/[MITgcm]/MITgcm_contrib/dgoldberg/code_cg3d_petsc/PARAMS.h
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Revision 1.2 - (show annotations) (download)
Sat Jul 2 17:48:26 2016 UTC (9 years ago) by dgoldberg
Branch: MAIN
CVS Tags: HEAD
Changes since 1.1: +0 -0 lines
File MIME type: text/plain
petsc bug fix

1 C $Header: /u/gcmpack/MITgcm/model/inc/PARAMS.h,v 1.283 2016/04/04 21:29:42 jmc 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-- Contants
18 C Useful physical values
19 Real*8 PI
20 PARAMETER ( PI = 3.14159265358979323844D0 )
21 Real*8 deg2rad
22 PARAMETER ( deg2rad = 2.D0*PI/360.D0 )
23
24 C-- COMMON /PARM_C/ Character valued parameters used by the model.
25 C buoyancyRelation :: Flag used to indicate which relation to use to
26 C get buoyancy.
27 C eosType :: choose the equation of state:
28 C LINEAR, POLY3, UNESCO, JMD95Z, JMD95P, MDJWF, IDEALGAS
29 C pickupSuff :: force to start from pickup files (even if nIter0=0)
30 C and read pickup files with this suffix (max 10 Char.)
31 C mdsioLocalDir :: read-write tiled file from/to this directory name
32 C (+ 4 digits Processor-Rank) instead of current dir.
33 C adTapeDir :: read-write checkpointing tape files from/to this
34 C directory name instead of current dir. Conflicts
35 C mdsioLocalDir, so only one of the two can be set.
36 C In contrast to mdsioLocalDir, if specified adTapeDir
37 C must exist before the model starts.
38 C tRefFile :: File containing reference Potential Temperat. tRef (1.D)
39 C sRefFile :: File containing reference salinity/spec.humid. sRef (1.D)
40 C rhoRefFile :: File containing reference density profile rhoRef (1.D)
41 C gravityFile :: File containing gravity vertical profile (1.D)
42 C delRFile :: File containing vertical grid spacing delR (1.D array)
43 C delRcFile :: File containing vertical grid spacing delRc (1.D array)
44 C hybSigmFile :: File containing hybrid-sigma vertical coord. coeff. (2x 1.D)
45 C delXFile :: File containing X-spacing grid definition (1.D array)
46 C delYFile :: File containing Y-spacing grid definition (1.D array)
47 C horizGridFile :: File containing horizontal-grid definition
48 C (only when using curvilinear_grid)
49 C bathyFile :: File containing bathymetry. If not defined bathymetry
50 C is taken from inline function.
51 C topoFile :: File containing the topography of the surface (unit=m)
52 C (mainly used for the atmosphere = ground height).
53 C addWwallFile :: File containing 2-D additional Western cell-edge wall
54 C addSwallFile :: File containing 2-D additional Southern cell-edge wall
55 C (e.g., to add "thin-wall" where it is =1)
56 C hydrogThetaFile :: File containing initial hydrographic data (3-D)
57 C for potential temperature.
58 C hydrogSaltFile :: File containing initial hydrographic data (3-D)
59 C for salinity.
60 C diffKrFile :: File containing 3D specification of vertical diffusivity
61 C viscAhDfile :: File containing 3D specification of horizontal viscosity
62 C viscAhZfile :: File containing 3D specification of horizontal viscosity
63 C viscA4Dfile :: File containing 3D specification of horizontal viscosity
64 C viscA4Zfile :: File containing 3D specification of horizontal viscosity
65 C zonalWindFile :: File containing zonal wind data
66 C meridWindFile :: File containing meridional wind data
67 C thetaClimFile :: File containing surface theta climataology used
68 C in relaxation term -lambda(theta-theta*)
69 C saltClimFile :: File containing surface salt climataology used
70 C in relaxation term -lambda(salt-salt*)
71 C surfQfile :: File containing surface heat flux, excluding SW
72 C (old version, kept for backward compatibility)
73 C surfQnetFile :: File containing surface net heat flux
74 C surfQswFile :: File containing surface shortwave radiation
75 C EmPmRfile :: File containing surface fresh water flux
76 C NOTE: for backward compatibility EmPmRfile is specified in
77 C m/s when using external_fields_load.F. It is converted
78 C to kg/m2/s by multiplying by rhoConstFresh.
79 C saltFluxFile :: File containing surface salt flux
80 C pLoadFile :: File containing pressure loading
