/[MITgcm]/MITgcm/model/inc/PARAMS.h
ViewVC logotype

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

Parent Directory Parent Directory | Revision Log Revision Log | View Revision Graph Revision Graph


Revision 1.145 - (show annotations) (download)
Mon Feb 28 17:35:38 2005 UTC (19 years, 2 months ago) by heimbach
Branch: MAIN
CVS Tags: checkpoint57e_post
Changes since 1.144: +6 -1 lines
File MIME type: text/plain
Adding eddy stress controls a la Ferreira et al.

1 C $Header: /u/gcmpack/MITgcm/model/inc/PARAMS.h,v 1.144 2005/02/20 11:46:24 dimitri Exp $
2 C $Name: $
3 C
4
5 CBOP
6 C !ROUTINE: PARAMS.h
7 C !INTERFACE:
8 C #include PARAMS.h
9
10 C !DESCRIPTION:
11 C Header file defining model "parameters". The values from the
12 C model standard input file are stored into the variables held
13 C here. Notes describing the parameters can also be found here.
14
15 CEOP
16
17 C Macros for special grid options
18 #include "PARAMS_MACROS.h"
19
20 C-- Contants
21 C Useful physical values
22 Real*8 PI
23 PARAMETER ( PI = 3.14159265358979323844D0 )
24 Real*8 deg2rad
25 PARAMETER ( deg2rad = 2.D0*PI/360.D0 )
26
27 C Symbolic values
28 C precXXXX :: Used to indicate what precision to use for
29 C dumping model state.
30 INTEGER precFloat32
31 PARAMETER ( precFloat32 = 32 )
32 INTEGER precFloat64
33 PARAMETER ( precFloat64 = 64 )
34 C UNSET_xxx :: Used to indicate variables that have not been given a value
35 Real*8 UNSET_FLOAT8
36 PARAMETER ( UNSET_FLOAT8 = 1.234567D5 )
37 Real*4 UNSET_FLOAT4
38 PARAMETER ( UNSET_FLOAT4 = 1.234567E5 )
39 _RL UNSET_RL
40 PARAMETER ( UNSET_RL = 1.234567D5 )
41 _RS UNSET_RS
42 PARAMETER ( UNSET_RS = 1.234567E5 )
43 INTEGER UNSET_I
44 PARAMETER ( UNSET_I = 123456789 )
45
46 C Checkpoint data
47 INTEGER maxNoChkptLev
48 PARAMETER ( maxNoChkptLev = 2 )
49
50 C-- COMMON /PARM_C/ Character valued parameters used by the model.
51 C checkPtSuff :: List of checkpoint file suffices
52 C bathyFile :: File containing bathymetry. If not defined bathymetry
53 C is taken from inline function.
54 C topoFile :: File containing the topography of the surface (unit=m)
55 C (mainly used for the atmosphere = ground height).
56 C hydrogThetaFile :: File containing initial hydrographic data for potential
57 C temperature.
58 C hydrogSaltFile :: File containing initial hydrographic data for salinity.
59 C zonalWindFile :: File containing zonal wind data
60 C meridWindFile :: File containing meridional wind data
61 C thetaClimFile :: File containing theta climataology used
62 C in relaxation term -lambda(theta-theta*)
63 C saltClimFile :: File containing salt climataology used
64 C in relaxation term -lambda(salt-salt*)
65 C surfQfile :: File containing surface heat flux, excluding SW
66 C (old version, kept for backward compatibility)
67 C surfQnetFile :: File containing surface net heat flux
68 C surfQswFile :: File containing surface shortwave radiation
69 C dQdTfile :: File containing thermal relaxation coefficient
70 C EmPmRfile :: File containing surface fresh water flux
71 C saltFluxFile :: File containing surface salt flux
72 C pLoadFile :: File containing pressure loading
73 C eddyTauxFile :: File containing zonal Eddy stress data
74 C eddyTauyFile :: File containing meridional Eddy stress data
75 C buoyancyRelation :: Flag used to indicate which relation to use to
76 C get buoyancy.
77 C eosType :: choose the equation of state:
78 C LINEAR, POLY3, UNESCO, JMD95Z, JMD95P, MDJWF, IDEALGAS
79 C the_run_name :: string identifying the name of the model "run"
80 COMMON /PARM_C/ checkPtSuff,
81 & bathyFile, topoFile,
82 & hydrogThetaFile, hydrogSaltFile,
83 & zonalWindFile, meridWindFile, thetaClimFile,
84 & saltClimFile, buoyancyRelation,
85 & EmPmRfile, saltFluxFile,
86 & surfQfile, surfQnetFile, surfQswFile,
87 & uVelInitFile, vVelInitFile, pSurfInitFile,
88 & dQdTfile, ploadFile,
89 & eddyTauxFile, eddyTauyFile,
90 & eosType, pickupSuff,
91 & mdsioLocalDir,
92 & the_run_name
93 CHARACTER*(5) checkPtSuff(maxNoChkptLev)
94 CHARACTER*(MAX_LEN_FNAM) bathyFile, topoFile
