SURFEX v8.1
General documentation of Surfex
coupling_flake_sbln.F90
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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_flake_sbl_n (SB, CHF, DGO, D, DC, DMF, F, DST, SLT, &
7  HPROGRAM, HCOUPLING, PTSTEP, KYEAR, KMONTH, KDAY, PTIME, &
8  KI, KSV, KSW, PTSUN, PZENITH, PZENITH2, PAZIM, PZREF, PUREF, PU, PV, &
9  PQA, PTA, PRHOA, PSV, PCO2, HSV,PRAIN, PSNOW, PLW, PDIR_SW, PSCA_SW, &
10  PSW_BANDS, PPS, PPA, PSFTQ, PSFTH, PSFTS, PSFCO2, PSFU, PSFV, &
11  PTRAD, PDIR_ALB, PSCA_ALB, PEMIS, PTSURF, PZ0, PZ0H, PQSURF, &
12  PPEW_A_COEF, PPEW_B_COEF, PPET_A_COEF, PPEQ_A_COEF, PPET_B_COEF, &
13  PPEQ_B_COEF, HTEST )
14 ! ###############################################################################
15 !
16 !!**** *COUPLING_FLAKE_SBL_n * - Adds a SBL into SEAFLUX
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 09/2007
35 !! V. Masson 05/2009 Implicitation of momentum fluxes
36 !! S. Riette 06/2009 Initialisation of XT, PQ, XU and XTKE on canopy levels
37 !! S. Riette 10/2009 Iterative computation of XZ0
38 !! S. Riette 01/2010 Use of interpol_sbl to compute 10m wind diagnostic
39 !! B. Decharme 04/2013 new coupling variables
40 !----------------------------------------------------------------
41 !
42 !
43 USE modd_canopy_n, ONLY : canopy_t
44 USE modd_ch_flake_n, ONLY : ch_flake_t
47 USE modd_flake_n, ONLY : flake_t
48 !
49 USE modd_dst_n, ONLY : dst_t
50 USE modd_slt_n, ONLY : slt_t
51 !
52 USE modd_surf_par, ONLY : xundef
53 USE modd_csts, ONLY : xcpd
54 !
56 !
57 USE modi_init_water_sbl
58 !
59 USE modi_canopy_evol
60 USE modi_canopy_grid_update
61 !
62 USE modi_coupling_flake_n
63 !
64 USE yomhook ,ONLY : lhook, dr_hook
65 USE parkind1 ,ONLY : jprb
66 !
67 IMPLICIT NONE
68 !
69 !* 0.1 declarations of arguments
70 !
71 !
72 TYPE(canopy_t), INTENT(INOUT) :: SB
73 TYPE(ch_flake_t), INTENT(INOUT) :: CHF
74 TYPE(diag_options_t), INTENT(INOUT) :: DGO
75 TYPE(diag_t), INTENT(INOUT) :: D
76 TYPE(diag_t), INTENT(INOUT) :: DC
77 TYPE(diag_misc_flake_t), INTENT(INOUT) :: DMF
78 TYPE(flake_t), INTENT(INOUT) :: F
79 !
80 TYPE(dst_t), INTENT(INOUT) :: DST
81 TYPE(slt_t), INTENT(INOUT) :: SLT
82 !
83  CHARACTER(LEN=6), INTENT(IN) :: HPROGRAM ! program calling surf. schemes
84  CHARACTER(LEN=1), INTENT(IN) :: HCOUPLING ! type of coupling
85  ! 'E' : explicit
86  ! 'I' : implicit
87 INTEGER, INTENT(IN) :: KYEAR ! current year (UTC)
88 INTEGER, INTENT(IN) :: KMONTH ! current month (UTC)
89 INTEGER, INTENT(IN) :: KDAY ! current day (UTC)
90 REAL, INTENT(IN) :: PTIME ! current time since midnight (UTC, s)
91 INTEGER, INTENT(IN) :: KI ! number of points
92 INTEGER, INTENT(IN) :: KSV ! number of scalars
93 INTEGER, INTENT(IN) :: KSW ! number of short-wave spectral bands
94 REAL, DIMENSION(KI), INTENT(IN) :: PTSUN ! solar time (s from midnight)
95 REAL, INTENT(IN) :: PTSTEP ! atmospheric time-step (s)
96 REAL, DIMENSION(KI), INTENT(IN) :: PZREF ! height of T,q forcing (m)
97 REAL, DIMENSION(KI), INTENT(IN) :: PUREF ! height of wind forcing (m)
98 !