81 C addMassFile :: File containing source/sink of fluid in the interior
82 C eddyPsiXFile :: File containing zonal Eddy streamfunction data
83 C eddyPsiYFile :: File containing meridional Eddy streamfunction data
84 C the_run_name :: string identifying the name of the model "run"
85 COMMON /PARM_C/
86 & buoyancyRelation, eosType,
87 & pickupSuff, mdsioLocalDir, adTapeDir,
88 & tRefFile, sRefFile, rhoRefFile, gravityFile,
89 & delRFile, delRcFile, hybSigmFile,
90 & delXFile, delYFile, horizGridFile,
91 & bathyFile, topoFile, addWwallFile, addSwallFile,
92 & viscAhDfile, viscAhZfile,
93 & viscA4Dfile, viscA4Zfile,
94 & hydrogThetaFile, hydrogSaltFile, diffKrFile,
95 & zonalWindFile, meridWindFile, thetaClimFile,
96 & saltClimFile,
97 & EmPmRfile, saltFluxFile,
98 & surfQfile, surfQnetFile, surfQswFile,
99 & lambdaThetaFile, lambdaSaltFile,
100 & uVelInitFile, vVelInitFile, pSurfInitFile,
101 & pLoadFile, addMassFile,
102 & eddyPsiXFile, eddyPsiYFile, geothermalFile,
103 & the_run_name
104 CHARACTER*(MAX_LEN_FNAM) buoyancyRelation
105 CHARACTER*(6) eosType
106 CHARACTER*(10) pickupSuff
107 CHARACTER*(MAX_LEN_FNAM) mdsioLocalDir
108 CHARACTER*(MAX_LEN_FNAM) adTapeDir
109 CHARACTER*(MAX_LEN_FNAM) tRefFile
110 CHARACTER*(MAX_LEN_FNAM) sRefFile
111 CHARACTER*(MAX_LEN_FNAM) rhoRefFile
112 CHARACTER*(MAX_LEN_FNAM) gravityFile
113 CHARACTER*(MAX_LEN_FNAM) delRFile
114 CHARACTER*(MAX_LEN_FNAM) delRcFile
115 CHARACTER*(MAX_LEN_FNAM) hybSigmFile
116 CHARACTER*(MAX_LEN_FNAM) delXFile
117 CHARACTER*(MAX_LEN_FNAM) delYFile
118 CHARACTER*(MAX_LEN_FNAM) horizGridFile
119 CHARACTER*(MAX_LEN_FNAM) bathyFile, topoFile
120 CHARACTER*(MAX_LEN_FNAM) addWwallFile, addSwallFile
121 CHARACTER*(MAX_LEN_FNAM) hydrogThetaFile, hydrogSaltFile
122 CHARACTER*(MAX_LEN_FNAM) diffKrFile
123 CHARACTER*(MAX_LEN_FNAM) viscAhDfile
124 CHARACTER*(MAX_LEN_FNAM) viscAhZfile
125 CHARACTER*(MAX_LEN_FNAM) viscA4Dfile
126 CHARACTER*(MAX_LEN_FNAM) viscA4Zfile
127 CHARACTER*(MAX_LEN_FNAM) zonalWindFile
128 CHARACTER*(MAX_LEN_FNAM) meridWindFile
129 CHARACTER*(MAX_LEN_FNAM) thetaClimFile
130 CHARACTER*(MAX_LEN_FNAM) saltClimFile
131 CHARACTER*(MAX_LEN_FNAM) surfQfile
132 CHARACTER*(MAX_LEN_FNAM) surfQnetFile
133 CHARACTER*(MAX_LEN_FNAM) surfQswFile
134 CHARACTER*(MAX_LEN_FNAM) EmPmRfile
135 CHARACTER*(MAX_LEN_FNAM) saltFluxFile
136 CHARACTER*(MAX_LEN_FNAM) uVelInitFile
137 CHARACTER*(MAX_LEN_FNAM) vVelInitFile
138 CHARACTER*(MAX_LEN_FNAM) pSurfInitFile
139 CHARACTER*(MAX_LEN_FNAM) pLoadFile
140 CHARACTER*(MAX_LEN_FNAM) addMassFile
141 CHARACTER*(MAX_LEN_FNAM) eddyPsiXFile
142 CHARACTER*(MAX_LEN_FNAM) eddyPsiYFile
143 CHARACTER*(MAX_LEN_FNAM) geothermalFile
144 CHARACTER*(MAX_LEN_FNAM) lambdaThetaFile
145 CHARACTER*(MAX_LEN_FNAM) lambdaSaltFile
146 CHARACTER*(MAX_LEN_PREC/2) the_run_name
147
148 C-- COMMON /PARM_I/ Integer valued parameters used by the model.
149 C cg2dMaxIters :: Maximum number of iterations in the
150 C two-dimensional con. grad solver.
151 C cg2dChkResFreq :: Frequency with which to check residual
152 C in con. grad solver.
153 C cg2dPreCondFreq :: Frequency for updating cg2d preconditioner
154 C (non-linear free-surf.)
155 C cg2dUseMinResSol :: =0 : use last-iteration/converged solution
156 C =1 : use solver minimum-residual solution
157 C cg3dMaxIters :: Maximum number of iterations in the
158 C three-dimensional con. grad solver.
159 C cg3dChkResFreq :: Frequency with which to check residual
160 C in con. grad solver.
161 C printResidualFreq :: Frequency for printing residual in CG iterations
162 C nIter0 :: Start time-step number of for this run
163 C nTimeSteps :: Number of timesteps to execute
164 C nTimeSteps_l2 :: Number of inner timesteps to execute per timestep
165 C writeStatePrec :: Precision used for writing model state.
166 C writeBinaryPrec :: Precision used for writing binary files
167 C readBinaryPrec :: Precision used for reading binary files
168 C selectCoriMap :: select setting of Coriolis parameter map:
169 C =0 f-Plane (Constant Coriolis, = f0)
170 C =1 Beta-Plane Coriolis (= f0 + beta.y)
171 C =2 Spherical Coriolis (= 2.omega.sin(phi))
