/[MITgcm]/MITgcm/verification/global_ocean.90x40x15/code_ad/GMREDI_OPTIONS.h
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revision 1.3 by heimbach, Thu Nov 28 17:30:34 2002 UTC revision 1.12 by jmc, Sat Dec 24 01:17:51 2011 UTC
# Line 2  C $Header$ Line 2  C $Header$
2  C $Name$  C $Name$
3    
4  C CPP options file for GM/Redi package  C CPP options file for GM/Redi package
 C  
5  C Use this file for selecting options within the GM/Redi package  C Use this file for selecting options within the GM/Redi package
 C  
 C GM/Redi is enabled with ALLOW_GMREDI in CPP_OPTIONS.h  
6    
7    #ifndef GMREDI_OPTIONS_H
8    #define GMREDI_OPTIONS_H
9    #include "PACKAGES_CONFIG.h"
10  #include "CPP_OPTIONS.h"  #include "CPP_OPTIONS.h"
11    
12  #ifdef ALLOW_GMREDI  #ifdef ALLOW_GMREDI
13    C     Package-specific Options & Macros go here
14    
15  C Specify as tapering scheme either 'orig' or 'clipping',  C Designed to simplify the Ajoint code:
16  C otherwise one of the following is used:  C #define GMREDI_WITH_STABLE_ADJOINT
17  C 'linear', 'gkw91', 'dm95', 'ldd97'  C -- exclude the clipping/tapering part of the code that is not used
18  #undef GM_TAPER_ORIG_CLIPPING  #define GM_EXCLUDE_CLIPPING
19  #undef GM_TAPER_AC02  #define GM_EXCLUDE_FM07_TAP
20  #define GM_TAPER_REST  #define GM_EXCLUDE_AC02_TAP
21    #undef GM_EXCLUDE_TAPERING
22    #define GM_EXCLUDE_SUBMESO
23    
24    C This allows to use Visbeck et al formulation to compute K_GM+Redi
25    #undef GM_VISBECK_VARIABLE_K
26    C Use old calculation (before 2007/05/24) of Visbeck etal K_GM+Redi
27    C (which depends on tapering scheme)
28    #undef OLD_VISBECK_CALC
29    
30  C This allows the leading diagonal (top two rows) to be non-unity  C This allows the leading diagonal (top two rows) to be non-unity
31  C (a feature required when tapering adiabatically).  C (a feature required when tapering adiabatically).
# Line 24  C (a feature required when tapering adia Line 33  C (a feature required when tapering adia
33    
34  C Allows to use different values of K_GM and K_Redi ; also to  C Allows to use different values of K_GM and K_Redi ; also to
35  C be used with the advective form (Bolus velocity) of GM  C be used with the advective form (Bolus velocity) of GM
36  #undef  GM_EXTRA_DIAGONAL  #define GM_EXTRA_DIAGONAL
37    
38  C Allows to use the advective form (Bolus velocity) of GM  C Allows to use the advective form (Bolus velocity) of GM
39  C  instead of the Skew-Flux form (=default)  C  instead of the Skew-Flux form (=default)
40  #undef  GM_BOLUS_ADVEC  #define GM_BOLUS_ADVEC
   
 C This allows to use Visbeck et al formulation to compute K_GM+Redi  
 #undef  GM_VISBECK_VARIABLE_K  
41    
42    C Allows to use the Boundary-Value-Problem method to evaluate GM Bolus transport
43    #undef GM_BOLUS_BVP
44    
45  #endif /* ALLOW_GMREDI */  #endif /* ALLOW_GMREDI */
46    #endif /* GMREDI_OPTIONS_H */
47    
48    CEH3 ;;; Local Variables: ***
49    CEH3 ;;; mode:fortran ***
50    CEH3 ;;; End: ***

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