99 REAL, DIMENSION(KI), INTENT(IN) :: PTA ! air temperature forcing (K)
100 REAL, DIMENSION(KI), INTENT(IN) :: PQA ! air humidity forcing (kg/m3)
101 REAL, DIMENSION(KI), INTENT(IN) :: PRHOA ! air density (kg/m3)
102 REAL, DIMENSION(KI,KSV),INTENT(IN) :: PSV ! scalar variables
103 ! ! chemistry: first char. in HSV: '#' (molecule/m3)
104 ! !
105  CHARACTER(LEN=6), DIMENSION(KSV),INTENT(IN):: HSV ! name of all scalar variables
106 REAL, DIMENSION(KI), INTENT(IN) :: PU ! zonal wind (m/s)
107 REAL, DIMENSION(KI), INTENT(IN) :: PV ! meridian wind (m/s)
108 REAL, DIMENSION(KI,KSW),INTENT(IN) :: PDIR_SW ! direct solar radiation (on horizontal surf.)
109 ! ! (W/m2)
110 REAL, DIMENSION(KI,KSW),INTENT(IN) :: PSCA_SW ! diffuse solar radiation (on horizontal surf.)
111 ! ! (W/m2)
112 REAL, DIMENSION(KSW),INTENT(IN) :: PSW_BANDS ! mean wavelength of each shortwave band (m)
113 REAL, DIMENSION(KI), INTENT(IN) :: PZENITH ! zenithal angle at t (radian from the vertical)
114 REAL, DIMENSION(KI), INTENT(IN) :: PZENITH2 ! zenithal angle at t+1(radian from the vertical)
115 REAL, DIMENSION(KI), INTENT(IN) :: PAZIM ! azimuthal angle (radian from North, clockwise)
116 REAL, DIMENSION(KI), INTENT(IN) :: PLW ! longwave radiation (on horizontal surf.)
117 ! ! (W/m2)
118 REAL, DIMENSION(KI), INTENT(IN) :: PPS ! pressure at atmospheric model surface (Pa)
119 REAL, DIMENSION(KI), INTENT(IN) :: PPA ! pressure at forcing level (Pa)
120 REAL, DIMENSION(KI), INTENT(IN) :: PCO2 ! CO2 concentration in the air (kg/m3)
121 REAL, DIMENSION(KI), INTENT(IN) :: PSNOW ! snow precipitation (kg/m2/s)
122 REAL, DIMENSION(KI), INTENT(IN) :: PRAIN ! liquid precipitation (kg/m2/s)
123 !
124 !
125 REAL, DIMENSION(KI), INTENT(OUT) :: PSFTH ! flux of heat (W/m2)
126 REAL, DIMENSION(KI), INTENT(OUT) :: PSFTQ ! flux of water vapor (kg/m2/s)
127 REAL, DIMENSION(KI), INTENT(OUT) :: PSFU ! zonal momentum flux (Pa)
128 REAL, DIMENSION(KI), INTENT(OUT) :: PSFV ! meridian momentum flux (Pa)
129 REAL, DIMENSION(KI), INTENT(OUT) :: PSFCO2 ! flux of CO2 (m/s*kg_CO2/kg_air)
130 REAL, DIMENSION(KI,KSV),INTENT(OUT):: PSFTS ! flux of scalar var. (kg/m2/s)
131 !