172 C =3 Read Coriolis 2-d fields from files.
173 C selectSigmaCoord :: option related to sigma vertical coordinate
174 C nonlinFreeSurf :: option related to non-linear free surface
175 C =0 Linear free surface ; >0 Non-linear
176 C select_rStar :: option related to r* vertical coordinate
177 C =0 (default) use r coord. ; > 0 use r*
178 C selectNHfreeSurf :: option for Non-Hydrostatic (free-)Surface formulation:
179 C =0 (default) hydrostatic surf. ; > 0 add NH effects.
180 C selectP_inEOS_Zc :: select which pressure to use in EOS (for z-coords)
181 C =0: simply: -g*rhoConst*z
182 C =1: use pRef = integral{-g*rho(Tref,Sref,pRef)*dz}
183 C =2: use hydrostatic dynamical pressure
184 C =3: use full (Hyd+NH) dynamical pressure
185 C selectAddFluid :: option to add mass source/sink of fluid in the interior
186 C (3-D generalisation of oceanic real-fresh water flux)
187 C =0 off ; =1 add fluid ; =-1 virtual flux (no mass added)
188 C momForcingOutAB :: =1: take momentum forcing contribution
189 C out of (=0: in) Adams-Bashforth time stepping.
190 C tracForcingOutAB :: =1: take tracer (Temp,Salt,pTracers) forcing contribution
191 C out of (=0: in) Adams-Bashforth time stepping.
192 C tempAdvScheme :: Temp. Horiz.Advection scheme selector
193 C tempVertAdvScheme :: Temp. Vert. Advection scheme selector
194 C saltAdvScheme :: Salt. Horiz.advection scheme selector
195 C saltVertAdvScheme :: Salt. Vert. Advection scheme selector
196 C selectKEscheme :: Kinetic Energy scheme selector (Vector Inv.)
197 C selectVortScheme :: Scheme selector for Vorticity term (Vector Inv.)
198 C selectBotDragQuadr :: quadratic bottom drag discretisation option:
199 C =0: average KE from grid center to U & V location
200 C =1: use local velocity norm @ U & V location
201 C =2: same with wet-point averaging of other component
202 C monitorSelect :: select group of variables to monitor
203 C =1 : dynvars ; =2 : + vort ; =3 : + surface
204 C- debugLevel :: controls printing of algorithm intermediate results
205 C and statistics ; higher -> more writing
206
207 COMMON /PARM_I/
208 & cg2dMaxIters, cg2dChkResFreq,
209 & cg2dPreCondFreq, cg2dUseMinResSol,
210 & cg3dMaxIters, cg3dChkResFreq,
211 & printResidualFreq,
212 & nIter0, nTimeSteps, nTimeSteps_l2, nEndIter,
213 & writeStatePrec,
214 & writeBinaryPrec, readBinaryPrec,
215 & selectCoriMap,
216 & selectSigmaCoord,
217 & nonlinFreeSurf, select_rStar,
218 & selectNHfreeSurf, selectP_inEOS_Zc,
219 & selectAddFluid,
220 & momForcingOutAB, tracForcingOutAB,
221 & tempAdvScheme, tempVertAdvScheme,
222 & saltAdvScheme, saltVertAdvScheme,
223 & selectKEscheme, selectVortScheme,
224 & selectBotDragQuadr,
225 & monitorSelect, debugLevel
226 INTEGER cg2dMaxIters
227 INTEGER cg2dChkResFreq
228 INTEGER cg2dPreCondFreq
229 INTEGER cg2dUseMinResSol
230 INTEGER cg3dMaxIters
231 INTEGER cg3dChkResFreq
232 INTEGER printResidualFreq
233 INTEGER nIter0
234 INTEGER nTimeSteps
235 INTEGER nTimeSteps_l2
236 INTEGER nEndIter
237 INTEGER writeStatePrec
238 INTEGER writeBinaryPrec
239 INTEGER readBinaryPrec
240 INTEGER selectCoriMap
241 INTEGER selectSigmaCoord
242 INTEGER nonlinFreeSurf
243 INTEGER select_rStar
244 INTEGER selectNHfreeSurf
245 INTEGER selectP_inEOS_Zc
246 INTEGER selectAddFluid
247 INTEGER momForcingOutAB, tracForcingOutAB
248 INTEGER tempAdvScheme, tempVertAdvScheme
249 INTEGER saltAdvScheme, saltVertAdvScheme
250 INTEGER selectKEscheme
251 INTEGER selectVortScheme
252 INTEGER selectBotDragQuadr
253 INTEGER monitorSelect
254 INTEGER debugLevel
255
256 C-- COMMON /PARM_L/ Logical valued parameters used by the model.
257 C- Coordinate + Grid params:
258 C fluidIsAir :: Set to indicate that the fluid major constituent
259 C is air
260 C fluidIsWater :: Set to indicate that the fluid major constituent
261 C is water
262 C usingPCoords :: Set to indicate that we are working in a pressure
263 C type coordinate (p or p*).
264 C usingZCoords :: Set to indicate that we are working in a height
265 C type coordinate (z or z*)
266 C usingCartesianGrid :: If TRUE grid generation will be in a cartesian