95 CHARACTER*(MAX_LEN_FNAM) hydrogThetaFile
96 CHARACTER*(MAX_LEN_FNAM) hydrogSaltFile
97 CHARACTER*(MAX_LEN_FNAM) zonalWindFile
98 CHARACTER*(MAX_LEN_FNAM) meridWindFile
99 CHARACTER*(MAX_LEN_FNAM) thetaClimFile
100 CHARACTER*(MAX_LEN_FNAM) saltClimFile
101 CHARACTER*(MAX_LEN_FNAM) surfQfile
102 CHARACTER*(MAX_LEN_FNAM) surfQnetFile
103 CHARACTER*(MAX_LEN_FNAM) surfQswFile
104 CHARACTER*(MAX_LEN_FNAM) EmPmRfile
105 CHARACTER*(MAX_LEN_FNAM) saltFluxFile
106 CHARACTER*(MAX_LEN_FNAM) buoyancyRelation
107 CHARACTER*(MAX_LEN_FNAM) uVelInitFile
108 CHARACTER*(MAX_LEN_FNAM) vVelInitFile
109 CHARACTER*(MAX_LEN_FNAM) pSurfInitFile
110 CHARACTER*(MAX_LEN_FNAM) dQdTfile
111 CHARACTER*(MAX_LEN_FNAM) ploadFile
112 CHARACTER*(MAX_LEN_FNAM) eddyTauxFile
113 CHARACTER*(MAX_LEN_FNAM) eddyTauyFile
114 CHARACTER*(MAX_LEN_FNAM) mdsioLocalDir
115 CHARACTER*(MAX_LEN_FNAM) the_run_name
116 CHARACTER*(6) eosType
117 CHARACTER*(10) pickupSuff
118
119 C-- COMMON /PARM_I/ Integer valued parameters used by the model.
120 C cg2dMaxIters :: Maximum number of iterations in the
121 C two-dimensional con. grad solver.
122 C cg2dChkResFreq :: Frequency with which to check residual
123 C in con. grad solver.
124 C cg2dPreCondFreq :: Frequency for updating cg2d preconditioner
125 C (non-linear free-surf.)
126 C cg3dMaxIters :: Maximum number of iterations in the
127 C three-dimensional con. grad solver.
128 C cg3dChkResFreq :: Frequency with which to check residual
129 C in con. grad solver.
130 C nIter0 :: Start time-step number of for this run
131 C nTimeSteps :: Number of timesteps to execute
132 C numStepsPerPickup :: For offline setup. Frequency of pickup
133 C of flow fields.
134 C writeStatePrec :: Precision used for writing model state.
135 C writeBinaryPrec :: Precision used for writing binary files
136 C readBinaryPrec :: Precision used for reading binary files
137 C nCheckLev :: Holds current checkpoint level
138 C nonlinFreeSurf :: option related to non-linear free surface
139 C =0 Linear free surface ; >0 Non-linear
140 C select_rStar :: option related to r* vertical coordinate
141 C =0 (default) use r coord. ; > 0 use r*
142 C tempAdvScheme :: Temp. Horiz.Advection scheme selector
143 C tempVertAdvScheme :: Temp. Vert. Advection scheme selector
144 C saltAdvScheme :: Salt. Horiz.advection scheme selector
145 C saltVertAdvScheme :: Salt. Vert. Advection scheme selector
146 C debugLevel :: debug level selector: higher -> more writing
147
148 COMMON /PARM_I/
149 & cg2dMaxIters,
150 & cg2dChkResFreq, cg2dPreCondFreq,
151 & cg3dMaxIters,
152 & cg3dChkResFreq,
153 & nIter0, nTimeSteps, nEndIter,
154 & numStepsPerPickup,
155 & writeStatePrec, nCheckLev,
156 & writeBinaryPrec, readBinaryPrec,
157 & nonlinFreeSurf, select_rStar,
158 & tempAdvScheme, tempVertAdvScheme,
159 & saltAdvScheme, saltVertAdvScheme,
160 & debugLevel
161 INTEGER cg2dMaxIters
162 INTEGER cg2dChkResFreq
163 INTEGER cg2dPreCondFreq
164 INTEGER cg3dMaxIters
165 INTEGER cg3dChkResFreq
166 INTEGER nIter0
167 INTEGER nTimeSteps
168 INTEGER nEndIter
169 INTEGER numStepsPerPickup
170 INTEGER writeStatePrec
171 INTEGER writeBinaryPrec
172 INTEGER readBinaryPrec
173 INTEGER nCheckLev
174 INTEGER nonlinFreeSurf
175 INTEGER select_rStar
176 INTEGER tempAdvScheme, tempVertAdvScheme
177 INTEGER saltAdvScheme, saltVertAdvScheme
178 INTEGER debugLevel
179
180 C
181 INTEGER debLevZero
182 PARAMETER(debLevZero=0)
183 INTEGER debLevA
184 PARAMETER(debLevA=1)
185 INTEGER debLevB
186 PARAMETER(debLevB=2)
187
188 C-- COMMON /PARM_L/ Logical valued parameters used by the model.
189 C usingCartesianGrid :: If TRUE grid generation will be in a cartesian
190 C coordinate frame.
191 C usingSphericalPolarGrid :: If TRUE grid generation will be in a
192 C spherical polar frame.
193 C usingCylindricalGrid :: If TRUE grid generation will be Cylindrical
194 C no_slip_sides :: Impose "no-slip" at lateral boundaries.
195 C no_slip_bottom :: Impose "no-slip" at bottom boundary.
196 C staggerTimeStep :: enable a Stagger time stepping T,S Rho then U,V