132 REAL, DIMENSION(KI), INTENT(OUT) :: PTRAD ! radiative temperature (K)
133 REAL, DIMENSION(KI,KSW),INTENT(OUT):: PDIR_ALB! direct albedo for each spectral band (-)
134 REAL, DIMENSION(KI,KSW),INTENT(OUT):: PSCA_ALB! diffuse albedo for each spectral band (-)
135 REAL, DIMENSION(KI), INTENT(OUT) :: PEMIS ! emissivity (-)
136 !
137 REAL, DIMENSION(KI), INTENT(OUT) :: PTSURF ! surface effective temperature (K)
138 REAL, DIMENSION(KI), INTENT(OUT) :: PZ0 ! roughness length for momentum (m)
139 REAL, DIMENSION(KI), INTENT(OUT) :: PZ0H ! roughness length for heat (m)
140 REAL, DIMENSION(KI), INTENT(OUT) :: PQSURF ! specific humidity at surface (kg/kg)
141 !
142 REAL, DIMENSION(KI), INTENT(IN) :: PPEW_A_COEF! implicit coefficients
143 REAL, DIMENSION(KI), INTENT(IN) :: PPEW_B_COEF! needed if HCOUPLING='I'
144 REAL, DIMENSION(KI), INTENT(IN) :: PPET_A_COEF
145 REAL, DIMENSION(KI), INTENT(IN) :: PPEQ_A_COEF
146 REAL, DIMENSION(KI), INTENT(IN) :: PPET_B_COEF
147 REAL, DIMENSION(KI), INTENT(IN) :: PPEQ_B_COEF
148  CHARACTER(LEN=2), INTENT(IN) :: HTEST ! must be equal to 'OK'
149 !
150 !* 0.2 declarations of local variables
151 !
152 !* forcing variables
153 !
154 REAL, DIMENSION(KI) :: ZWIND ! lowest atmospheric level wind speed (m/s)
155 REAL, DIMENSION(KI) :: ZEXNA ! Exner function at lowest SBL scheme level (-)
156 REAL, DIMENSION(KI) :: ZTA ! temperature (K)
157 REAL, DIMENSION(KI) :: ZPA ! pressure (Pa)
158 REAL, DIMENSION(KI) :: ZZREF ! temperature forcing level (m)
159 REAL, DIMENSION(KI) :: ZUREF ! wind forcing level (m)
160 REAL, DIMENSION(KI) :: ZU ! zonal wind (m/s)
161 REAL, DIMENSION(KI) :: ZV ! meridian wind (m/s)
162 REAL, DIMENSION(KI) :: ZQA ! specific humidity (kg/m3)
163 REAL, DIMENSION(KI) :: ZPEQ_A_COEF ! specific humidity implicit
164 REAL, DIMENSION(KI) :: ZPEQ_B_COEF ! coefficients (hum. in kg/kg)
165 !
166 !
167 ! SBL turbulence scheme
168 !
169 REAL, DIMENSION(KI) :: ZSFLUX_U ! Surface flux u'w' (m2/s2)
170 REAL, DIMENSION(KI) :: ZSFLUX_T ! Surface flux w'T' (mK/s)
171 REAL, DIMENSION(KI) :: ZSFLUX_Q ! Surface flux w'q' (kgm2/s)
172 REAL, DIMENSION(KI,SB%NLVL) :: ZFORC_U ! tendency due to drag force for wind
173 REAL, DIMENSION(KI,SB%NLVL) :: ZDFORC_UDU! formal derivative of
174 ! ! tendency due to drag force for wind
175 REAL, DIMENSION(KI,SB%NLVL) :: ZFORC_E ! tendency due to drag force for TKE
176 REAL, DIMENSION(KI,SB%NLVL) :: ZDFORC_EDE! formal derivative of
177 ! ! tendency due to drag force for TKE
178 REAL, DIMENSION(KI,SB%NLVL) :: ZFORC_T ! tendency due to drag force for Temp
179 REAL, DIMENSION(KI,SB%NLVL) :: ZDFORC_TDT! formal derivative of
180 ! ! tendency due to drag force for Temp
181 REAL, DIMENSION(KI,SB%NLVL) :: ZFORC_Q ! tendency due to drag force for Temp
182 REAL, DIMENSION(KI,SB%NLVL) :: ZDFORC_QDQ! formal derivative of
183 ! ! tendency due to drag force for hum.