267 C coordinate frame.
268 C usingSphericalPolarGrid :: If TRUE grid generation will be in a
269 C spherical polar frame.
270 C rotateGrid :: rotate grid coordinates to geographical coordinates
271 C according to Euler angles phiEuler, thetaEuler, psiEuler
272 C usingCylindricalGrid :: If TRUE grid generation will be Cylindrical
273 C usingCurvilinearGrid :: If TRUE, use a curvilinear grid (to be provided)
274 C hasWetCSCorners :: domain contains CS-type corners where dynamics is solved
275 C deepAtmosphere :: deep model (drop the shallow-atmosphere approximation)
276 C setInterFDr :: set Interface depth (put cell-Center at the middle)
277 C setCenterDr :: set cell-Center depth (put Interface at the middle)
278 C- Momentum params:
279 C no_slip_sides :: Impose "no-slip" at lateral boundaries.
280 C no_slip_bottom :: Impose "no-slip" at bottom boundary.
281 C bottomVisc_pCell :: account for partial-cell in bottom visc. (no-slip BC)
282 C useSmag3D :: Use isotropic 3-D Smagorinsky
283 C useFullLeith :: Set to true to use full Leith viscosity(may be unstable
284 C on irregular grids)
285 C useStrainTensionVisc:: Set to true to use Strain-Tension viscous terms
286 C useAreaViscLength :: Set to true to use old scaling for viscous lengths,
287 C e.g., L2=Raz. May be preferable for cube sphere.
288 C momViscosity :: Flag which turns momentum friction terms on and off.
289 C momAdvection :: Flag which turns advection of momentum on and off.
290 C momForcing :: Flag which turns external forcing of momentum on
291 C and off.
292 C momPressureForcing :: Flag which turns pressure term in momentum equation
293 C on and off.
294 C metricTerms :: Flag which turns metric terms on or off.
295 C useNHMTerms :: If TRUE use non-hydrostatic metric terms.
296 C useCoriolis :: Flag which turns the coriolis terms on and off.
297 C use3dCoriolis :: Turns the 3-D coriolis terms (in Omega.cos Phi) on - off
298 C useCDscheme :: use CD-scheme to calculate Coriolis terms.
299 C vectorInvariantMomentum :: use Vector-Invariant form (mom_vecinv package)
300 C (default = F = use mom_fluxform package)
301 C useJamartWetPoints :: Use wet-point method for Coriolis (Jamart & Ozer 1986)
302 C useJamartMomAdv :: Use wet-point method for V.I. non-linear term
303 C upwindVorticity :: bias interpolation of vorticity in the Coriolis term
304 C highOrderVorticity :: use 3rd/4th order interp. of vorticity (V.I., advection)
305 C useAbsVorticity :: work with f+zeta in Coriolis terms
306 C upwindShear :: use 1rst order upwind interp. (V.I., vertical advection)
307 C momStepping :: Turns momentum equation time-stepping off
308 C calc_wVelocity :: Turns vertical velocity calculation off
309 C- Temp. & Salt params:
310 C tempStepping :: Turns temperature equation time-stepping on/off
311 C saltStepping :: Turns salinity equation time-stepping on/off
312 C addFrictionHeating :: account for frictional heating
313 C tempAdvection :: Flag which turns advection of temperature on and off.
314 C tempVertDiff4 :: use vertical bi-harmonic diffusion for temperature
315 C tempIsActiveTr :: Pot.Temp. is a dynamically active tracer
316 C tempForcing :: Flag which turns external forcing of temperature on/off
317 C saltAdvection :: Flag which turns advection of salinity on and off.
318 C saltVertDiff4 :: use vertical bi-harmonic diffusion for salinity
319 C saltIsActiveTr :: Salinity is a dynamically active tracer
320 C saltForcing :: Flag which turns external forcing of salinity on/off
321 C maskIniTemp :: apply mask to initial Pot.Temp.
322 C maskIniSalt :: apply mask to initial salinity
323 C checkIniTemp :: check for points with identically zero initial Pot.Temp.
324 C checkIniSalt :: check for points with identically zero initial salinity
325 C- Pressure solver related parameters (PARM02)
326 C useSRCGSolver :: Set to true to use conjugate gradient
327 C solver with single reduction (only one call of
328 C s/r mpi_allreduce), default is false
329 C- Time-stepping & free-surface params:
330 C rigidLid :: Set to true to use rigid lid
331 C implicitFreeSurface :: Set to true to use implicit free surface
