/[MITgcm]/MITgcm_contrib/high_res_cube/code-mods/SEAICE_OPTIONS.h
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Contents of /MITgcm_contrib/high_res_cube/code-mods/SEAICE_OPTIONS.h

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Revision 1.16 - (show annotations) (download)
Fri Jan 11 20:23:44 2008 UTC (17 years, 6 months ago) by dimitri
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1 C $Header: /u/gcmpack/MITgcm_contrib/high_res_cube/code-mods/SEAICE_OPTIONS.h,v 1.15 2007/12/23 06:04:43 dimitri Exp $
2
3 C /==========================================================\
4 C | SEAICE_OPTIONS.h |
5 C | o CPP options file for sea ice package. |
6 C |==========================================================|
7 C | Use this file for selecting options within the sea ice |
8 C | package. |
9 C \==========================================================/
10
11 #ifndef SEAICE_OPTIONS_H
12 #define SEAICE_OPTIONS_H
13 #include "PACKAGES_CONFIG.h"
14 #include "CPP_OPTIONS.h"
15
16 C-- Write "text-plots" of certain fields in STDOUT for debugging.
17 #undef SEAICE_DEBUG
18
19 C-- Allow sea-ice dynamic code.
20 C This option is provided to allow use of TAMC
21 C on the thermodynamics component of the code only.
22 C Sea-ice dynamics can also be turned off at runtime
23 C using variable SEAICEuseDYNAMICS.
24 #define SEAICE_ALLOW_DYNAMICS
25
26 C-- By default, the sea-ice package uses its own integrated bulk
27 C formulae to compute fluxes (fu, fv, EmPmR, Qnet, and Qsw) over
28 C open-ocean. When this flag is set, these variables are computed
29 C in a separate external package, for example, pkg/exf, and then
30 C modified for sea-ice effects by pkg/seaice.
31 #define SEAICE_EXTERNAL_FLUXES
32
33 C-- By default, the sea-ice package uses 2-category thermodynamics.
34 C When this flag is set, an 8-category calculation of ice
35 C thermodynamics is carried out in groatb.F
36 C Note the pickup_seaice.* generated by this option differ
37 C from those generated with the default 2-category model.
38 C Therefore it is not possible to switch between the two
39 C in the middle of an integration.
40 #define SEAICE_MULTICATEGORY
41
42 C-- By default for B-grid dynamics solver wind stress under sea-ice is
43 C set to the same value as it would be if there was no sea-ice.
44 C Define following CPP flag for B-grid ice-ocean stress coupling.
45 #undef SEAICE_TEST_ICE_STRESS_1
46
47 C-- By default for B-grid dynamics solver surface tilt is obtained
48 C indirectly via geostrophic velocities. Define following CPP
49 C in order to ues ETAN instead.
50 #undef EXPLICIT_SSH_SLOPE
51
52 C-- By default the freezing point of water is set to the value of
53 C the parameter SEAICE_freeze (=-1.96 by default). To use a
54 C simple linear dependence of the freezing point on salinity,
55 C set the following flag (pressure is assumed to have no effect,
56 C which is a good assumption for the top 20 meters). With this
57 C option defined the parameter SEAICE_freeze has no effect.
58 #define SEAICE_VARIABLE_FREEZING_POINT
59
60 C-- Allow SEAICEuseFlooding, which converts snow to ice if submerged.
61 #define ALLOW_SEAICE_FLOODING
62
63 C-- By default sea ice is fresh. Set following flag for salty ice.
64 #define SEAICE_SALINITY
65
66 C-- By default the seaice model is discretized on a B-Grid (for
67 C historical reasons). Define the following flag to use a new
68 C (not thoroughly) test version on a C-grid
69 #define SEAICE_CGRID
70
71 C-- Only for the C-grid version it is possible to enable EVP code by
72 C defining the following flag
73 #ifdef SEAICE_CGRID
74 #undef SEAICE_ALLOW_EVP
75 #endif /* SEAICE_CGRID */
76
77 C-- When set use MAX_HEFF to cap sea ice thickness in seaice_growth
78 #define SEAICE_CAP_HEFF
79
80 #endif /* SEAICE_OPTIONS_H */
81
82 CEH3 ;;; Local Variables: ***
83 CEH3 ;;; mode:fortran ***
84 CEH3 ;;; End: ***

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