184 REAL, DIMENSION(KI,SB%NLVL) :: ZLM ! mixing length
185 REAL, DIMENSION(KI,SB%NLVL) :: ZLEPS ! dissipative length
186 REAL, DIMENSION(KI) :: ZH ! canopy height (m)
187 REAL, DIMENSION(KI) :: ZUSTAR ! friction velocity (m/s)
188 !
189 REAL, DIMENSION(KI) :: ZPET_A_COEF ! temperature implicit
190 REAL, DIMENSION(KI) :: ZPET_B_COEF ! coefficients (K)
191 REAL, DIMENSION(KI) :: ZPEW_A_COEF ! wind implicit
192 REAL, DIMENSION(KI) :: ZPEW_B_COEF ! coefficients (m/s)
193 
194 REAL, DIMENSION(KI) :: ZALFAU ! V+(1) = - alfa rho u'w'(1) + beta
195 REAL, DIMENSION(KI) :: ZBETAU ! V+(1) = - alfa rho u'w'(1) + beta
196 REAL, DIMENSION(KI) :: ZALFATH ! Th+(1) = - alfa rho w'th'(1) + beta
197 REAL, DIMENSION(KI) :: ZBETATH ! Th+(1) = - alfa rho w'th'(1) + beta
198 REAL, DIMENSION(KI) :: ZALFAQ ! Q+(1) = - alfa rho w'q'(1) + beta
199 REAL, DIMENSION(KI) :: ZBETAQ ! Q+(1) = - alfa rho w'q'(1) + beta
200 !
201 INTEGER :: JLAYER
202  CHARACTER(LEN=1) :: GCOUPLING
203 REAL(KIND=JPRB) :: ZHOOK_HANDLE
204 !-------------------------------------------------------------------------------------
205 !
206 !
207 !* 1. Preliminary computations of the SBL scheme
208 ! ------------------------------------------
209 !
210 IF (lhook) CALL dr_hook('COUPLING_FLAKE_SBL_N',0,zhook_handle)
211 IF (f%LSBL) THEN
212 !
213 !* 1.1 Updates SBL vertical grid as a function of forcing height
214 ! ---------------------------------------------------------
215 !
216 !* determines where is the forcing level and modifies the upper levels of the canopy grid
217 !
218  zh = 0.
219  CALL canopy_grid_update(ki,zh,puref,sb)
220 !
221 !
222 !
223 !* 1.2 Initialisation at first time step
224 ! ---------------------------------
225 !
226  IF(any(sb%XT(:,:) == xundef)) THEN
227  CALL init_water_sbl(sb, ppa, pps, pta, pqa, prhoa, pu, pv, prain, psnow, &
228  psfth, psftq, pzref, puref, f%XTS, f%XZ0)
229  ENDIF
230 !
231 !
232 !* 1.3 Allocations
233 ! -----------
234 !
235  CALL init_forc(zforc_u, zdforc_udu, zforc_e, zdforc_ede, &
236  zforc_t, zdforc_tdt, zforc_q, zdforc_qdq )
237 !
238  zsflux_u = 0.
239  zsflux_t = 0.
240  zsflux_q = 0.
241 !
242 !* 1.3 Computes coefficients for implicitation
243 ! ---------------------------------------
244 !
