97 ! !
98  CHARACTER(LEN=6), DIMENSION(KSV),INTENT(IN):: HSV ! name of all scalar variables
99 REAL, DIMENSION(KI), INTENT(IN) :: PU ! zonal wind (m/s)
100 REAL, DIMENSION(KI), INTENT(IN) :: PV ! meridian wind (m/s)
101 REAL, DIMENSION(KI,KSW),INTENT(IN) :: PDIR_SW ! direct solar radiation (on horizontal surf.)
102 ! ! (W/m2)
103 REAL, DIMENSION(KI,KSW),INTENT(IN) :: PSCA_SW ! diffuse solar radiation (on horizontal surf.)
104 ! ! (W/m2)
105 REAL, DIMENSION(KSW),INTENT(IN) :: PSW_BANDS ! mean wavelength of each shortwave band (m)
106 REAL, DIMENSION(KI), INTENT(IN) :: PZENITH ! zenithal angle (radian from the vertical)
107 REAL, DIMENSION(KI), INTENT(IN) :: PAZIM ! azimuthal angle (radian from North, clockwise)
108 REAL, DIMENSION(KI), INTENT(IN) :: PLW ! longwave radiation (on horizontal surf.)
109 ! ! (W/m2)
110 REAL, DIMENSION(KI), INTENT(IN) :: PPS ! pressure at atmospheric model surface (Pa)
111 REAL, DIMENSION(KI), INTENT(IN) :: PPA ! pressure at forcing level (Pa)
112 REAL, DIMENSION(KI), INTENT(IN) :: PZS ! atmospheric model orography (m)
113 REAL, DIMENSION(KI), INTENT(IN) :: PCO2 ! CO2 concentration in the air (kg/m3)
114 REAL, DIMENSION(KI), INTENT(IN) :: PSNOW ! snow precipitation (kg/m2/s)
115 REAL, DIMENSION(KI), INTENT(IN) :: PRAIN ! liquid precipitation (kg/m2/s)
116 !
117 !
118 REAL, DIMENSION(KI), INTENT(OUT) :: PSFTH ! flux of heat (W/m2)
119 REAL, DIMENSION(KI), INTENT(OUT) :: PSFTQ ! flux of water vapor (kg/m2/s)
120 REAL, DIMENSION(KI), INTENT(OUT) :: PSFU ! zonal momentum flux (Pa)
121 REAL, DIMENSION(KI), INTENT(OUT) :: PSFV ! meridian momentum flux (Pa)
122 REAL, DIMENSION(KI), INTENT(OUT) :: PSFCO2 ! flux of CO2 (m/s*kg_CO2/kg_air)
123 REAL, DIMENSION(KI,KSV),INTENT(OUT):: PSFTS ! flux of scalar var. (kg/m2/s)
124 !
125 REAL, DIMENSION(KI), INTENT(OUT) :: PTRAD ! radiative temperature (K)
126 REAL, DIMENSION(KI,KSW),INTENT(OUT):: PDIR_ALB! direct albedo for each spectral band (-)
127 REAL, DIMENSION(KI,KSW),INTENT(OUT):: PSCA_ALB! diffuse albedo for each spectral band (-)
128 REAL, DIMENSION(KI), INTENT(OUT) :: PEMIS ! emissivity (-)
129 !
130 REAL, DIMENSION(KI), INTENT(OUT) :: PTSURF ! surface effective temperature (K)
131 REAL, DIMENSION(KI), INTENT(OUT) :: PZ0 ! roughness length for momentum (m)
132 REAL, DIMENSION(KI), INTENT(OUT) :: PZ0H ! roughness length for heat (m)
133 REAL, DIMENSION(KI), INTENT(OUT) :: PQSURF ! specific humidity at surface (kg/kg)
134 !
135 REAL, DIMENSION(KI), INTENT(IN) :: PPEW_A_COEF! implicit coefficients
136 REAL, DIMENSION(KI), INTENT(IN) :: PPEW_B_COEF! needed if HCOUPLING='I'
137 REAL, DIMENSION(KI), INTENT(IN) :: PPET_A_COEF
138 REAL, DIMENSION(KI), INTENT(IN) :: PPEQ_A_COEF
139 REAL, DIMENSION(KI), INTENT(IN) :: PPET_B_COEF
140 REAL, DIMENSION(KI), INTENT(IN) :: PPEQ_B_COEF
141  CHARACTER(LEN=2), INTENT(IN) :: HTEST ! must be equal to 'OK'
142 !
143 !* 0.2 declarations of local variables
144 !
145 REAL(KIND=JPRB) :: ZHOOK_HANDLE
146 !
147 !-------------------------------------------------------------------------------------
148 !
149 !* 0. initialization of implicit coefficients
150 ! ---------------------------------------
151 !
152 IF (lhook) CALL dr_hook('COUPLING_TOWN_N',0,zhook_handle)
153 !
