/[MITgcm]/MITgcm/pkg/thsice/thsice_extend.F
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Contents of /MITgcm/pkg/thsice/thsice_extend.F

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Revision 1.4 - (show annotations) (download)
Thu May 25 18:03:24 2006 UTC (17 years, 11 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint58l_post, mitgcm_mapl_00, checkpoint58u_post, checkpoint58w_post, checkpoint58r_post, checkpoint58n_post, checkpoint58x_post, checkpoint58t_post, checkpoint58h_post, checkpoint58q_post, checkpoint58j_post, checkpoint58f_post, checkpoint58i_post, checkpoint58g_post, checkpoint58o_post, checkpoint58y_post, checkpoint58k_post, checkpoint58v_post, checkpoint58s_post, checkpoint58p_post, checkpoint58m_post
Changes since 1.3: +130 -49 lines
- put i,j loops inside S/R: THSICE_ALBEDO, THSICE_SOLVE4TEMP, THSICE_EXTEND
   and THSICE_CALC_THICKN
- split thsice_step_fwd.F in 2 S/R: thsice_step_temp.F & thsice_step_fwd.F

1 C $Header: /u/gcmpack/MITgcm/pkg/thsice/thsice_extend.F,v 1.3 2006/02/10 00:30:32 jmc Exp $
2 C $Name: $
3
4 #include "THSICE_OPTIONS.h"
5
6 CBOP
7 C !ROUTINE: THSICE_EXTEND
8 C !INTERFACE:
9 SUBROUTINE THSICE_EXTEND(
10 I bi, bj, siLo, siHi, sjLo, sjHi,
11 I iMin,iMax, jMin,jMax, dBugFlag,
12 I fzMlOc, tFrz, tOce,
13 U icFrac, hIce, hSnow,
14 U tSrf, tIc1, tIc2, qIc1, qIc2,
15 O flx2oc, frw2oc, fsalt,
16 I myTime, myIter, myThid )
17 C !DESCRIPTION: \bv
18 C *==========================================================*
19 C | S/R THSICE_EXTEND
20 C | o Extend sea-ice area incresing ice fraction
21 C *==========================================================*
22 C | o incorporate surplus of energy to
23 C | make new ice or make ice grow laterally
24 C *==========================================================*
25 C \ev
26
27 C !USES:
28 IMPLICIT NONE
29
30 C == Global variables ==
31 #include "EEPARAMS.h"
32 #include "THSICE_SIZE.h"
33 #include "THSICE_PARAMS.h"
34
35 C !INPUT/OUTPUT PARAMETERS:
36 C == Routine Arguments ==
37 C siLo,siHi :: size of input/output array: 1rst dim. lower,higher bounds
38 C sjLo,sjHi :: size of input/output array: 2nd dim. lower,higher bounds
39 C bi,bj :: tile indices
40 C iMin,iMax :: computation domain: 1rst index range
41 C jMin,jMax :: computation domain: 2nd index range
42 C dBugFlag :: allow to print debugging stuff (e.g. on 1 grid point).
43 C--- Input:
44 C iceMask :: sea-ice fractional mask [0-1]
45 C fzMlOc (esurp) :: ocean mixed-layer freezing/melting potential [W/m2]
46 C tFrz (Tf) :: sea-water freezing temperature [oC] (function of S)
47 C tOce (sst) :: surface level oceanic temperature [oC]
48 C--- Modified (input&output):
49 C icFrac(iceFrac):: fraction of grid area covered in ice
50 C hIce (iceThick):: ice height [m]
51 C hSnow(snowThick):: snow height [m]
52 C tSrf :: surface (ice or snow) temperature [oC]
53 C tIc1 :: temperature of ice layer 1 [oC]
54 C tIc2 :: temperature of ice layer 2 [oC]
55 C qIc1 (qicen) :: ice enthalpy (J/kg), 1rst level
56 C qIc2 (qicen) :: ice enthalpy (J/kg), 2nd level
57 C--- Output
58 C flx2oc (=) :: (additional) heat flux to ocean [W/m2] (+=dwn)
59 C frw2oc (=) :: (additional) fresh water flux to ocean [kg/m2/s] (+=dwn)
60 C fsalt (=) :: (additional) salt flux to ocean [g/m2/s] (+=dwn)
61 C--- Input:
62 C myTime :: current Time of simulation [s]
63 C myIter :: current Iteration number in simulation
64 C myThid :: my Thread Id number
65 INTEGER siLo, siHi, sjLo, sjHi
66 INTEGER bi,bj
67 INTEGER iMin, iMax
68 INTEGER jMin, jMax
69 LOGICAL dBugFlag
70 c _RL iceMask(siLo:siHi,sjLo:sjHi)
71 _RL fzMlOc (siLo:siHi,sjLo:sjHi)
72 _RL tFrz (siLo:siHi,sjLo:sjHi)
73 _RL tOce (siLo:siHi,sjLo:sjHi)
74 _RL icFrac (siLo:siHi,sjLo:sjHi)