197 C momViscosity :: Flag which turns momentum friction terms on and off.
198 C momAdvection :: Flag which turns advection of momentum on and off.
199 C momForcing :: Flag which turns external forcing of momentum on
200 C and off.
201 C momPressureForcing :: Flag which turns pressure term in momentum equation
202 C on and off.
203 C metricTerms :: Flag which turns metric terms on or off.
204 C usingSphericalPolarMTerms :: If TRUE use spherical polar metric terms.
205 C useNHMTerms :: If TRUE use non-hydrostatic metric terms.
206 C useCoriolis :: Flag which turns the coriolis terms on and off.
207 C tempAdvection :: Flag which turns advection of temperature on
208 C and off.
209 C tempForcing :: Flag which turns external forcing of temperature on
210 C and off.
211 C saltAdvection :: Flag which turns advection of salinity on
212 C and off.
213 C saltForcing :: Flag which turns external forcing of salinity on
214 C and off.
215 C useRealFreshWaterFlux :: if True (=Natural BCS), treats P+R-E flux
216 C as a real Fresh Water (=> changes the Sea Level)
217 C if F, converts P+R-E to salt flux (no SL effect)
218 C rigidLid :: Set to true to use rigid lid
219 C implicitFreeSurface :: Set to true to use implcit free surface
220 C exactConserv :: Set to true to conserve exactly the total Volume
221 C uniformLin_PhiSurf :: Set to true to use a uniform Bo_surf in the
222 C linear relation Phi_surf = Bo_surf*eta
223 C momStepping :: Turns momentum equation time-stepping off
224 C tempStepping :: Turns temperature equation time-stepping off
225 C saltStepping :: Turns salinity equation time-stepping off
226 C useConstantF :: Coriolis parameter set to f0
227 C useBetaPlaneF :: Coriolis parameter set to f0 + beta.y
228 C useSphereF :: Coriolis parameter set to 2.omega.sin(phi)
229 C useCDscheme :: use CD-scheme to calculate Coriolis terms.
230 C useJamartWetPoints :: Use wet-point method for Coriolis (Jamart and Ozer, 1986)
231 C useJamartMomAdv :: Use wet-point method for V.I. non-linear term
232 C SadournyCoriolis :: use the enstrophy conserving scheme by Sadourny
233 C upwindVorticity :: bias interpolation of vorticity in the Coriolis term
234 C highOrderVorticity :: use 3rd/4th order interp. of vorticity in Coriolis
235 C useAbsVorticity :: work with f+zeta in Coriolis terms
236 C implicitDiffusion :: Turns implicit vertical diffusion on
237 C implicitViscosity :: Turns implicit vertical viscosity on
238 C tempImplVertAdv :: Turns on implicit vertical advection for Temperature
239 C saltImplVertAdv :: Turns on implicit vertical advection for Salinity
240 C momImplVertAdv :: Turns on implicit vertical advection for Momentum
241 C multiDimAdvection :: Flag that enable multi-dimension advection
242 C useMultiDimAdvec :: True if multi-dim advection is used at least once
243 C forcing_In_AB :: if False, put forcing (Temp,Salt,Tracers) contribution
244 C out off Adams-Bashforth time stepping.
245 C doThetaClimRelax :: Set true if relaxation to temperature
246 C climatology is required.
247 C doSaltClimRelax :: Set true if relaxation to salinity
248 C climatology is required.
249 C periodicExternalForcing :: Set true if forcing is time-dependant
250 C usingPCoords :: Set to indicate that we are working in a pressure
251 C type coordinate (p or p*).
252 C usingZCoords :: Set to indicate that we are working in a height
253 C type coordinate (z or z*)
254 C fluidIsAir :: Set to indicate that the fluid major constituent
255 C is air
256 C fluidIsWater :: Set to indicate that the fluid major constituent
257 C is water
258 C useDynP_inEos_Zc :: use the dynamical pressure in EOS (with Z-coord.)
259 C this requires specific code for restart & exchange
260 C setCenterDr :: set cell Center depth and put Interface at the middle
261 C nonHydrostatic :: Using non-hydrostatic terms
262 C quasiHydrostatic :: Using non-hydrostatic terms in hydrostatic algorithm
263 C globalFiles :: Selects between "global" and "tiled" files
264 C useSingleCpuIO :: On SGI platforms, option globalFiles is either
265 C slow (f77) or does not work (f90). When