332 C uniformLin_PhiSurf :: Set to true to use a uniform Bo_surf in the
333 C linear relation Phi_surf = Bo_surf*eta
334 C uniformFreeSurfLev :: TRUE if free-surface level-index is uniform (=1)
335 C exactConserv :: Set to true to conserve exactly the total Volume
336 C linFSConserveTr :: Set to true to correct source/sink of tracer
337 C at the surface due to Linear Free Surface
338 C useRealFreshWaterFlux :: if True (=Natural BCS), treats P+R-E flux
339 C as a real Fresh Water (=> changes the Sea Level)
340 C if F, converts P+R-E to salt flux (no SL effect)
341 C storePhiHyd4Phys :: store hydrostatic potential for use in Physics/EOS
342 C this requires specific code for restart & exchange
343 C quasiHydrostatic :: Using non-hydrostatic terms in hydrostatic algorithm
344 C nonHydrostatic :: Using non-hydrostatic algorithm
345 C use3Dsolver :: set to true to use 3-D pressure solver
346 C implicitIntGravWave :: treat Internal Gravity Wave implicitly
347 C staggerTimeStep :: enable a Stagger time stepping U,V (& W) then T,S
348 C applyExchUV_early :: Apply EXCH to U,V earlier, just before integr_continuity
349 C doResetHFactors :: Do reset thickness factors @ beginning of each time-step
350 C implicitDiffusion :: Turns implicit vertical diffusion on
351 C implicitViscosity :: Turns implicit vertical viscosity on
352 C implBottomFriction :: Turns on implicit bottom friction (drag & no-slip BC)
353 C tempImplVertAdv :: Turns on implicit vertical advection for Temperature
354 C saltImplVertAdv :: Turns on implicit vertical advection for Salinity
355 C momImplVertAdv :: Turns on implicit vertical advection for Momentum
356 C multiDimAdvection :: Flag that enable multi-dimension advection
357 C useMultiDimAdvec :: True if multi-dim advection is used at least once
358 C momDissip_In_AB :: if False, put Dissipation tendency contribution
359 C out off Adams-Bashforth time stepping.
360 C doAB_onGtGs :: if the Adams-Bashforth time stepping is used, always
361 C apply AB on tracer tendencies (rather than on Tracer)
362 C- Other forcing params -
363 C balanceEmPmR :: substract global mean of EmPmR at every time step
364 C balanceQnet :: substract global mean of Qnet at every time step
365 C balancePrintMean:: print substracted global means to STDOUT
366 C doThetaClimRelax :: Set true if relaxation to temperature
367 C climatology is required.
368 C doSaltClimRelax :: Set true if relaxation to salinity
369 C climatology is required.
370 C balanceThetaClimRelax :: substract global mean effect at every time step
371 C balanceSaltClimRelax :: substract global mean effect at every time step
372 C allowFreezing :: Allows surface water to freeze and form ice
373 C periodicExternalForcing :: Set true if forcing is time-dependant
374 C- I/O parameters -
375 C globalFiles :: Selects between "global" and "tiled" files.
376 C On some platforms with MPI, option globalFiles is either
377 C slow or does not work. Use useSingleCpuIO instead.
378 C useSingleCpuIO :: moved to EEPARAMS.h
379 C pickupStrictlyMatch :: check and stop if pickup-file do not stricly match
380 C startFromPickupAB2 :: with AB-3 code, start from an AB-2 pickup
381 C usePickupBeforeC54 :: start from old-pickup files, generated with code from
382 C before checkpoint-54a, Jul 06, 2004.
383 C pickup_write_mdsio :: use mdsio to write pickups
384 C pickup_read_mdsio :: use mdsio to read pickups
385 C pickup_write_immed :: echo the pickup immediately (for conversion)
386 C writePickupAtEnd :: write pickup at the last timestep
387 C timeave_mdsio :: use mdsio for timeave output
388 C snapshot_mdsio :: use mdsio for "snapshot" (dumpfreq/diagfreq) output
389 C monitor_stdio :: use stdio for monitor output
390 C dumpInitAndLast :: dumps model state to files at Initial (nIter0)
391 C & Last iteration, in addition multiple of dumpFreq iter.
392 C printDomain :: controls printing of domain fields (bathy, hFac ...).
393
394 COMMON /PARM_L/
395 & fluidIsAir, fluidIsWater,
396 & usingPCoords, usingZCoords,
397 & usingCartesianGrid, usingSphericalPolarGrid, rotateGrid,
