1 |
C |
C |
2 |
|
|
3 |
#include "SEAICE_OPTIONS.h" |
#include "SEAICE_OPTIONS.h" |
4 |
|
|
5 |
CStartOfInterface |
CStartOfInterface |
6 |
SUBROUTINE groatb( A22, myThid ) |
SUBROUTINE groatb( A22, myThid ) |
7 |
C /==========================================================\ |
C /==========================================================\ |
18 |
#include "DYNVARS.h" |
#include "DYNVARS.h" |
19 |
#include "FFIELDS.h" |
#include "FFIELDS.h" |
20 |
#include "SEAICE.h" |
#include "SEAICE.h" |
|
#include "SEAICE_PARAMS.h" |
|
21 |
#include "SEAICE_FFIELDS.h" |
#include "SEAICE_FFIELDS.h" |
22 |
|
|
23 |
|
#ifdef ALLOW_AUTODIFF_TAMC |
24 |
|
# include "tamc.h" |
25 |
|
#endif |
26 |
|
|
27 |
|
COMMON /SEAICE_BOUND_RL/ |
28 |
|
& MAX_HEFF, MIN_ATEMP, MIN_LWDOWN, MAX_TICE, MIN_TICE, |
29 |
|
& SEAICE_EPS, SEAICE_EPS_SQ |
30 |
|
_RL SEAICE_EPS, SEAICE_EPS_SQ |
31 |
|
_RL MAX_HEFF, MIN_ATEMP, MIN_LWDOWN, MAX_TICE, MIN_TICE |
32 |
|
|
33 |
C === Routine arguments === |
C === Routine arguments === |
34 |
C myThid - Thread no. that called this routine. |
C myThid - Thread no. that called this routine. |
35 |
_RL A22 |
_RL A22 |
43 |
|
|
44 |
INTEGER i, j, bi, bj |
INTEGER i, j, bi, bj |
45 |
INTEGER KOPEN |
INTEGER KOPEN |
46 |
_RL U1, V1, SPEED_SQ |
_RL SPEED_SQ |
|
|
|
47 |
_RL HICE (1-OLx:sNx+OLx, 1-OLy:sNy+OLy) |
_RL HICE (1-OLx:sNx+OLx, 1-OLy:sNy+OLy) |
48 |
_RL UG (1-OLx:sNx+OLx, 1-OLy:sNy+OLy) |
_RL UG (1-OLx:sNx+OLx, 1-OLy:sNy+OLy) |
49 |
|
|
50 |
C if this is not done before then do it here |
#ifdef SEAICE_MULTILEVEL |
51 |
_EXCH_XY_R8(UWIND, myThid) |
INTEGER it |
52 |
_EXCH_XY_R8(VWIND, myThid) |
_RL RK |
53 |
|
_RL HICEP(1-OLx:sNx+OLx, 1-OLy:sNy+OLy) |
54 |
|
_RL FICEP(1-OLx:sNx+OLx, 1-OLy:sNy+OLy) |
55 |
|
#endif |
56 |
|
|
57 |
c$taf loop = parallel |
CADJ loop = parallel |
58 |
DO bj=myByLo(myThid),myByHi(myThid) |
DO bj=myByLo(myThid),myByHi(myThid) |
59 |
c$taf loop = parallel |
CADJ loop = parallel |
60 |
DO bi=myBxLo(myThid),myBxHi(myThid) |
DO bi=myBxLo(myThid),myBxHi(myThid) |
61 |
|
cph( |
62 |
|
#ifdef ALLOW_AUTODIFF_TAMC |
63 |
|
act1 = bi - myBxLo(myThid) |
64 |
|
max1 = myBxHi(myThid) - myBxLo(myThid) + 1 |
65 |
|
act2 = bj - myByLo(myThid) |
66 |
|
max2 = myByHi(myThid) - myByLo(myThid) + 1 |
67 |
|
act3 = myThid - 1 |
68 |
|
max3 = nTx*nTy |
69 |
|
act4 = ikey_dynamics - 1 |
70 |
|
iicekey = (act1 + 1) + act2*max1 |
71 |
|
& + act3*max1*max2 |
72 |
|
& + act4*max1*max2*max3 |
73 |
|
#endif /* ALLOW_AUTODIFF_TAMC */ |
74 |
|
c |
75 |
|
#ifdef ALLOW_AUTODIFF_TAMC |
76 |
|
CADJ STORE area(:,:,:,bi,bj) = comlev1_bibj, |
77 |
|
CADJ & key = iicekey, byte = isbyte |
78 |
|
#endif /* ALLOW_AUTODIFF_TAMC */ |
79 |
|
cph) |
80 |
|
|
81 |
C DETERMINE AMOUNT OF OPEN WATER AND ICE THICKNESS |
C DETERMINE AMOUNT OF OPEN WATER AND ICE THICKNESS |
82 |
DO J=1,sNy |
DO J=1,sNy |
83 |
DO I=1,sNx |
DO I=1,sNx |
84 |
AREA(I,J,2,bi,bj)=MAX(A22,AREA(I,J,2,bi,bj)) |
AREA(I,J,2,bi,bj)=MAX(A22,AREA(I,J,2,bi,bj)) |