245  zwind = sqrt(pu**2+pv**2)
246  CALL canopy_evol(sb,ki,ptstep,1,sb%XZ,zwind,pta,pqa,ppa,prhoa, &
247  zsflux_u,zsflux_t,zsflux_q,zforc_u,zdforc_udu, &
248  zforc_e,zdforc_ede,zforc_t,zdforc_tdt, &
249  zforc_q,zdforc_qdq,zlm,zleps,zustar, &
250  zalfau,zbetau,zalfath,zbetath,zalfaq,zbetaq )
251 
252 !
253 !* 1.5 Goes from atmospheric forcing to canopy forcing height
254 ! ------------------------------------------------------
255 !
256  gcoupling = 'E'
257 !
258  CALL init_coupling_canopy(sb, ppa, pu, pv, &
259  prhoa, zalfau, zbetau, zalfath, &
260  zbetath, zalfaq, zbetaq, &
261  zpa, zta, zqa, zu, zv, &
262  zuref, zzref, zexna, &
263  zpew_a_coef, zpew_b_coef, &
264  zpet_a_coef, zpet_b_coef, &
265  zpeq_a_coef, zpeq_b_coef )
266 !
267 !-------------------------------------------------------------------------------------
268 ELSE
269 !-------------------------------------------------------------------------------------
270 !
271 !* 2. If no SBL scheme is used, forcing is not modified
272 ! -------------------------------------------------
273 !
274  gcoupling = hcoupling
275 !
276  CALL init_coupling( hcoupling, &
277  pps, ppa, pta, pqa, pu, pv, &
278  puref, pzref, &
279  ppew_a_coef, ppew_b_coef, &
280  ppet_a_coef, ppet_b_coef, &
281  ppeq_a_coef, ppeq_b_coef, &
282  zpa, zta, zqa, zu, zv, &
283  zuref, zzref, &
284  zpew_a_coef, zpew_b_coef, &
285  zpet_a_coef, zpet_b_coef, &
286  zpeq_a_coef, zpeq_b_coef )
287 !
288 END IF
289 !
290 !-------------------------------------------------------------------------------------
291 !
292 !* 2. Call of SEAFLUX
293 ! ------------
294 !
295  CALL coupling_flake_n(chf, dgo, d, dc, dmf, f, dst, slt, &
296  hprogram, gcoupling, ptstep, kyear, kmonth, kday, ptime, &
297  ki, ksv, ksw, ptsun, pzenith, pzenith2, pazim, zzref, zuref, &
298  zu, zv, zqa, zta, prhoa, psv, pco2, hsv, prain, psnow, plw, &
299  pdir_sw, psca_sw, psw_bands, pps, zpa, psftq, psfth, psfts, &
300  psfco2, psfu, psfv, ptrad, pdir_alb, psca_alb, pemis, ptsurf,&
301  pz0, pz0h, pqsurf, zpew_a_coef, zpew_b_coef, zpet_a_coef, &
302  zpeq_a_coef, zpet_b_coef, zpeq_b_coef, htest )
303 !
304 !-------------------------------------------------------------------------------------
305 !
306 !* 3. End if no SBL is used
307 ! ---------------------
308 !
309 IF (.NOT. f%LSBL .AND. lhook) CALL dr_hook('COUPLING_FLAKE_SBL_N',1,zhook_handle)
310 IF (.NOT. f%LSBL) RETURN
311 !
312 !-------------------------------------------------------------------------------------
313 !
314 !* 4. Computes the impact of canopy and surfaces on air
315 ! -------------------------------------------------
316 !
317  CALL init_forc(zforc_u, zdforc_udu, zforc_e, zdforc_ede, &
318  zforc_t, zdforc_tdt, zforc_q, zdforc_qdq )
319 !
320 zsflux_u = - sqrt(psfu(:)**2+psfv(:)**2) / prhoa(:)
321 zsflux_t(:) = psfth(:) / xcpd * zexna(:) / prhoa(:)
322 zsflux_q(:) = psftq(:)
323 !
324 !-------------------------------------------------------------------------------------
325 !
326 !* 6. Evolution of canopy air due to these impacts
327 ! --------------------------------------------
328 !