398 & usingCylindricalGrid, usingCurvilinearGrid, hasWetCSCorners,
399 & deepAtmosphere, setInterFDr, setCenterDr,
400 & no_slip_sides, no_slip_bottom, bottomVisc_pCell, useSmag3D,
401 & useFullLeith, useStrainTensionVisc, useAreaViscLength,
402 & momViscosity, momAdvection, momForcing,
403 & momPressureForcing, metricTerms, useNHMTerms,
404 & useCoriolis, use3dCoriolis,
405 & useCDscheme, vectorInvariantMomentum,
406 & useEnergyConservingCoriolis, useJamartWetPoints, useJamartMomAdv,
407 & upwindVorticity, highOrderVorticity,
408 & useAbsVorticity, upwindShear,
409 & momStepping, calc_wVelocity, tempStepping, saltStepping,
410 & addFrictionHeating,
411 & tempAdvection, tempVertDiff4, tempIsActiveTr, tempForcing,
412 & saltAdvection, saltVertDiff4, saltIsActiveTr, saltForcing,
413 & maskIniTemp, maskIniSalt, checkIniTemp, checkIniSalt,
414 & useSRCGSolver,
415 & rigidLid, implicitFreeSurface,
416 & uniformLin_PhiSurf, uniformFreeSurfLev,
417 & exactConserv, linFSConserveTr, useRealFreshWaterFlux,
418 & storePhiHyd4Phys, quasiHydrostatic, nonHydrostatic,
419 & use3Dsolver, implicitIntGravWave, staggerTimeStep,
420 & applyExchUV_early, doResetHFactors,
421 & implicitDiffusion, implicitViscosity, implBottomFriction,
422 & tempImplVertAdv, saltImplVertAdv, momImplVertAdv,
423 & multiDimAdvection, useMultiDimAdvec,
424 & momDissip_In_AB, doAB_onGtGs,
425 & balanceEmPmR, balanceQnet, balancePrintMean,
426 & balanceThetaClimRelax, balanceSaltClimRelax,
427 & doThetaClimRelax, doSaltClimRelax,
428 & allowFreezing,
429 & periodicExternalForcing,
430 & globalFiles,
431 & pickupStrictlyMatch, usePickupBeforeC54, startFromPickupAB2,
432 & pickup_read_mdsio, pickup_write_mdsio, pickup_write_immed,
433 & writePickupAtEnd,
434 & timeave_mdsio, snapshot_mdsio, monitor_stdio,
435 & outputTypesInclusive, dumpInitAndLast,
436 & printDomain
437
438 LOGICAL fluidIsAir
439 LOGICAL fluidIsWater
440 LOGICAL usingPCoords
441 LOGICAL usingZCoords
442 LOGICAL usingCartesianGrid
443 LOGICAL usingSphericalPolarGrid, rotateGrid
444 LOGICAL usingCylindricalGrid
445 LOGICAL usingCurvilinearGrid, hasWetCSCorners
446 LOGICAL deepAtmosphere
447 LOGICAL setInterFDr
448 LOGICAL setCenterDr
449
450 LOGICAL no_slip_sides
451 LOGICAL no_slip_bottom
452 LOGICAL bottomVisc_pCell
453 LOGICAL useSmag3D
454 LOGICAL useFullLeith
455 LOGICAL useStrainTensionVisc
456 LOGICAL useAreaViscLength
457 LOGICAL momViscosity
458 LOGICAL momAdvection
459 LOGICAL momForcing
460 LOGICAL momPressureForcing
461 LOGICAL metricTerms
462 LOGICAL useNHMTerms
463
464 LOGICAL useCoriolis
465 LOGICAL use3dCoriolis
466 LOGICAL useCDscheme
467 LOGICAL vectorInvariantMomentum
468 LOGICAL useEnergyConservingCoriolis
469 LOGICAL useJamartWetPoints
470 LOGICAL useJamartMomAdv
471 LOGICAL upwindVorticity
472 LOGICAL highOrderVorticity
473 LOGICAL useAbsVorticity
474 LOGICAL upwindShear
475 LOGICAL momStepping
476 LOGICAL calc_wVelocity
477 LOGICAL tempStepping
478 LOGICAL saltStepping
479 LOGICAL addFrictionHeating
480 LOGICAL tempAdvection
481 LOGICAL tempVertDiff4
482 LOGICAL tempIsActiveTr
483 LOGICAL tempForcing
484 LOGICAL saltAdvection
485 LOGICAL saltVertDiff4
486 LOGICAL saltIsActiveTr
487 LOGICAL saltForcing
488 LOGICAL maskIniTemp
489 LOGICAL maskIniSalt
490 LOGICAL checkIniTemp
491 LOGICAL checkIniSalt
492 LOGICAL useSRCGSolver
493 LOGICAL rigidLid
494 LOGICAL implicitFreeSurface
495 LOGICAL uniformLin_PhiSurf
496 LOGICAL uniformFreeSurfLev
497 LOGICAL exactConserv
498 LOGICAL linFSConserveTr
499 LOGICAL useRealFreshWaterFlux
500 LOGICAL storePhiHyd4Phys
501 LOGICAL quasiHydrostatic
502 LOGICAL nonHydrostatic
503 LOGICAL use3Dsolver
504 LOGICAL implicitIntGravWave
505 LOGICAL staggerTimeStep
506 LOGICAL applyExchUV_early
507 LOGICAL doResetHFactors
508 LOGICAL implicitDiffusion
509 LOGICAL implicitViscosity
510 LOGICAL implBottomFriction
511 LOGICAL tempImplVertAdv
512 LOGICAL saltImplVertAdv
513 LOGICAL momImplVertAdv
514 LOGICAL multiDimAdvection
515 LOGICAL useMultiDimAdvec
516 LOGICAL momDissip_In_AB
517 LOGICAL doAB_onGtGs
518 LOGICAL balanceEmPmR
519 LOGICAL balanceQnet