266 C useSingleCpuIO is set, mdsio_writefield.F
267 C outputs from master mpi process only.
268 C allowFreezing :: Allows surface water to freeze and form ice
269 C useOldFreezing :: use the old version (before checkpoint52a_pre, 2003-11-12)
270 C groundAtK1 :: put the surface(k=1) at the Lower Boundary (=ground)
271 C pickup_write_mdsio :: use mdsio to write pickups
272 C pickup_read_mdsio :: use mdsio to read pickups
273 C pickup_write_immed :: echo the pickup immediately (for conversion)
274 C timeave_mdsio :: use mdsio for timeave output
275 C snapshot_mdsio :: use mdsio for "snapshot" (dumpfreq/diagfreq) output
276 C monitor_stdio :: use stdio for monitor output
277 C calendarDumps :: When set, approximate months (30-31 days) and years (360-372 days)
278 C for parameters chkPtFreq, pChkPtFreq, taveFreq, SEAICE_taveFreq,
279 C KPP_taveFreq, and freq in pkg/diagnostics are converted to exact
280 C calendar months and years. Requires pkg/cal.
281 COMMON /PARM_L/ usingCartesianGrid, usingSphericalPolarGrid,
282 & usingCurvilinearGrid, usingCylindricalGrid,
283 & no_slip_sides,no_slip_bottom,
284 & staggerTimeStep,
285 & momViscosity, momAdvection, momForcing, useCoriolis,
286 & momPressureForcing, vectorInvariantMomentum,
287 & tempAdvection, tempForcing,
288 & saltAdvection, saltForcing,
289 & useRealFreshWaterFlux,
290 & rigidLid, implicitFreeSurface, exactConserv, uniformLin_PhiSurf,
291 & momStepping, tempStepping, saltStepping,
292 & metricTerms, usingSphericalPolarMTerms, useNHMTerms,
293 & useConstantF, useBetaPlaneF, useSphereF,
294 & useCDscheme,
295 & useEnergyConservingCoriolis, useJamartWetPoints, useJamartMomAdv,
296 & SadournyCoriolis, upwindVorticity, highOrderVorticity,
297 & useAbsVorticity,
298 & implicitDiffusion, implicitViscosity,
299 & tempImplVertAdv, saltImplVertAdv, momImplVertAdv,
300 & multiDimAdvection, useMultiDimAdvec, forcing_In_AB,
301 & doThetaClimRelax, doSaltClimRelax, doTr1ClimRelax,
302 & periodicExternalForcing,
303 & fluidIsAir, fluidIsWater,
304 & usingPCoords, usingZCoords, useDynP_inEos_Zc, setCenterDr,
305 & nonHydrostatic, quasiHydrostatic, globalFiles, useSingleCpuIO,
306 & allowFreezing, useOldFreezing, groundAtK1,
307 & usePickupBeforeC35, usePickupBeforeC54, debugMode,
308 & readPickupWithTracer, writePickupWithTracer,
309 & pickup_read_mdsio, pickup_write_mdsio, pickup_write_immed,
310 & timeave_mdsio, snapshot_mdsio, monitor_stdio,
311 & outputTypesInclusive,
312 & inAdMode, inAdTrue, inAdFalse, inAdExact,
313 & calendarDumps
314
315 LOGICAL usingCartesianGrid
316 LOGICAL usingSphericalPolarGrid
317 LOGICAL usingCylindricalGrid
318 LOGICAL usingCurvilinearGrid
319 LOGICAL usingSphericalPolarMTerms
320 LOGICAL useNHMTerms
321 LOGICAL no_slip_sides
322 LOGICAL no_slip_bottom
323 LOGICAL staggerTimeStep
324 LOGICAL momViscosity
325 LOGICAL momAdvection
326 LOGICAL momForcing
327 LOGICAL momPressureForcing
328 LOGICAL useCoriolis
329 LOGICAL vectorInvariantMomentum
330 LOGICAL tempAdvection
331 LOGICAL tempForcing
332 LOGICAL saltAdvection
333 LOGICAL saltForcing
334 LOGICAL useRealFreshWaterFlux
335 LOGICAL rigidLid
336 LOGICAL implicitFreeSurface
337 LOGICAL exactConserv
338 LOGICAL uniformLin_PhiSurf
339 LOGICAL momStepping
340 LOGICAL tempStepping
341 LOGICAL saltStepping
342 LOGICAL metricTerms
343 LOGICAL useConstantF
344 LOGICAL useBetaPlaneF
345 LOGICAL useSphereF
346 LOGICAL useCDscheme
347 LOGICAL useEnergyConservingCoriolis
348 LOGICAL useJamartWetPoints
349 LOGICAL useJamartMomAdv
350 LOGICAL SadournyCoriolis
351 LOGICAL upwindVorticity
352 LOGICAL highOrderVorticity
353 LOGICAL useAbsVorticity
354 LOGICAL implicitDiffusion
355 LOGICAL implicitViscosity
356 LOGICAL tempImplVertAdv
357 LOGICAL saltImplVertAdv
358 LOGICAL momImplVertAdv
359 LOGICAL multiDimAdvection
360 LOGICAL useMultiDimAdvec
361 LOGICAL forcing_In_AB
362 LOGICAL doThetaClimRelax
363 LOGICAL doSaltClimRelax
364 LOGICAL doTr1ClimRelax
365 LOGICAL periodicExternalForcing
366 LOGICAL fluidIsAir
367 LOGICAL fluidIsWater
