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diag_seafluxn.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 diag_seaflux_n (DGS, &
7  hprogram, &
8  prn, ph, ple, plei, pgflux, pri, pcd, pch, pce, pqs,&
9  pz0, pz0h, pt2m, pts, pq2m, phu2m, pzon10m, pmer10m,&
10  pswd, pswu, plwd, plwu, pswbd, pswbu, pfmu, pfmv, &
11  prnc, phc, plec, pgfluxc, pswdc, pswuc, plwdc, &
12  plwuc, pfmuc, pfmvc, pt2m_min, pt2m_max, pleic, &
13  phu2m_min, phu2m_max, pwind10m, pwind10m_max, &
14  pevap, pevapc, psubl, psublc )
15 ! ###############################################################################
16 !
17 !!**** *DIAG_SEAFLUX_n * - diagnostics for SEAFLUX
18 !!
19 !! PURPOSE
20 !! -------
21 !
22 !!** METHOD
23 !! ------
24 !!
25 !! REFERENCE
26 !! ---------
27 !!
28 !!
29 !! AUTHOR
30 !! ------
31 !! V. Masson
32 !!
33 !! MODIFICATIONS
34 !! -------------
35 !! Original 01/2004
36 !! Modified 01/2006 : sea flux parameterization.
37 !! Modified 08/2009 : new diag
38 ! B. decharme 04/2013 : Add EVAP and SUBL diag
39 !!------------------------------------------------------------------
40 !
41 
42 !
43 !
45 !
46 USE modd_surf_par, ONLY : xundef
47 !
48 !
49 USE yomhook ,ONLY : lhook, dr_hook
50 USE parkind1 ,ONLY : jprb
51 !
52 IMPLICIT NONE
53 !
54 !* 0.1 declarations of arguments
55 !
56 !
57 TYPE(diag_seaflux_t), INTENT(INOUT) :: dgs
58 !
59  CHARACTER(LEN=6), INTENT(IN) :: hprogram ! program calling surf. schemes
60 !
61 REAL, DIMENSION(:), INTENT(OUT) :: prn ! Net radiation (W/m2)
62 REAL, DIMENSION(:), INTENT(OUT) :: ph ! Sensible heat flux (W/m2)
63 REAL, DIMENSION(:), INTENT(OUT) :: ple ! Total latent heat flux (W/m2)
64 REAL, DIMENSION(:), INTENT(OUT) :: plei ! Sublimation latent heat flux (W/m2)
65 REAL, DIMENSION(:), INTENT(OUT) :: pgflux ! Storage flux (W/m2)
66 REAL, DIMENSION(:), INTENT(OUT) :: pevap ! Total evapotranspiration (kg/m2/s)
67 REAL, DIMENSION(:), INTENT(OUT) :: psubl ! Sublimation (kg/m2/s)
68 REAL, DIMENSION(:), INTENT(OUT) :: pri ! Richardson number (-)
69 REAL, DIMENSION(:), INTENT(OUT) :: pcd ! drag coef (W/s2)
70 REAL, DIMENSION(:), INTENT(OUT) :: pch ! transfer coef heat (W/s)
71 REAL, DIMENSION(:), INTENT(OUT) :: pce ! transfer coef vapor (W/s/K)
72 REAL, DIMENSION(:), INTENT(OUT) :: pqs
73 REAL, DIMENSION(:), INTENT(OUT) :: pz0 ! rough. length wind (m)
74 REAL, DIMENSION(:), INTENT(OUT) :: pz0h ! rough. length heat (m)
75 REAL, DIMENSION(:), INTENT(OUT) :: pts ! surface temperature (K)
76 REAL, DIMENSION(:), INTENT(OUT) :: pt2m ! temperature at 2m (K)
77 REAL, DIMENSION(:), INTENT(OUT) :: pq2m ! humidity at 2m (kg/kg)
78 REAL, DIMENSION(:), INTENT(OUT) :: phu2m ! relative humidity at 2m (-)
79 REAL, DIMENSION(:), INTENT(OUT) :: pzon10m ! zonal wind at 10m (m/s)
80 REAL, DIMENSION(:), INTENT(OUT) :: pmer10m ! meridian wind at 10m(m/s)
81 REAL, DIMENSION(:), INTENT(OUT) :: pswd ! incoming short-wave radiation (W/m2)
82 REAL, DIMENSION(:), INTENT(OUT) :: pswu ! upward short-wave radiation (W/m2)
83 REAL, DIMENSION(:), INTENT(OUT) :: plwd ! incoming long-wave radiation (W/m2)
84 REAL, DIMENSION(:), INTENT(OUT) :: plwu ! upward long-wave radiation (W/m2)
85 REAL, DIMENSION(:,:), INTENT(OUT) :: pswbd ! incoming short-wave radiation by spectral band (W/m2)
86 REAL, DIMENSION(:,:), INTENT(OUT) :: pswbu ! upward short-wave radiation by spectral band (W/m2)
87 REAL, DIMENSION(:), INTENT(OUT) :: pfmu ! zonal momentum flux (Pa)
88 REAL, DIMENSION(:), INTENT(OUT) :: pfmv ! meridian momentum flux (Pa)
89 REAL, DIMENSION(:), INTENT(OUT) :: prnc ! Net radiation (J/m2)