520 LOGICAL balancePrintMean
521 LOGICAL doThetaClimRelax
522 LOGICAL doSaltClimRelax
523 LOGICAL balanceThetaClimRelax
524 LOGICAL balanceSaltClimRelax
525 LOGICAL allowFreezing
526 LOGICAL periodicExternalForcing
527 LOGICAL globalFiles
528 LOGICAL pickupStrictlyMatch
529 LOGICAL usePickupBeforeC54
530 LOGICAL startFromPickupAB2
531 LOGICAL pickup_read_mdsio, pickup_write_mdsio
532 LOGICAL pickup_write_immed, writePickupAtEnd
533 LOGICAL timeave_mdsio, snapshot_mdsio, monitor_stdio
534 LOGICAL outputTypesInclusive
535 LOGICAL dumpInitAndLast
536 LOGICAL printDomain
537
538 C-- COMMON /PARM_R/ "Real" valued parameters used by the model.
539 C cg2dTargetResidual
540 C :: Target residual for cg2d solver; no unit (RHS normalisation)
541 C cg2dTargetResWunit
542 C :: Target residual for cg2d solver; W unit (No RHS normalisation)
543 C cg3dTargetResidual
544 C :: Target residual for cg3d solver.
545 C cg2dpcOffDFac :: Averaging weight for preconditioner off-diagonal.
546 C Note. 20th May 1998
547 C I made a weird discovery! In the model paper we argue
548 C for the form of the preconditioner used here ( see
549 C A Finite-volume, Incompressible Navier-Stokes Model
550 C ...., Marshall et. al ). The algebra gives a simple
551 C 0.5 factor for the averaging of ac and aCw to get a
552 C symmettric pre-conditioner. By using a factor of 0.51
553 C i.e. scaling the off-diagonal terms in the
554 C preconditioner down slightly I managed to get the
555 C number of iterations for convergence in a test case to
556 C drop form 192 -> 134! Need to investigate this further!
557 C For now I have introduced a parameter cg2dpcOffDFac which
558 C defaults to 0.51 but can be set at runtime.
559 C delR :: Vertical grid spacing ( units of r ).
560 C delRc :: Vertical grid spacing between cell centers (r unit).
561 C delX :: Separation between cell faces (m) or (deg), depending
562 C delY on input flags. Note: moved to header file SET_GRID.h
563 C xgOrigin :: Origin of the X-axis (Cartesian Grid) / Longitude of Western
564 C :: most cell face (Lat-Lon grid) (Note: this is an "inert"
565 C :: parameter but it makes geographical references simple.)
566 C ygOrigin :: Origin of the Y-axis (Cartesian Grid) / Latitude of Southern
567 C :: most face (Lat-Lon grid).
568 C rSphere :: Radius of sphere for a spherical polar grid ( m ).
569 C recip_rSphere :: Reciprocal radius of sphere ( m^-1 ).
570 C radius_fromHorizGrid :: sphere Radius of input horiz. grid (Curvilinear Grid)
571 C seaLev_Z :: the reference height of sea-level (usually zero)
572 C top_Pres :: pressure (P-Coords) or reference pressure (Z-Coords) at the top
573 C rSigmaBnd :: vertical position (in r-unit) of r/sigma transition (Hybrid-Sigma)
574 C gravity :: Acceleration due to constant gravity ( m/s^2 )
575 C recip_gravity :: Reciprocal gravity acceleration ( s^2/m )
576 C gBaro :: Accel. due to gravity used in barotropic equation ( m/s^2 )
577 C gravFacC :: gravity factor (vs surf. gravity) vert. profile at cell-Center
578 C gravFacF :: gravity factor (vs surf. gravity) vert. profile at cell-interF
579 C rhoNil :: Reference density for the linear equation of state
580 C rhoConst :: Vertically constant reference density (Boussinesq)
581 C rho1Ref :: reference vertical profile for density (anelastic)
582 C rhoFacC :: normalized (by rhoConst) reference density at cell-Center
583 C rhoFacF :: normalized (by rhoConst) reference density at cell-interFace
584 C rhoConstFresh :: Constant reference density for fresh water (rain)
585 C thetaConst :: Constant reference for potential temperature
586 C tRef :: reference vertical profile for potential temperature
587 C sRef :: reference vertical profile for salinity/specific humidity
588 C pRef4EOS :: reference pressure used in EOS (case selectP_inEOS_Zc=1)
589 C phiRef :: reference potential (press/rho, geopot) profile (m^2/s^2)
590 C dBdrRef :: vertical gradient of reference buoyancy [(m/s/r)^2]:
591 C :: z-coord: = N^2_ref = Brunt-Vaissala frequency [s^-2]
592 C :: p-coord: = -(d.alpha/dp)_ref [(m^2.s/kg)^2]
593 C rVel2wUnit :: units conversion factor (Non-Hydrostatic code),