368 LOGICAL usingPCoords
369 LOGICAL usingZCoords
370 LOGICAL useDynP_inEos_Zc
371 LOGICAL setCenterDr
372 LOGICAL nonHydrostatic
373 LOGICAL quasiHydrostatic
374 LOGICAL globalFiles
375 LOGICAL useSingleCpuIO
376 LOGICAL allowFreezing
377 LOGICAL useOldFreezing
378 LOGICAL groundAtK1
379 LOGICAL usePickupBeforeC35
380 LOGICAL usePickupBeforeC54
381 LOGICAL debugMode
382 LOGICAL readPickupWithTracer
383 LOGICAL writePickupWithTracer
384 LOGICAL pickup_read_mdsio, pickup_write_mdsio
385 LOGICAL pickup_write_immed
386 LOGICAL timeave_mdsio, snapshot_mdsio, monitor_stdio
387 LOGICAL outputTypesInclusive
388 LOGICAL inAdMode, inAdTrue, inAdFalse, inAdExact
389 LOGICAL calendarDumps
390
391 C-- COMMON /PARM_R/ "Real" valued parameters used by the model.
392 C cg2dTargetResidual
393 C :: Target residual for cg2d solver; no unit (RHS normalisation)
394 C cg2dTargetResWunit
395 C :: Target residual for cg2d solver; W unit (No RHS normalisation)
396 C cg3dTargetResidual
397 C :: Target residual for cg3d solver.
398 C cg2dpcOffDFac :: Averaging weight for preconditioner off-diagonal.
399 C Note. 20th May 1998
400 C I made a weird discovery! In the model paper we argue
401 C for the form of the preconditioner used here ( see
402 C A Finite-volume, Incompressible Navier-Stokes Model
403 C ...., Marshall et. al ). The algebra gives a simple
404 C 0.5 factor for the averaging of ac and aCw to get a
405 C symmettric pre-conditioner. By using a factor of 0.51
406 C i.e. scaling the off-diagonal terms in the
407 C preconditioner down slightly I managed to get the
408 C number of iterations for convergence in a test case to
409 C drop form 192 -> 134! Need to investigate this further!
410 C For now I have introduced a parameter cg2dpcOffDFac which
411 C defaults to 0.51 but can be set at runtime.
412 C delR :: Vertical grid spacing ( units of r ).
413 C delRc :: Vertical grid spacing between cell centers (r unit).
414 C delX :: Separation between cell faces (m) or (deg), depending
415 C delY on input flags.
416 C gravity :: Accel. due to gravity ( m/s^2 )
417 C recip_gravity and its inverse
418 C gBaro :: Accel. due to gravity used in barotropic equation ( m/s^2 )
419 C rhoNil :: Reference density for the linear equation of state
420 C rhoConst :: Vertically constant reference density
421 C rhoConstFresh :: Constant reference density for fresh water (rain)
422 C tRef :: reference vertical profile for potential temperature
423 C sRef :: reference vertical profile for salinity/specific humidity
424 C startTime :: Start time for model ( s )
425 C phiMin :: Latitude of southern most cell face.
426 C thetaMin :: Longitude of western most cell face (this
427 C is an "inert" parameter but it is included
428 C to make geographical references simple.)
429 C rSphere :: Radius of sphere for a spherical polar grid ( m ).
430 C recip_RSphere :: Reciprocal radius of sphere ( m ).
431 C f0 :: Reference coriolis parameter ( 1/s )
432 C ( Southern edge f for beta plane )
433 C beta :: df/dy ( s^-1.m^-1 )
434 C omega :: Angular velocity ( rad/s )
435 C rotationPeriod :: Rotation period (s) (= 2.pi/omega)
436 C viscAh :: Eddy viscosity coeff. for mixing of
437 C momentum laterally ( m^2/s )
438 C viscAhW :: Eddy viscosity coeff. for mixing of vertical
439 C momentum laterally, no effect for hydrostatic
440 C model, defaults to viscAh if unset ( m^2/s )
441 C viscAr :: Eddy viscosity coeff. for mixing of
442 C momentum vertically ( units of r^2/s )
443 C viscA4 :: Biharmonic viscosity coeff. for mixing of
444 C momentum laterally ( m^4/s )
445 C viscA4W :: Biharmonic viscosity coeff. for mixing of vertical
446 C momentum laterally, no effect for hydrostatic
447 C model, defaults to viscA4 if unset ( m^2/s )
448 C viscAhD :: Eddy viscosity coeff. for mixing of momentum laterally
449 C (act on Divergence part) ( m^2/s )
450 C viscAhZ :: Eddy viscosity coeff. for mixing of momentum laterally
451 C (act on Vorticity part) ( m^2/s )
452 C viscA4D :: Biharmonic viscosity coeff. for mixing of momentum laterally