329 zwind = sqrt(pu**2+pv**2)
330  CALL canopy_evol(sb, ki, ptstep, 2,sb%XZ,zwind,pta,pqa,ppa,prhoa, &
331  zsflux_u,zsflux_t,zsflux_q,zforc_u,zdforc_udu, &
332  zforc_e,zdforc_ede,zforc_t,zdforc_tdt, &
333  zforc_q,zdforc_qdq,zlm,zleps,zustar, &
334  zalfau,zbetau,zalfath,zbetath,zalfaq,zbetaq )
335 !
336 DO jlayer = 1,sb%NLVL-1
337  sb%XLMO(:,jlayer) = sb%XLMO(:,sb%NLVL)
338 ENDDO
339 !
340 !-------------------------------------------------------------------------------------
341 !
342 !* 7. 2m and 10m diagnostics if canopy is used
343 ! ----------------------------------------
344 !
345 !
346 IF (f%LSBL .AND. dgo%N2M>=1) CALL init_2m_10m( sb, d, pu, pv, zwind, prhoa )
347 !
348 IF (lhook) CALL dr_hook('COUPLING_FLAKE_SBL_N',1,zhook_handle)
349 !
350 !-------------------------------------------------------------------------------------
351 !
352 END SUBROUTINE coupling_flake_sbl_n
subroutine init_coupling(HCOUPLING, PPS, PPA, PTA, PQA, PU, PV, PUREF, PZREF, PPEW_A_COEF, PPEW_B_COEF, PPET_A_COEF, PPET_B_COEF, PPEQ_A_COEF, PPEQ_B_COEF, PPPA, PTTA, PQQA, PUU, PVV, PUUREF, PZZREF, PPEW_AA_COEF, PPEW_BB_COEF, PPET_AA_COEF, PPET_BB_COEF, PPEQ_AA_COEF, PPEQ_BB_COEF)
subroutine coupling_flake_n(CHF, DGO, D, DC, DMF, F, DST, SLT, HPROGRAM, HCOUPLING, PTSTEP, KYEAR, KMONTH, KDAY, PTIME, KI, KSV, KSW, PTSUN, PZENITH, PZENITH2, PAZIM, PZREF, PUREF, 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, PTSRAD, 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
subroutine init_water_sbl(SB, PPA, PPS, PTA, PQA, PRHOA, PU, PV, PRAIN, PSNOW, PSFTH, PSFTQ, PZREF, PUREF, PTS, PZ0)
subroutine init_2m_10m(SB, D, PU, PV, PWIND, PRHOA)
real, parameter xundef
subroutine canopy_evol(SB, KI, PTSTEP, KIMPL, PZZ, PWIND, PTA, PQA
Definition: canopy_evol.F90:7
integer, parameter jprb
Definition: parkind1.F90:32
subroutine coupling_flake_sbl_n(SB, CHF, DGO, D, DC, DMF, F, DST, SLT, HPROGRAM, HCOUPLING, PTSTEP, KYEAR, KMONTH, KDAY, PTIME, KI, KSV, KSW, PTSUN, PZENITH, PZENITH2, PAZIM, PZREF, PUREF, 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)
logical lhook
Definition: yomhook.F90:15
subroutine init_forc(PFORC_U, PDFORC_UDU, PFORC_E, PDFORC_EDE, PFORC_T, PDFORC_TDT, PFORC_Q, PDFORC_QDQ)
subroutine canopy_grid_update(KI, PH, PZFORC, SB)
subroutine init_coupling_canopy(SB, PPA, PU, PV, PRHOA, PALFAU, PBETAU, PALFATH, PBETATH, PALFAQ, PBETAQ, PPPA, PTTA, PQQA, PUU, PVV, PUUREF, PZZREF, PEXNA, PPEW_AA_COEF, PPEW_BB_COEF, PPET_AA_COEF, PPET_BB_COEF, PPEQ_AA_COEF, PPEQ_BB_COEF)