/[MITgcm]/MITgcm/model/inc/PARAMS.h
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Contents of /MITgcm/model/inc/PARAMS.h

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Revision 1.20 - (show annotations) (download)
Thu Jun 18 13:56:06 1998 UTC (25 years, 11 months ago) by adcroft
Branch: MAIN
CVS Tags: checkpoint11, checkpoint10, checkpoint9, checkpoint8, checkpoint12, branch-point-rdot
Branch point for: branch-rdot
Changes since 1.19: +5 -2 lines
File MIME type: text/plain
Added time-averaging (written by Elodie K.). Controlled by parameter
taveFreq. taveFreq=0 turns it off.

1 C $Header: /u/gcmpack/models/MITgcmUV/model/inc/PARAMS.h,v 1.19 1998/06/17 21:07:01 adcroft Exp $
2 C
3 C /==========================================================\
4 C | PARAMS.h |
5 C | o Header file defining model "parameters". |
6 C |==========================================================|
7 C | The values from the model's standard input file are |
8 C | stored into the variables held here. Notes describing |
9 C | the parameters can also be found here. |
10 C \==========================================================/
11
12 C Macros for special grid options
13 #include "PARAMS_MACROS.h"
14
15 C-- Contants
16 C Useful physical values
17 Real*8 PI
18 PARAMETER ( PI = 3.14159265358979323844D0 )
19 Real*8 deg2rad
20 PARAMETER ( deg2rad = 2.D0*PI/360.D0 )
21
22 C Symbolic values
23 C precXXXX - Used to indicate what precision to use for
24 C dumping model state.
25 INTEGER precFloat32
26 PARAMETER ( precFloat32 = 0 )
27 INTEGER precFloat64
28 PARAMETER ( precFloat64 = 1 )
29
30 C Checkpoint data
31 INTEGER maxNoChkptLev
32 PARAMETER ( maxNoChkptLev = 2 )
33
34 C-- COMMON /PARM_C/ Character valued parameters used by the model.
35 C checkPtSuff - List of checkpoint file suffices
36 C bathyFile - File containing bathymetry. If not defined bathymetry
37 C is taken from inline function.
38 C hydrogThetaFile - File containing initial hydrographic data for potential
39 C temperature.
40 C hydrogSaltFile - File containing initial hydrographic data for salinity.
41 C zonalWindFile - File containing zonal wind data
42 C meridWindFile - File containing meridional wind data
43 C thetaClimFile - File containing theta climataology used
44 C in relaxation term -lambda(theta-theta*)
45 C saltClimFile - File containing salt climataology used
46 C in relaxation term -lambda(salt-salt*)
47 COMMON /PARM_C/ checkPtSuff,
48 & bathyFile, hydrogThetaFile, hydrogSaltFile,
49 & zonalWindFile, meridWindFile, thetaClimFile,
50 & saltClimFile
51 CHARACTER*(5) checkPtSuff(maxNoChkptLev)
52 CHARACTER*(MAX_LEN_FNAM) bathyFile
53 CHARACTER*(MAX_LEN_FNAM) hydrogThetaFile
54 CHARACTER*(MAX_LEN_FNAM) hydrogSaltFile
55 CHARACTER*(MAX_LEN_FNAM) zonalWindFile
56 CHARACTER*(MAX_LEN_FNAM) meridWindFile
57 CHARACTER*(MAX_LEN_FNAM) thetaClimFile
58 CHARACTER*(MAX_LEN_FNAM) saltClimFile
59
60 C-- COMMON /PARM_I/ Integer valued parameters used by the model.
61 C cg2dMaxIters - Maximum number of iterations in the
62 C two-dimensional con. grad solver.
63 C cg2dChkResFreq - Frequency with which to check residual
64 C in con. grad solver.
65 C nIter0 - Start time-step number of for this run
66 C nTimeSteps - Number of timesteps to execute
67 C numStepsPerPickup - For offline setup. Frequency of pickup
68 C of flow fields.
69 C writeStatePrec - Precision used for writing model state.
70 C writeBinaryPrec - Precision used for writing binary files
71 C readBinaryPrec - Precision used for reading binary files
72 C nCheckLev - Holds current checkpoint level
73 COMMON /PARM_I/
74 & cg2dMaxIters,
75 & cg2dChkResFreq,
76 & nIter0, nTimeSteps,
77 & numStepsPerPickup,
78 & writeStatePrec, nCheckLev,
