/[MITgcm]/MITgcm/pkg/seaice/seaice_ocean_stress.F
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Annotation of /MITgcm/pkg/seaice/seaice_ocean_stress.F

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Revision 1.27 - (hide annotations) (download)
Thu Sep 10 16:05:26 2009 UTC (14 years, 8 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint62, checkpoint62c, checkpoint62b, checkpoint62a, checkpoint62g, checkpoint62f, checkpoint62e, checkpoint62d, checkpoint62k, checkpoint62j, checkpoint62i, checkpoint62h, checkpoint62n, checkpoint62m, checkpoint62l, checkpoint61v, checkpoint61w, checkpoint61z, checkpoint61x, checkpoint61y
Changes since 1.26: +3 -4 lines
fix argument type of intrisic fct "SIGN" when REAL4_IS_SLOW is undef

1 jmc 1.27 C $Header: /u/gcmpack/MITgcm/pkg/seaice/seaice_ocean_stress.F,v 1.26 2009/06/24 08:56:46 mlosch Exp $
2 mlosch 1.1 C $Name: $
3    
4     #include "SEAICE_OPTIONS.h"
5    
6     CStartOfInterface
7 jmc 1.19 SUBROUTINE SEAICE_OCEAN_STRESS(
8 mlosch 1.1 I myTime, myIter, myThid )
9     C /==========================================================\
10     C | SUBROUTINE SEAICE_OCEAN_STRESS |
11     C | o Calculate ocean surface stresses |
12     C | - C-grid version |
13     C |==========================================================|
14     C \==========================================================/
15     IMPLICIT NONE
16    
17     C === Global variables ===
18     #include "SIZE.h"
19     #include "EEPARAMS.h"
20     #include "PARAMS.h"
21 dimitri 1.21 #include "DYNVARS.h"
22 mlosch 1.5 #include "GRID.h"
23 mlosch 1.1 #include "FFIELDS.h"
24     #include "SEAICE.h"
25     #include "SEAICE_PARAMS.h"
26    
27     C === Routine arguments ===
28     C myTime - Simulation time
29     C myIter - Simulation timestep number
30     C myThid - Thread no. that called this routine.
31     _RL myTime
32     INTEGER myIter
33     INTEGER myThid
34     CEndOfInterface
35    
36 jmc 1.19 #ifdef SEAICE_CGRID
37 mlosch 1.1 C === Local variables ===
38     C i,j,bi,bj - Loop counters
39 mlosch 1.26 C kSrf - vertical index of surface layer
40 mlosch 1.1 INTEGER i, j, bi, bj
41 mlosch 1.26 INTEGER kSrf
42 jmc 1.27 _RL COSWAT
43     _RS SINWAT
44 mlosch 1.24 _RL fuIceLoc, fvIceLoc
45 mlosch 1.4 _RL areaW, areaS
46 mlosch 1.1
47 mlosch 1.26 C surrface level
48     kSrf = 1
49     C introduce turning angle (default is zero)
50 mlosch 1.1 SINWAT=SIN(SEAICE_waterTurnAngle*deg2rad)
51     COSWAT=COS(SEAICE_waterTurnAngle*deg2rad)
52    
53 mlosch 1.5 IF ( useHB87StressCoupling ) THEN
54     C
55 jmc 1.19 C use an intergral over ice and ocean surface layer to define
56 mlosch 1.5 C surface stresses on ocean following Hibler and Bryan (1987, JPO)
57 jmc 1.19 C
58 mlosch 1.5 DO bj=myByLo(myThid),myByHi(myThid)
59     DO bi=myBxLo(myThid),myBxHi(myThid)
60 mlosch 1.24 DO J=1,sNy
61     DO I=1,sNx