154 IF (u%CTOWN=='TEB ') THEN
155  CALL coupling_teb_orography_n(dtco, dst, slt, tm, gdm, grm, hprogram, hcoupling, ptstep, &
156  kyear, kmonth, kday, ptime, ki, ksv, ksw, ptsun, pzenith, &
157  pazim, pzref, puref, pzs, pu, pv, pqa, pta, prhoa, psv, &
158  pco2, hsv, prain, psnow, plw, pdir_sw, psca_sw, psw_bands, &
159  pps, ppa, psftq, psfth, psfts, psfco2, psfu, psfv, ptrad, &
160  pdir_alb, psca_alb, pemis, ptsurf, pz0, pz0h, pqsurf, &
161  ppew_a_coef, ppew_b_coef, ppet_a_coef, ppeq_a_coef, &
162  ppet_b_coef, ppeq_b_coef, 'OK' )
163 ELSE IF (u%CTOWN=='FLUX ') THEN
164  CALL coupling_ideal_flux(dgo, dl, dlc, hprogram, hcoupling, ptimec, ptstep, kyear, &
165  kmonth, kday, ptime, ki, ksv, ksw, ptsun, pzenith, pazim, &
166  pzref, puref, pzs, pu, pv, pqa, pta, prhoa, psv, pco2, hsv, &
167  prain, psnow, plw, pdir_sw, psca_sw, psw_bands, pps, ppa, &
168  psftq, psfth, psfts, psfco2, psfu, psfv, ptrad, pdir_alb, &
169  psca_alb, pemis, ptsurf, pz0, pz0h, pqsurf, ppew_a_coef, &
170  ppew_b_coef, ppet_a_coef, ppeq_a_coef, ppet_b_coef, &
171  ppeq_b_coef, 'OK' )
172 ELSE IF (u%CTOWN=='NONE ') THEN
173  psfth = 0.
174  psftq = 0.
175  psfts = 0.
176  psfu = 0.
177  psfv = 0.
178  psfco2= 0.
179 !
180  ptrad = xtt
181  pdir_alb = 0.
182  psca_alb = 0.
183  pemis = 1.
184 !
185  ptsurf = xtt
186  pz0 = 0.1
187  pz0h = 0.001
188  pqsurf = 0.0
189 !
190 END IF
191 IF (lhook) CALL dr_hook('COUPLING_TOWN_N',1,zhook_handle)
192 !
193 !-------------------------------------------------------------------------------------
194 !
195 END SUBROUTINE coupling_town_n
subroutine coupling_town_n(DTCO, U, DGO, DL, DLC, DST, SLT, TM, GDM, GRM, HPROGRAM, HCOUPLING, PTIMEC, PTSTEP, KYEAR, KMONTH, KDAY, PTIME, KI, KSV, KSW, PTSUN, PZENITH, PAZIM, PZREF, PUREF, PZS, PU, PV, PQA, PTA, PRHOA, PSV, PCO2, HSV, PRAIN, PSNOW, PLW, PDIR_SW, PSCA_SW, PSW_BANDS, PPS, PPA, PSFTQ, PSFTH, PSFTS, PSFCO2, PSFU, PSFV, PTRAD, PDIR_ALB, PSCA_ALB, PEMIS, PTSURF, PZ0, PZ0H, PQSURF, PPEW_A_COEF, PPEW_B_COEF, PPET_A_COEF, PPEQ_A_COEF, PPET_B_COEF, PPEQ_B_COEF, HTEST)
real, save xcpd
Definition: modd_csts.F90:63
real, save xrd
Definition: modd_csts.F90:62
integer, parameter jprb
Definition: parkind1.F90:32
logical lhook
Definition: yomhook.F90:15
subroutine coupling_ideal_flux(DGO, D, DC, HPROGRAM, HCOUPLING, PTIMEC, PTSTEP, KYEAR, KMONTH, KDAY, PTIME, KI, KSV, KSW, PTSUN, PZENITH, PAZIM, PZREF, PUREF, PZS, PU, PV, PQA, PTA, PRHOA, PSV, PCO2, HSV, PRAIN, PSNOW, PLW, PDIR_SW, PSCA_SW, PSW_BANDS, PPS, PPA, PSFTQ, PSFTH, PSFTS, PSFCO2, PSFU, PSFV, PTRAD, PDIR_ALB, PSCA_ALB, PEMIS, PTSURF, PZ0, PZ0H, PQSURF, PPEW_A_COEF, PPEW_B_COEF, PPET_A_COEF, PPEQ_A_COEF, PPET_B_COEF, PPEQ_B_COEF, HTEST)
real, save xtt
Definition: modd_csts.F90:66
subroutine coupling_teb_orography_n(DTCO, DST, SLT, TM, GDM, GRM, HPROGRAM, HCOUPLING, PTSTEP, KYEAR, KMONTH, KDAY, PTIME, KI, KSV, KSW, PTSUN, PZENITH, PAZIM, PZREF, PUREF, PZS, PU, PV, PQA, PTA, PRHOA, PSV, PCO2, HSV, PRAIN, PSNOW, PLW, PDIR_SW, PSCA_SW, PSW_BANDS, PPS, PPA, PSFTQ, PSFTH, PSFTS, PSFCO2, PSFU, PSFV, PTRAD, PDIR_ALB, PSCA_ALB, PEMIS, PTSURF, PZ0, PZ0H, PQSURF, PPEW_A_COEF, PPEW_B_COEF, PPET_A_COEF, PPEQ_A_COEF, PPET_B_COEF, PPEQ_B_COEF, HTEST)
real, save xp00
Definition: modd_csts.F90:57