453 C (act on Divergence part) ( m^4/s )
454 C viscA4Z :: Biharmonic viscosity coeff. for mixing of momentum laterally
455 C (act on Vorticity part) ( m^4/s )
456 C viscC2leith :: Leith non-dimensional viscosity factor
457 C viscAhMax :: Maximum eddy viscosity coeff. for mixing of
458 C momentum laterally ( m^2/s )
459 C viscA4Max :: Maximum biharmonic viscosity coeff. for mixing of
460 C momentum laterally ( m^4/s )
461 C viscAhGrid:: non-dimensional grid-size dependent viscosity
462 C viscA4Grid:: non-dimensional grid-size dependent bi-harmonic viscosity
463 C viscA4GridMax:: maximum and minimum biharmonic viscosity coefficients ...
464 C viscA4GridMin:: in terms of non-dimensional grid-size dependent viscosity
465 C viscC4leith :: Leith non-dimensional viscosity factor
466 C diffKhT :: Laplacian diffusion coeff. for mixing of
467 C heat laterally ( m^2/s )
468 C diffKrNrT :: vertical profile of Laplacian diffusion coeff.
469 C for mixing of heat vertically ( units of r^2/s )
470 C diffK4T :: Biharmonic diffusion coeff. for mixing of
471 C heat laterally ( m^4/s )
472 C diffKhS :: Laplacian diffusion coeff. for mixing of
473 C salt laterally ( m^2/s )
474 C diffKrNrS :: vertical profile of Laplacian diffusion coeff.
475 C for mixing of salt vertically ( units of r^2/s ),
476 C diffK4S :: Biharmonic diffusion coeff. for mixing of
477 C salt laterally ( m^4/s )
478 C diffKrBL79surf :: T/S surface diffusivity (m^2/s) Bryan and Lewis, 1979
479 C diffKrBL79deep :: T/S deep diffusivity (m^2/s) Bryan and Lewis, 1979
480 C diffKrBL79scl :: depth scale for arctan fn (m) Bryan and Lewis, 1979
481 C diffKrBL79Ho :: depth offset for arctan fn (m) Bryan and Lewis, 1979
482 C deltaT :: Default timestep ( s )
483 C deltaTClock :: Timestep used as model "clock". This determines the
484 C IO frequencies and is used in tagging output. It can
485 C be totally different to the dynamical time. Typically
486 C it will be the deep-water timestep for accelerated runs.
487 C Frequency of checkpointing and dumping of the model state
488 C are referenced to this clock. ( s )
489 C deltaTMom :: Timestep for momemtum equations ( s )
490 C dTtracerLev :: Timestep for tracer equations ( s ), function of level k
491 C deltaTfreesurf :: Timestep for free-surface equation ( s )
492 C freesurfFac :: Parameter to turn implicit free surface term on or off
493 C freesurfac = 1. uses implicit free surface
494 C freesurfac = 0. uses rigid lid
495 C implicSurfPress :: parameter of the Crank-Nickelson time stepping :
496 C Implicit part of Surface Pressure Gradient ( 0-1 )
497 C implicDiv2Dflow :: parameter of the Crank-Nickelson time stepping :
498 C Implicit part of barotropic flow Divergence ( 0-1 )
499 C hFacMin :: Minimum fraction size of a cell (affects hFacC etc...)
500 C hFacMinDz :: Minimum dimesional size of a cell (affects hFacC etc..., m)
501 C hFacMinDp :: Minimum dimesional size of a cell (affects hFacC etc..., Pa)
502 C hFacMinDr :: Minimum dimesional size of a cell (affects hFacC etc..., units of r)
503 C hFacInf :: Threshold (inf and sup) for fraction size of surface cell
504 C hFacSup that control vanishing and creating levels
505 C tauCD :: CD scheme coupling timescale ( 1/s )
506 C rCD :: CD scheme normalised coupling parameter ( 0-1 )
507 C startTime :: Starting time for this integration ( s ).
508 C endTime :: Ending time for this integration ( s ).
509 C chkPtFreq :: Frequency of rolling check pointing ( s ).
510 C pChkPtFreq :: Frequency of permanent check pointing ( s ).
511 C dumpFreq :: Frequency with which model state is written to
512 C post-processing files ( s ).
513 C diagFreq :: Frequency with which model writes diagnostic output
514 C of intermediate quantities.
515 C afFacMom :: Advection of momentum term tracer parameter
516 C vfFacMom :: Momentum viscosity tracer parameter
517 C pfFacMom :: Momentum pressure forcing tracer parameter
518 C cfFacMom :: Coriolis term tracer parameter
519 C foFacMom :: Momentum forcing tracer parameter
520 C mtFacMom :: Metric terms tracer parameter