62 jmc 1.19 C average wind stress over ice and ocean and apply averaged wind
63 mlosch 1.14 C stress and internal ice stresses to surface layer of ocean
64 mlosch 1.25 areaW = 0.5 * (AREA(I,J,bi,bj) + AREA(I-1,J,bi,bj))
65 mlosch 1.24 & * SEAICEstressFactor
66 mlosch 1.25 areaS = 0.5 * (AREA(I,J,bi,bj) + AREA(I,J-1,bi,bj))
67 mlosch 1.24 & * SEAICEstressFactor
68     fu(I,J,bi,bj)=(ONE-areaW)*fu(I,J,bi,bj)
69     & + areaW*taux(I,J,bi,bj)
70     & + stressDivergenceX(I,J,bi,bj) * SEAICEstressFactor
71     fv(I,J,bi,bj)=(ONE-areaS)*fv(I,J,bi,bj)
72     & + areaS*tauy(I,J,bi,bj)
73     & + stressDivergenceY(I,J,bi,bj) * SEAICEstressFactor
74 mlosch 1.14 ENDDO
75 mlosch 1.24 ENDDO
76 mlosch 1.5 ENDDO
77     ENDDO
78 jmc 1.17
79 mlosch 1.5 ELSE
80 jmc 1.17 C else: useHB87StressCoupling=F
81 mlosch 1.5
82 jmc 1.19 C-- Compute ice-affected wind stress (interpolate to U/V-points)
83     C by averaging wind stress and ice-ocean stress according to
84 mlosch 1.5 C ice cover
85 mlosch 1.1 DO bj=myByLo(myThid),myByHi(myThid)
86     DO bi=myBxLo(myThid),myBxHi(myThid)
87     DO j=1,sNy
88     DO i=1,sNx
89 mlosch 1.18 fuIceLoc=HALF*( DWATN(I,J,bi,bj)+DWATN(I-1,J,bi,bj) )*
90 jmc 1.19 & COSWAT *
91 mlosch 1.26 & ( uIce(I,J,bi,bj)-uVel(I,J,kSrf,bi,bj) )
92 jmc 1.19 & - SIGN(SINWAT, _fCori(I,J,bi,bj)) * 0.5 _d 0 *
93 mlosch 1.6 & ( DWATN(I ,J,bi,bj) *
94 mlosch 1.26 & 0.5 _d 0*(vIce(I ,J ,bi,bj)-vVel(I ,J ,kSrf,bi,bj)
95     & +vIce(I ,J+1,bi,bj)-vVel(I ,J+1,kSrf,bi,bj))
96 mlosch 1.6 & + DWATN(I-1,J,bi,bj) *
97 mlosch 1.26 & 0.5 _d 0*(vIce(I-1,J ,bi,bj)-vVel(I-1,J ,kSrf,bi,bj)
98     & +vIce(I-1,J+1,bi,bj)-vVel(I-1,J+1,kSrf,bi,bj))
99 mlosch 1.1 & )
100 mlosch 1.18 fvIceLoc=HALF*( DWATN(I,J,bi,bj)+DWATN(I,J-1,bi,bj) )*
101 mlosch 1.6 & COSWAT *
102 mlosch 1.26 & ( vIce(I,J,bi,bj)-vVel(I,J,kSrf,bi,bj) )
103 mlosch 1.6 & + SIGN(SINWAT, _fCori(I,J,bi,bj)) * 0.5 _d 0 *
104     & ( DWATN(I,J ,bi,bj) *
105 mlosch 1.26 & 0.5 _d 0*(uIce(I ,J ,bi,bj)-uVel(I ,J ,kSrf,bi,bj)
106     & +uIce(I+1,J ,bi,bj)-uVel(I+1,J ,kSrf,bi,bj))
107 mlosch 1.6 & + DWATN(I,J-1,bi,bj) *
108 mlosch 1.26 & 0.5 _d 0*(uIce(I ,J-1,bi,bj)-uVel(I ,J-1,kSrf,bi,bj)
109     & +uIce(I+1,J-1,bi,bj)-uVel(I+1,J-1,kSrf,bi,bj))
110 mlosch 1.1 & )
111 mlosch 1.25 areaW = 0.5 _d 0 * (AREA(I,J,bi,bj) + AREA(I-1,J,bi,bj))
112 mlosch 1.9 & * SEAICEstressFactor
113 mlosch 1.25 areaS = 0.5 _d 0 * (AREA(I,J,bi,bj) + AREA(I,J-1,bi,bj))
114 mlosch 1.9 & * SEAICEstressFactor
115 mlosch 1.11 fu(I,J,bi,bj)=(ONE-areaW)*fu(I,J,bi,bj)+areaW*fuIceLoc
116     fv(I,J,bi,bj)=(ONE-areaS)*fv(I,J,bi,bj)+areaS*fvIceLoc
117 mlosch 1.1 ENDDO
118     ENDDO
119     ENDDO
120     ENDDO
121 mlosch 1.5 ENDIF
122 mlosch 1.1 CALL EXCH_UV_XY_RS(fu, fv, .TRUE., myThid)
123 mlosch 1.3
124 jmc 1.17 #endif /* SEAICE_CGRID */
125 mlosch 1.1
126     RETURN
127     END

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