79 & writeBinaryPrec, readBinaryPrec
80 INTEGER cg2dMaxIters
81 INTEGER cg2dChkResFreq
82 INTEGER nIter0
83 INTEGER nTimeSteps
84 INTEGER numStepsPerPickup
85 INTEGER writeStatePrec
86 INTEGER writeBinaryPrec
87 INTEGER readBinaryPrec
88 INTEGER nCheckLev
89
90 C-- COMMON /PARM_L/ Logical valued parameters used by the model.
91 C usingCartesianGrid - If TRUE grid generation will be in a cartesian
92 C coordinate frame.
93 C usingSphericalPolarGrid - If TRUE grid generation will be in a
94 C spherical polar frame.
95 C momViscosity - Flag which turns momentum friction terms on and off.
96 C momAdvection - Flag which turns advection of momentum on and off.
97 C momForcing - Flag which turns external forcing of momentum on
98 C and off.
99 C momPressureForcing - Flag which turns pressure term in momentum equation
100 C on and off.
101 C metricTerms - Flag which turns metric terms on or off.
102 C usingSphericalPolarMTerms - If TRUE use spherical polar metric terms.
103 C useCoriolis - Flag which turns the coriolis terms on and off.
104 C tempDiffusion - Flag which turns diffusion of temperature on
105 C and off.
106 C tempAdvection - Flag which turns advection of temperature on
107 C and off.
108 C tempForcing - Flag which turns external forcing of temperature on
109 C and off.
110 C saltDiffusion - Flag which turns diffusion of salinit on
111 C and off.
112 C saltAdvection - Flag which turns advection of salinit on
113 C and off.
114 C saltForcing - Flag which turns external forcing of salinit on
115 C and off.
116 C implicitFreeSurface - Set to true to use implcit free surface
117 C rigidLid - Set to true to use rigid lid
118 C momStepping - Turns momentum equation time-stepping off
119 C tempStepping - Turns temperature equation time-stepping off
120 C saltStepping - Turns salinity equation time-stepping off
121 C useConstantF - Coriolis parameter set to f0
122 C useBetaPlaneF - Coriolis parameter set to f0 + beta.y
123 C useSphereF - Coriolis parameter set to 2.omega.sin(phi)
124 C implicitDiffusion - Turns implicit vertical diffusion on
125 C doThetaClimRelax - Set true if relaxation to temperature
126 C climatology is required.
127 C doSaltClimRelax - Set true if relaxation to salinity
128 C climatology is required.
129 C periodicExternalForcing - Set true if forcing is time-dependant
130 COMMON /PARM_L/ usingCartesianGrid, usingSphericalPolarGrid,
131 & momViscosity, momAdvection, momForcing, useCoriolis, momPressureForcing,
132 & tempDiffusion, tempAdvection, tempForcing,
133 & saltDiffusion, saltAdvection, saltForcing,
134 & implicitFreeSurface, rigidLid,
135 & momStepping, tempStepping, saltStepping,
136 & metricTerms, usingSphericalPolarMTerms,
137 & useConstantF, useBetaPlaneF, useSphereF,
138 & implicitDiffusion, doThetaClimRelax, doSaltClimRelax,
139 & periodicExternalForcing
140 LOGICAL usingCartesianGrid
141 LOGICAL usingSphericalPolarGrid
142 LOGICAL usingSphericalPolarMTerms
143 LOGICAL momViscosity
144 LOGICAL momAdvection
145 LOGICAL momForcing
146 LOGICAL momPressureForcing
147 LOGICAL useCoriolis
148 LOGICAL tempDiffusion
149 LOGICAL tempAdvection
150 LOGICAL tempForcing
151 LOGICAL saltDiffusion
152 LOGICAL saltAdvection
153 LOGICAL saltForcing
154 LOGICAL implicitFreeSurface
155 LOGICAL rigidLid
156 LOGICAL momStepping
157 LOGICAL tempStepping
158 LOGICAL saltStepping
159 LOGICAL metricTerms
160 LOGICAL useConstantF
161 LOGICAL useBetaPlaneF
162 LOGICAL useSphereF
163 LOGICAL implicitDiffusion
164 LOGICAL doThetaClimRelax
165 LOGICAL doSaltClimRelax
166 LOGICAL periodicExternalForcing
167
168 C-- COMMON /PARM_R/ "Real" valued parameters used by the model.
169 C cg2dTargetResidual