75 _RL hIce (siLo:siHi,sjLo:sjHi)
76 _RL hSnow (siLo:siHi,sjLo:sjHi)
77 _RL tSrf (siLo:siHi,sjLo:sjHi)
78 _RL tIc1 (siLo:siHi,sjLo:sjHi)
79 _RL tIc2 (siLo:siHi,sjLo:sjHi)
80 _RL qIc1 (siLo:siHi,sjLo:sjHi)
81 _RL qIc2 (siLo:siHi,sjLo:sjHi)
82 _RL flx2oc (siLo:siHi,sjLo:sjHi)
83 _RL frw2oc (siLo:siHi,sjLo:sjHi)
84 _RL fsalt (siLo:siHi,sjLo:sjHi)
85 _RL myTime
86 INTEGER myIter
87 INTEGER myThid
88 CEOP
89
90 #ifdef ALLOW_THSICE
91 C !LOCAL VARIABLES:
92 C--- local copy of input/output argument list variables (see description above)
93 _RL esurp
94 _RL Tf
95 _RL sst
96 _RL iceFrac
97 _RL iceThick
98 _RL snowThick
99 _RL qicen(nlyr)
100
101 C == Local variables ==
102 C qicAv :: mean enthalpy of ice (layer 1 & 2) [J/m^3]
103 _RL deltaTice ! time-step for ice model
104 _RL newIce
105 _RL newIceFrac
106 _RL qicAv
107 INTEGER i,j ! loop indices
108
109 C- define grid-point location where to print debugging values
110 #include "THSICE_DEBUG.h"
111
112 1010 FORMAT(A,I3,3F8.3)
113 1020 FORMAT(A,1P4E11.3)
114
115 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
116 deltaTice = thSIce_deltaT
117
118
119 DO j = jMin, jMax
120 DO i = iMin, iMax
121 IF (fzMlOc(i,j).GT.0. _d 0) THEN
122 esurp = fzMlOc(i,j)
123 Tf = tFrz(i,j)
124 sst = tOce(i,j)
125 iceFrac = icFrac(i,j)
126 iceThick= hIce(i,j)
127 snowThick=hSnow(i,j)
128 qicen(1)= qIc1(i,j)
129 qicen(2)= qIc2(i,j)
130 C---
131 C-- start ice
132 newIceFrac = 0. _d 0
133
134 C- enthalpy of new ice to form :
135 IF ( iceFrac.LE.0. _d 0 ) THEN
136 qicen(1)= -cpwater*Tmlt1
137 & + cpice *(Tmlt1-Tf) + Lfresh*(1. _d 0-Tmlt1/Tf)
138 qicen(2)= -cpice *Tf + Lfresh
139 ENDIF
140 qicAv = rhoi*(qicen(1)+qicen(2))*0.5 _d 0
141 newIce = esurp*deltaTice/qicAv
142
143 IF (icFrac(i,j).EQ.0. _d 0) THEN
144 c IF (newIce.GE.himin*iceMaskmax) THEN
145 C- jmc: above is the original version, but below seems more logical:
146 IF (newIce.GE.himin0*iceMaskmin) THEN
147 C- if there is no ice in grid and enough ice to form:
148 iceThick = MAX(himin0,newIce/iceMaskmax)
149 newIceFrac = MIN(newIce/himin0,iceMaskmax)
150 iceFrac = newIceFrac
151 sst=Tf
152 ENDIF
153 ELSE
154 C- if there is already some ice
155 newIceFrac=MIN(newIce/iceThick,iceMaskmax-icFrac(i,j))
156 iceFrac = icFrac(i,j) + newIceFrac
157 C- spread snow out over ice
158 snowThick = snowThick*icFrac(i,j)/iceFrac
159 sst=(1. _d 0-newIceFrac)*sst+newIceFrac*Tf
160 ENDIF
161 C- oceanic fluxes:
162 flx2oc(i,j)= iceThick*newIceFrac*qicAv/deltaTice
163 frw2oc(i,j)=-(rhoi*iceThick)*newIceFrac/deltaTice
164 fsalt(i,j)= -(rhoi*iceThick*saltice)*newIceFrac/deltaTice
165
166 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
167 #ifdef ALLOW_DBUG_THSICE
168 IF ( dBug(i,j,bi,bj) ) THEN
169 WRITE(6,1020) 'ThSI_EXT: iceH, newIce, newIceFrac=',
170 & iceThick, newIce, newIceFrac
171 WRITE(6,1020) 'ThSI_EXT: iceFrac,flx2oc,fsalt,frw2oc=',
172 & iceFrac,flx2oc(i,j),fsalt(i,j),frw2oc(i,j)
173 ENDIF
174 #endif
175 #ifdef CHECK_ENERGY_CONSERV
176 CALL THSICE_CHECK_CONSERV( dBugFlag, i, j, bi, bj, 1,
177 I icFrac(i,j), iceFrac, iceThick, snowThick, qicen,
178 I flx2oc(i,j), frw2oc(i,j), fsalt(i,j),
179 I myTime, myIter, myThid )
180 #endif /* CHECK_ENERGY_CONSERV */
181 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
182 C-- Update Sea-Ice state output:
183 IF ( iceFrac.GT.0. _d 0 .AND. icFrac(i,j).EQ.0. _d 0) THEN
184 tSrf(i,j) = tFrz(i,j)
185 tIc1(i,j) = tFrz(i,j)
186 tIc2(i,j) = tFrz(i,j)
187 qIc1(i,j) = qicen(1)
188 qIc2(i,j) = qicen(2)
189 ENDIF
190 icFrac(i,j) = iceFrac
191 hIce(i,j) = iceThick
192 hSnow(i,j ) = snowThick
193 ENDIF
194 ENDDO
195 ENDDO
196
197 #endif /* ALLOW_THSICE */
198
199 RETURN
200 END

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