85 |
FHEFF(I,J,bi,bj)=0.0 _d 0 |
FHEFF(I,J,bi,bj)=0.0 _d 0 |
86 |
|
#ifdef SEAICE_MULTILEVEL |
87 |
|
FICEP(I,J)=0.0 _d 0 |
88 |
|
#endif |
89 |
|
ENDDO |
90 |
|
ENDDO |
91 |
|
#ifdef ALLOW_AUTODIFF_TAMC |
92 |
|
CADJ STORE area(:,:,:,bi,bj) = comlev1_bibj, |
93 |
|
CADJ & key = iicekey, byte = isbyte |
94 |
|
#endif /* ALLOW_AUTODIFF_TAMC */ |
95 |
|
DO J=1,sNy |
96 |
|
DO I=1,sNx |
97 |
HICE(I,J)=HEFF(I,J,2,bi,bj)/AREA(I,J,2,bi,bj) |
HICE(I,J)=HEFF(I,J,2,bi,bj)/AREA(I,J,2,bi,bj) |
98 |
ENDDO |
ENDDO |
99 |
ENDDO |
ENDDO |
110 |
|
|
111 |
DO J=1,sNy |
DO J=1,sNy |
112 |
DO I=1,sNx |
DO I=1,sNx |
113 |
U1=0.25 _d 0*(UWIND(I-1,J-1,bi,bj)+UWIND(I-1,J,bi,bj) |
SPEED_SQ = UWIND(I,J,bi,bj)**2 + VWIND(I,J,bi,bj)**2 |
114 |
1 +UWIND(I,J-1,bi,bj)+UWIND(I,J,bi,bj)) |
IF ( SPEED_SQ .LE. SEAICE_EPS_SQ ) THEN |
|
V1=0.25 _d 0*(VWIND(I-1,J-1,bi,bj)+VWIND(I-1,J,bi,bj) |
|
|
1 +VWIND(I,J-1,bi,bj)+VWIND(I,J,bi,bj)) |
|
|
SPEED_SQ = U1**2 + V1**2 |
|
|
IF ( SPEED_SQ .LT. SEAICE_EPS_SQ ) THEN |
|
115 |
UG(I,J)=SEAICE_EPS |
UG(I,J)=SEAICE_EPS |
116 |
ELSE |
ELSE |
117 |
UG(I,J)=SQRT(SPEED_SQ) |
UG(I,J)=SQRT(SPEED_SQ) |
119 |
ENDDO |
ENDDO |
120 |
ENDDO |
ENDDO |
121 |
|
|
122 |
|
#ifdef ALLOW_AUTODIFF_TAMC |
123 |
|
CADJ STORE atemp(:,:,bi,bj) = comlev1_bibj, |
124 |
|
CADJ & key = iicekey, byte = isbyte |
125 |
|
CADJ STORE lwdown(:,:,bi,bj) = comlev1_bibj, |
126 |
|
CADJ & key = iicekey, byte = isbyte |
127 |
|
#endif /* ALLOW_AUTODIFF_TAMC */ |
128 |
C NOW DETERMINE GROWTH RATES |
C NOW DETERMINE GROWTH RATES |
129 |
C FIRST DO OPEN WATER |
C FIRST DO OPEN WATER |
130 |
KOPEN=-1 |
KOPEN=-1 |
131 |
CALL BUDGET(UG, TMIX, HICE, FO, KOPEN, bi, bj) |
CALL BUDGET(UG, TMIX, HICE, FO, KOPEN, bi, bj) |
132 |
|
|
133 |
|
#ifdef ALLOW_AUTODIFF_TAMC |
134 |
|
CADJ STORE atemp(:,:,bi,bj) = comlev1_bibj, |
135 |
|
CADJ & key = iicekey, byte = isbyte |
136 |
|
CADJ STORE lwdown(:,:,bi,bj) = comlev1_bibj, |
137 |
|
CADJ & key = iicekey, byte = isbyte |
138 |
|
#endif /* ALLOW_AUTODIFF_TAMC */ |
139 |
C NOW DO ICE |
C NOW DO ICE |
140 |
KOPEN=1 |
KOPEN=1 |
141 |
|
#ifdef SEAICE_MULTILEVEL |
142 |
|
DO IT=1,7 |
143 |
|
DO J=1,sNy |
144 |
|
DO I=1,sNx |
145 |
|
RK=IT*1.0 |
146 |
|
HICEP(I,J)=(HICE(I,J)/7.0 _d 0)*((2.0 _d 0*RK)-1.0 _d 0) |
147 |
|
TICE(I,J,bi,bj)=TICES(I,J,IT,bi,bj) |
148 |
|
ENDDO |
149 |
|
ENDDO |
150 |
|
CALL BUDGET(UG, TICE, HICEP, FICE, KOPEN, bi, bj) |
151 |
|
DO J=1,sNy |
152 |
|
DO I=1,sNx |
153 |
|
FICEP(I,J)=(FICE(I,J,bi,bj)/7.0 _d 0)+FICEP(I,J) |
154 |
|
TICES(I,J,IT,bi,bj)=TICE(I,J,bi,bj) |
155 |
|
ENDDO |
156 |
|
ENDDO |
157 |
|
ENDDO |
158 |
|
DO J=1,sNy |
159 |
|
DO I=1,sNx |
160 |
|
FICE(I,J,bi,bj)=FICEP(I,J) |
161 |
|
ENDDO |
162 |
|
ENDDO |
163 |
|
#else /* SEAICE_MULTILEVEL */ |
164 |
CALL BUDGET(UG, TICE, HICE, FICE, KOPEN, bi, bj) |
CALL BUDGET(UG, TICE, HICE, FICE, KOPEN, bi, bj) |
165 |
|
#endif /* SEAICE_MULTILEVEL */ |
166 |
|
|
167 |
ENDDO |
ENDDO |
168 |
ENDDO |
ENDDO |