170 C - Target residual for cg2d solver.
171 C cg2dpcOffDFac - Averaging weight for preconditioner off-diagonal.
172 C Note. 20th May 1998
173 C I made a weird discovery! In the model paper we argue
174 C for the form of the preconditioner used here ( see
175 C A Finite-volume, Incompressible Navier-Stokes Model
176 C ...., Marshall et. al ). The algebra gives a simple
177 C 0.5 factor for the averaging of ac and aCw to get a
178 C symmettric pre-conditioner. By using a factor of 0.51
179 C i.e. scaling the off-diagonal terms in the
180 C preconditioner down slightly I managed to get the
181 C number of iterations for convergence in a test case to
182 C drop form 192 -> 134! Need to investigate this further!
183 C For now I have introduced a parameter cg2dpcOffDFac which
184 C defaults to 0.51 but can be set at runtime.
185 C delZ - Vertical grid spacing ( m ) - delZ is the distance
186 C between "w" surfaces.
187 C delX - Separation between cell faces (m) or (deg), depending
188 C delY on input flags.
189 C gravity - Accel. due to gravity ( m/s^2 )
190 C gBaro - Accel. due to gravity used in barotropic equation ( m/s^2 )
191 C ronil - Reference density
192 C startTime - Start time for model ( s )
193 C phiMin - Latitude of southern most cell face.
194 C thetaMin - Longitude of western most cell face (this
195 C is an "inert" parameter but it is included
196 C to make geographical references simple.)
197 C rSphere - Radius of sphere for a spherical polar grid ( m ).
198 C rRSphere - Reciprocal radius of sphere for a spherical polar grid ( m ).
199 C f0 - Reference coriolis parameter ( 1/s )
200 C ( Southern edge f for beta plane )
201 C beta - df/dy ( s^-1.m^-1 )
202 C omega - Angular velocity ( rad/s )
203 C viscAh - Eddy viscosity coeff. for mixing of
204 C momentum laterally ( m^2/s )
205 C viscAz - Eddy viscosity coeff. for mixing of
206 C momentum vertically ( m^2/s )
207 C viscA4 - Biharmonic viscosity coeff. for mixing of
208 C momentum laterally ( m^4/s )
209 C diffKhT - Laplacian diffusion coeff. for mixing of
210 C heat laterally ( m^2/s )
211 C diffKzT - Laplacian diffusion coeff. for mixing of
212 C heat vertically ( m^2/s )
213 C diffK4T - Biharmonic diffusion coeff. for mixing of
214 C heat laterally ( m^4/s )
215 C diffKhS - Laplacian diffusion coeff. for mixing of
216 C salt laterally ( m^2/s )
217 C diffKzS - Laplacian diffusion coeff. for mixing of
218 C salt vertically ( m^2/s )
219 C diffK4S - Biharmonic diffusion coeff. for mixing of
220 C salt laterally ( m^4/s )
221 C deltaT - Default timestep ( s )
222 C deltaTClock - Timestep used as model "clock". This determines the
223 C IO frequencies and is used in tagging output. It can
224 C be totally different to the dynamical time. Typically
225 C it will be the deep-water timestep for accelerated runs.
226 C Frequency of checkpointing and dumping of the model state
227 C are referenced to this clock. ( s )
228 C deltaTMom - Timestep for momemtum equations ( s )
229 C deltaTtracer - Timestep for tracer equations ( s )
230 C freesurfFac - Parameter to turn implicit free surface term on or off
231 C freesurfac = 1. uses implicit free surface
232 C freesurfac = 0. uses rigid lid
233 C tauCD - CD scheme coupling timescale ( 1/s )
234 C rCD - CD scheme normalised coupling parameter ( 0-1 )
235 C GMmaxslope - max. slope allowed in GM/Redi tensor
236 C GMlength - Length to use in Visbeck et al. formula for K (m)
237 C GMalpha - alpha to use in Visbeck et al. formula for K
238 C GMdepth - Depth over which to integrate Richardson # (Visbeck et al.)
239 C GMkbackground - background value of GM/Redi coefficient
240 C startTime - Starting time for this integration ( s ).