521 C cosPower :: Power of cosine of latitude to multiply viscosity
522 C cAdjFreq :: Frequency of convective adjustment
523 C
524 C taveFreq :: Frequency with which time-averaged model state
525 C is written to post-processing files ( s ).
526 C tave_lastIter :: (for state variable only) fraction of the last time
527 C step (of each taveFreq period) put in the time average.
528 C (fraction for 1rst iter = 1 - tave_lastIter)
529 C tauThetaClimRelax :: Relaxation to climatology time scale ( s ).
530 C lambdaThetaClimRelax :: Inverse time scale for relaxation ( 1/s ).
531 C tauSaltClimRelax :: Relaxation to climatology time scale ( s ).
532 C lambdaSaltClimRelax :: Inverse time scale for relaxation ( 1/s ).
533 C latBandClimRelax :: latitude band where Relaxation to Clim. is applied,
534 C i.e. where |yC| <= latBandClimRelax
535 C externForcingPeriod :: Is the period of which forcing varies (eg. 1 month)
536 C externForcingCycle :: Is the repeat time of the forcing (eg. 1 year)
537 C (note: externForcingCycle must be an integer
538 C number times externForcingPeriod)
539 C convertFW2Salt :: salinity, used to convert Fresh-Water Flux to Salt Flux
540 C (use model surface (local) value if set to -1)
541 C temp_EvPrRn :: temperature of Rain & Evap.
542 C salt_EvPrRn :: salinity of Rain & Evap.
543 C (notes: a) tracer content of Rain/Evap only used if both
544 C NonLin_FrSurf & useRealFreshWater are set.
545 C b) use model surface (local) value if set to UNSET_RL)
546 C horiVertRatio :: Ratio on units in vertical to units in horizontal.
547 C recip_horiVertRatio ( 1 if horiz in m and vertical in m ).
548 C ( g*rho if horiz in m and vertical in Pa ).
549 C Ro_SeaLevel :: standard position of Sea-Level in "R" coordinate, used as
550 C starting value (k=1) for vertical coordinate (rf(1)=Ro_SeaLevel)
551 C bottomDragLinear :: Drag coefficient built in to core dynamics
552 C --"-"-- Quadratic ( linear: 1/s, quadratic: 1/m )
553 COMMON /PARM_R/ cg2dTargetResidual, cg2dTargetResWunit,
554 & cg2dpcOffDFac, cg3dTargetResidual,
555 & delR, delRc, delX, delY,
556 & deltaT, deltaTmom, dTtracerLev, deltaTfreesurf, deltaTClock,
557 & abeps, startTime,
558 & phiMin, thetaMin, rSphere, recip_RSphere, f0, beta,
559 & fCori, fCoriG, fCoriCos,
560 & viscAh, viscAhW, viscAhMax, viscAhGrid, viscC2leith,
561 & viscAhD, viscAhZ, viscA4D, viscA4Z,
562 & viscA4, viscA4W,
563 & viscA4Max, viscA4Grid, viscA4GridMax, viscA4GridMin,
564 & viscC4leith, viscAr, viscAstrain, viscAtension,
565 & diffKhT, diffK4T, diffKrNrT,
566 & diffKhS, diffK4S, diffKrNrS,
567 & diffKrBL79surf, diffKrBL79deep, diffKrBL79scl, diffKrBL79Ho,
568 & delT, tauCD, rCD, freeSurfFac, implicSurfPress, implicDiv2Dflow,
569 & hFacMin, hFacMinDz, hFacInf, hFacSup,
570 & gravity, recip_Gravity, gBaro, rhonil, recip_rhonil,
571 & recip_rhoConst, rhoConst,
572 & rhoConstFresh, convertEmP2rUnit, tRef, sRef,
573 & endTime, chkPtFreq, pchkPtFreq, dumpFreq, adjDumpFreq,
574 & diagFreq, taveFreq, tave_lastIter, monitorFreq, adjMonitorFreq,
575 & afFacMom, vfFacMom, pfFacMom, cfFacMom, foFacMom, mtFacMom,
576 & cosPower, cAdjFreq, omega, rotationPeriod,
577 & tauThetaClimRelax, lambdaThetaClimRelax,
578 & tauSaltClimRelax, lambdaSaltClimRelax,
579 & tauTr1ClimRelax, lambdaTr1ClimRelax, latBandClimRelax,
580 & externForcingCycle, externForcingPeriod,
581 & convertFW2Salt, temp_EvPrRn, salt_EvPrRn,
582 & hFacMinDr, hFacMinDp,
583 & horiVertRatio, recip_horiVertRatio,
584 & ivdc_kappa, Ro_SeaLevel,
585 & bottomDragLinear,bottomDragQuadratic,
586 & tCylIn, tCylOut
587
588 _RL cg2dTargetResidual
589 _RL cg2dTargetResWunit
590 _RL cg3dTargetResidual
591 _RL cg2dpcOffDFac
592 _RL delR(Nr)
593 _RL delRc(Nr+1)
594 _RL delX(Nx)
595 _RL delY(Ny)
596 _RL deltaT
597 _RL deltaTClock
598 _RL deltaTmom
599 _RL dTtracerLev(Nr)
600 _RL deltaTfreesurf
601 _RL abeps
602 _RL phiMin
603 _RL thetaMin
604 _RL rSphere
605 _RL recip_RSphere
606 _RL f0
607 _RL freeSurfFac
608 _RL implicSurfPress
609 _RL implicDiv2Dflow
610 _RL hFacMin
611 _RL hFacMinDz
612 _RL hFacMinDp
613 _RL hFacMinDr