90 REAL, DIMENSION(:), INTENT(OUT) :: phc ! Sensible heat flux (J/m2)
91 REAL, DIMENSION(:), INTENT(OUT) :: plec ! Total latent heat flux (J/m2)
92 REAL, DIMENSION(:), INTENT(OUT) :: pleic ! Sublimation latent heat flux (J/m2)
93 REAL, DIMENSION(:), INTENT(OUT) :: pgfluxc ! Storage flux (J/m2)
94 REAL, DIMENSION(:), INTENT(OUT) :: pevapc ! Total evapotranspiration (kg/m2/s)
95 REAL, DIMENSION(:), INTENT(OUT) :: psublc ! Sublimation (kg/m2/s)
96 REAL, DIMENSION(:), INTENT(OUT) :: pswdc ! incoming short wave radiation (J/m2)
97 REAL, DIMENSION(:), INTENT(OUT) :: pswuc ! outgoing short wave radiation (J/m2)
98 REAL, DIMENSION(:), INTENT(OUT) :: plwdc ! incoming long wave radiation (J/m2)
99 REAL, DIMENSION(:), INTENT(OUT) :: plwuc ! outgoing long wave radiation (J/m2)
100 REAL, DIMENSION(:), INTENT(OUT) :: pfmuc ! zonal friction
101 REAL, DIMENSION(:), INTENT(OUT) :: pfmvc ! meridian friction
102 REAL, DIMENSION(:), INTENT(OUT) :: pt2m_min ! Minimum temperature at 2m (K)
103 REAL, DIMENSION(:), INTENT(OUT) :: pt2m_max ! Maximum temperature at 2m (K)
104 REAL, DIMENSION(:), INTENT(OUT) :: phu2m_min! Minimum relative humidity at 2m (-)
105 REAL, DIMENSION(:), INTENT(OUT) :: phu2m_max! Maximum relative humidity at 2m (-)
106 REAL, DIMENSION(:), INTENT(OUT) :: pwind10m ! wind at 10m (m/s)
107 REAL, DIMENSION(:), INTENT(OUT) :: pwind10m_max! Maximum wind at 10m (m/s)
108 REAL(KIND=JPRB) :: zhook_handle
109 !
110 !
111 !* 0.2 declarations of local variables
112 !
113 !-------------------------------------------------------------------------------------
114 !
115 IF (lhook) CALL dr_hook('DIAG_SEAFLUX_N',0,zhook_handle)
116 IF (dgs%LSURF_BUDGET) THEN
117  prn = dgs%XRN
118  ph = dgs%XH
119  ple = dgs%XLE
120  plei = dgs%XLE_ICE
121  pgflux = dgs%XGFLUX
122  pevap = dgs%XEVAP
123  psubl = dgs%XSUBL
124  pswd = dgs%XSWD
125  pswu = dgs%XSWU
126  plwd = dgs%XLWD
127  plwu = dgs%XLWU
128  pswbd = dgs%XSWBD
129  pswbu = dgs%XSWBU
130  pfmu = dgs%XFMU
131  pfmv = dgs%XFMV
132 END IF
133 !
134 IF (dgs%LSURF_BUDGETC) THEN
135  prnc = dgs%XRNC
136  phc = dgs%XHC
137  plec = dgs%XLEC
138  pleic = dgs%XLEC_ICE
139  pgfluxc = dgs%XGFLUXC
140  pevapc = dgs%XEVAPC
141  psublc = dgs%XSUBLC
142  pswdc = dgs%XSWDC
143  pswuc = dgs%XSWUC
144  plwdc = dgs%XLWDC
145  plwuc = dgs%XLWUC
146  pfmuc = dgs%XFMUC
147  pfmvc = dgs%XFMVC
148 END IF
149 !
150 IF (dgs%N2M>=1 .OR. dgs%LSURF_BUDGET .OR. dgs%LSURF_BUDGETC) pts = dgs%XTS
151 !
152 IF (dgs%N2M>=1) THEN
153  pri = dgs%XRI
154  pt2m = dgs%XT2M
155  pt2m_min = dgs%XT2M_MIN
156  pt2m_max = dgs%XT2M_MAX
157  pq2m = dgs%XQ2M
158  phu2m = dgs%XHU2M
159  phu2m_min= dgs%XHU2M_MIN
160  phu2m_max= dgs%XHU2M_MAX
161  pzon10m = dgs%XZON10M
162  pmer10m = dgs%XMER10M
163  pwind10m = dgs%XWIND10M
164  pwind10m_max = dgs%XWIND10M_MAX
165 END IF
166 !
167 IF (dgs%LCOEF) THEN
168  pcd = dgs%XCD
169  pch = dgs%XCH
170  pce = dgs%XCE
171  pz0 = dgs%XZ0
172  pz0h = dgs%XZ0H
173 END IF
174 !
175 IF (dgs%LSURF_VARS) THEN
176  pqs = dgs%XQS
177 ENDIF
178 !
179 IF (lhook) CALL dr_hook('DIAG_SEAFLUX_N',1,zhook_handle)
180 !
181 !-------------------------------------------------------------------------------------
182 !
183 END SUBROUTINE diag_seaflux_n
subroutine diag_seaflux_n(DGS, HPROGRAM, PRN, PH, PLE, PLEI, PGFLUX, PRI, PCD, PCH, PCE, PQS, PZ0, PZ0H, PT2M, PTS, PQ2M, PHU2M, PZON10M, PMER10M, PSWD, PSWU, PLWD, PLWU, PSWBD, PSWBU, PFMU, PFMV, PRNC, PHC, PLEC, PGFLUXC, PSWDC, PSWUC, PLWDC, PLWUC, PFMUC, PFMVC, PT2M_MIN, PT2M_MAX, PLEIC, PHU2M_MIN, PHU2M_MAX, PWIND10M, PWIND10M_MAX, PEVAP, PEVAPC, PSUBL, PSUBLC)