241 C endTime - Ending time for this integration ( s ).
242 C chkPtFreq - Frequency of rolling check pointing ( s ).
243 C pChkPtFreq - Frequency of permanent check pointing ( s ).
244 C dumpFreq - Frequency with which model state is written to
245 C post-processing files ( s ).
246 C taveFreq - Frequency with which time-averaged model state is written to
247 C post-processing files ( s ).
248 C afFacMom - Advection of momentum term scaling parameter
249 C vfFacMom - Momentum viscosity scaling parameter
250 C pfFacMom - Momentum pressure forcing parameter
251 C cfFacMom - Coriolis term scaling parameter
252 C foFacMom - Momentum forcing scaling parameter
253 C mtFacMom - Metric terms scaling parameter
254 C cAdjFreq - Frequency of convective adjustment
255 C tauThetaClimRelax - Relaxation to climatology time scale ( s ).
256 C lambdaThetaClimRelax - Inverse time scale for relaxation ( 1/s ).
257 C tauSaltClimRelax - Relaxation to climatology time scale ( s ).
258 C lambdaSaltClimRelax - Inverse time scale for relaxation ( 1/s ).
259 C externForcingPeriod - Is the period of which forcing varies (eg. 1 month)
260 C externForcingCycle - Is the repeat time of the forcing (eg. 1 year)
261 C (note: externForcingCycle must be an integer
262 C number times externForcingPeriod)
263 COMMON /PARM_R/ cg2dTargetResidual, cg2dpcOffDFac, delZ, delX, delY,
264 & deltaT,deltaTmom, deltaTtracer, deltaTClock,abeps, startTime, phiMin,
265 & thetaMin, rSphere, rRSphere, f0, fCori, beta, viscAh, viscAz, viscA4,
266 & diffKhT, diffKzT, diffK4T, diffKhS, diffKzS, diffK4S, delT,
267 & tauCD, rCD, freeSurfFac,
268 & GMmaxslope,GMlength,GMalpha,GMdepth,GMkbackground,
269 & gravity, gBaro, rhonil, tRef, sRef,
270 & endTime, chkPtFreq, pchkPtFreq, dumpFreq, taveFreq,
271 & afFacMom, vfFacMom, pfFacMom, cfFacMom, foFacMom, mtFacMom,
272 & cAdjFreq, omega, tauThetaClimRelax, lambdaThetaClimRelax,
273 & tauSaltClimRelax, lambdaSaltClimRelax,
274 & externForcingCycle, externForcingPeriod
275 _RL cg2dTargetResidual
276 _RL cg2dpcOffDFac
277 _RL delZ(Nz)
278 _RL delX(Nx)
279 _RL delY(Ny)
280 _RL deltaT
281 _RL deltaTClock
282 _RL deltaTmom
283 _RL deltaTtracer
284 _RL abeps
285 _RL phiMin
286 _RL thetaMin
287 _RL rSphere
288 _RL rRSphere
289 _RL f0
290 _RL freeSurfFac
291 _RL beta
292 _RL viscAh
293 _RL viscAz
294 _RL viscA4
295 _RL diffKhT
296 _RL diffKzT
297 _RL diffK4T
298 _RL diffKhS
299 _RL diffKzS
300 _RL diffK4S
301 _RL delt
302 _RL tauCD
303 _RL rCD
304 _RL GMmaxslope
305 _RL GMlength
306 _RL GMalpha
307 _RL GMdepth
308 _RL GMkbackground
309 _RL gravity
310 _RL gBaro
311 _RL rhonil
312 _RL tRef(Nz)
313 _RL sRef(Nz)
314 _RS Fcori(1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)
315 _RL startTime
316 _RL endTime
317 _RL chkPtFreq
318 _RL pChkPtFreq
319 _RL dumpFreq
320 _RL taveFreq
321 _RL afFacMom
322 _RL vfFacMom
323 _RL pfFacMom
324 _RL cfFacMom
325 _RL foFacMom
326 _RL mTFacMom
327 _RL cAdjFreq
328 _RL omega
329 _RL tauThetaClimRelax
330 _RL lambdaThetaClimRelax
331 _RL tauSaltClimRelax
332 _RL lambdaSaltClimRelax
333 _RL externForcingCycle
334 _RL externForcingPeriod
335
336 COMMON /PARM_A/ HeatCapacity_Cp,
337 & Lamba_theta
338 _RL HeatCapacity_Cp
339 _RL Lamba_theta
340
341 C Equation of State (polynomial coeffients)
342 COMMON /PARM_EOS_NL/ eosC,eosSig0,eosRefT,eosRefS
343 _RL eosC(9,Nz+1),eosSig0(Nz+1),eosRefT(Nz+1),eosRefS(Nz+1)
344 C Linear equation of state
345 C tAlpha - Linear EOS thermal expansion coefficient ( 1/degree ).
346 C sBeta - Linear EOS haline contraction coefficient.
347 COMMON /PARM_EOS_LIN/ tAlpha,sBeta,eosType
348 _RL tAlpha
349 _RL sBeta
350 character*(6) eosType
351

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