614 _RL hFacInf
615 _RL hFacSup
616 _RL beta
617 _RL viscAh
618 _RL viscAhW
619 _RL viscAhD
620 _RL viscAhZ
621 _RL viscAhMax
622 _RL viscAhGrid
623 _RL viscC2leith
624 _RL viscAstrain
625 _RL viscAtension
626 _RL viscAr
627 _RL viscA4
628 _RL viscA4W
629 _RL viscA4D
630 _RL viscA4Z
631 _RL viscA4Max
632 _RL viscA4Grid, viscA4GridMax, viscA4GridMin
633 _RL viscC4leith
634 _RL diffKhT
635 _RL diffKrNrT(Nr)
636 _RL diffK4T
637 _RL diffKhS
638 _RL diffKrNrS(Nr)
639 _RL diffK4S
640 _RL diffKrBL79surf
641 _RL diffKrBL79deep
642 _RL diffKrBL79scl
643 _RL diffKrBL79Ho
644 _RL delt
645 _RL tauCD
646 _RL rCD
647 _RL gravity
648 _RL recip_gravity
649 _RL gBaro
650 _RL rhonil
651 _RL recip_rhonil
652 _RL rhoConst
653 _RL recip_rhoConst
654 _RL rhoConstFresh
655 _RL convertEmP2rUnit
656 _RL tRef(Nr)
657 _RL sRef(Nr)
658 _RS fCori(1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)
659 _RS fCoriG(1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)
660 _RS fCoriCos(1-OLx:sNx+OLx,1-OLy:sNy+OLy,nSx,nSy)
661 _RL startTime
662 _RL endTime
663 _RL chkPtFreq
664 _RL pChkPtFreq
665 _RL dumpFreq
666 _RL adjDumpFreq
667 _RL diagFreq
668 _RL taveFreq
669 _RL tave_lastIter
670 _RL monitorFreq
671 _RL adjMonitorFreq
672 _RL afFacMom
673 _RL vfFacMom
674 _RL pfFacMom
675 _RL cfFacMom
676 _RL foFacMom
677 _RL mTFacMom
678 _RL cosPower
679 _RL cAdjFreq
680 _RL omega
681 _RL rotationPeriod
682 _RL tauThetaClimRelax
683 _RL lambdaThetaClimRelax
684 _RL tauSaltClimRelax
685 _RL lambdaSaltClimRelax
686 _RL tauTr1ClimRelax
687 _RL lambdaTr1ClimRelax
688 _RL latBandClimRelax
689 _RL externForcingCycle
690 _RL externForcingPeriod
691 _RL convertFW2Salt
692 _RL temp_EvPrRn
693 _RL salt_EvPrRn
694 _RL horiVertRatio
695 _RL recip_horiVertRatio
696 _RL ivdc_kappa
697 _RL Ro_SeaLevel
698 _RL bottomDragLinear
699 _RL bottomDragQuadratic
700 _RL tCylIn
701 _RL tCylOut
702
703 C-- COMMON /PARM_A/ Thermodynamics constants ?
704 COMMON /PARM_A/ HeatCapacity_Cp,recip_Cp
705 _RL HeatCapacity_Cp
706 _RL recip_Cp
707
708 C-- COMMON /PARM_ATM/ Atmospheric physical parameters (Ideal Gas EOS, ...)
709 C celsius2K :: convert centigrade (Celsius) degree to Kelvin
710 C atm_Po :: standard reference pressure
711 C atm_Cp :: specific heat (Cp) of the (dry) air at constant pressure
712 C atm_Rd :: gas constant for dry air
713 C atm_kappa :: kappa = R/Cp (R: constant of Ideal Gas EOS)
714 C atm_Rq :: water vapour specific volume anomaly relative to dry air
715 C (e.g. typical value = (29/18 -1) 10^-3 with q [g/kg])
716 C integr_GeoPot :: option to select the way we integrate the geopotential
717 C (still a subject of discussions ...)
718 C selectFindRoSurf :: select the way surf. ref. pressure (=Ro_surf) is
719 C derived from the orography. Implemented: 0,1 (see INI_P_GROUND)
720 COMMON /PARM_ATM/
721 & celsius2K,
722 & atm_Cp, atm_Rd, atm_kappa, atm_Rq, atm_Po,
723 & integr_GeoPot, selectFindRoSurf
724 _RL celsius2K
725 _RL atm_Po, atm_Cp, atm_Rd, atm_kappa, atm_Rq
726 INTEGER integr_GeoPot, selectFindRoSurf
727
728 C Logical flags for selecting packages
729 LOGICAL useOPPS
730 LOGICAL usePP81
731 LOGICAL useMY82
732 LOGICAL useGGL90
733 LOGICAL useKPP
734 LOGICAL useGMRedi
735 LOGICAL useOBCS
736 LOGICAL useAIM
737 LOGICAL useLand
738 LOGICAL useGrdchk
739 LOGICAL useECCO
740 LOGICAL useSHAP_FILT
741 LOGICAL useZONAL_FILT
742 LOGICAL useFLT
743 LOGICAL usePTRACERS
744 LOGICAL useGCHEM
745 LOGICAL useSBO
746 LOGICAL useSEAICE
747 LOGICAL useBulkForce
748 LOGICAL useThSIce
749 LOGICAL usefizhi
750 LOGICAL usegridalt
751 LOGICAL usediagnostics
752 LOGICAL useEBM
753 LOGICAL useMNC
754 COMMON /PARM_PACKAGES/
755 & useKPP, useGMRedi, useOBCS, useAIM, useLand, useECCO,
756 & useSHAP_FILT, useZONAL_FILT, useGrdchk, useFLT,
757 & usePTRACERS, useGCHEM,
758 & useSBO, useSEAICE, useThSIce, useBulkForce,
759 & usefizhi, usegridalt, usediagnostics, useEBM, useMNC,
760 & usePP81, useMY82, useOPPS, useGGL90
761
762 CEH3 ;;; Local Variables: ***
763 CEH3 ;;; mode:fortran ***
764 CEH3 ;;; End: ***

  ViewVC Help
Powered by ViewVC 1.1.22