594 C :: from r-coordinate vertical velocity to vertical velocity [m/s].
595 C :: z-coord: = 1 ; p-coord: wSpeed [m/s] = rVel [Pa/s] * rVel2wUnit
596 C wUnit2rVel :: units conversion factor (Non-Hydrostatic code),
597 C :: from vertical velocity [m/s] to r-coordinate vertical velocity.
598 C :: z-coord: = 1 ; p-coord: rVel [Pa/s] = wSpeed [m/s] * wUnit2rVel
599 C mass2rUnit :: units conversion factor (surface forcing),
600 C :: from mass per unit area [kg/m2] to vertical r-coordinate unit.
601 C :: z-coord: = 1/rhoConst ( [kg/m2] / rho = [m] ) ;
602 C :: p-coord: = gravity ( [kg/m2] * g = [Pa] ) ;
603 C rUnit2mass :: units conversion factor (surface forcing),
604 C :: from vertical r-coordinate unit to mass per unit area [kg/m2].
605 C :: z-coord: = rhoConst ( [m] * rho = [kg/m2] ) ;
606 C :: p-coord: = 1/gravity ( [Pa] / g = [kg/m2] ) ;
607 C f0 :: Reference coriolis parameter ( 1/s )
608 C ( Southern edge f for beta plane )
609 C beta :: df/dy ( s^-1.m^-1 )
610 C fPrime :: Second Coriolis parameter ( 1/s ), related to Y-component
611 C of rotation (reference value = 2.Omega.Cos(Phi))
612 C omega :: Angular velocity ( rad/s )
613 C rotationPeriod :: Rotation period (s) (= 2.pi/omega)
614 C viscArNr :: vertical profile of Eddy viscosity coeff.
615 C for vertical mixing of momentum ( units of r^2/s )
616 C viscAh :: Eddy viscosity coeff. for mixing of
617 C momentum laterally ( m^2/s )
618 C viscAhW :: Eddy viscosity coeff. for mixing of vertical
619 C momentum laterally, no effect for hydrostatic
620 C model, defaults to viscAhD if unset ( m^2/s )
621 C Not used if variable horiz. viscosity is used.
622 C viscA4 :: Biharmonic viscosity coeff. for mixing of
623 C momentum laterally ( m^4/s )
624 C viscA4W :: Biharmonic viscosity coeff. for mixing of vertical
625 C momentum laterally, no effect for hydrostatic
626 C model, defaults to viscA4D if unset ( m^2/s )
627 C Not used if variable horiz. viscosity is used.
628 C viscAhD :: Eddy viscosity coeff. for mixing of momentum laterally
629 C (act on Divergence part) ( m^2/s )
630 C viscAhZ :: Eddy viscosity coeff. for mixing of momentum laterally
631 C (act on Vorticity part) ( m^2/s )
632 C viscA4D :: Biharmonic viscosity coeff. for mixing of momentum laterally
633 C (act on Divergence part) ( m^4/s )
634 C viscA4Z :: Biharmonic viscosity coeff. for mixing of momentum laterally
635 C (act on Vorticity part) ( m^4/s )
636 C smag3D_coeff :: Isotropic 3-D Smagorinsky coefficient (-)
637 C viscC2leith :: Leith non-dimensional viscosity factor (grad(vort))
638 C viscC2leithD :: Modified Leith non-dimensional visc. factor (grad(div))
639 C viscC4leith :: Leith non-dimensional viscosity factor (grad(vort))
640 C viscC4leithD :: Modified Leith non-dimensional viscosity factor (grad(div))
641 C viscC2smag :: Smagorinsky non-dimensional viscosity factor (harmonic)
642 C viscC4smag :: Smagorinsky non-dimensional viscosity factor (biharmonic)
643 C viscAhMax :: Maximum eddy viscosity coeff. for mixing of
644 C momentum laterally ( m^2/s )
645 C viscAhReMax :: Maximum gridscale Reynolds number for eddy viscosity
646 C coeff. for mixing of momentum laterally (non-dim)
647 C viscAhGrid :: non-dimensional grid-size dependent viscosity
648 C viscAhGridMax:: maximum and minimum harmonic viscosity coefficients ...
649 C viscAhGridMin:: in terms of non-dimensional grid-size dependent visc.
650 C viscA4Max :: Maximum biharmonic viscosity coeff. for mixing of
651 C momentum laterally ( m^4/s )
652 C viscA4ReMax :: Maximum Gridscale Reynolds number for
653 C biharmonic viscosity coeff. momentum laterally (non-dim)
654 C viscA4Grid :: non-dimensional grid-size dependent bi-harmonic viscosity
655 C viscA4GridMax:: maximum and minimum biharmonic viscosity coefficients ...
656 C viscA4GridMin:: in terms of non-dimensional grid-size dependent viscosity
657 C diffKhT :: Laplacian diffusion coeff. for mixing of
658 C heat laterally ( m^2/s )
659 C diffK4T :: Biharmonic diffusion coeff. for mixing of
660 C heat laterally ( m^4/s )
661 C diffKrNrT :: vertical profile of Laplacian diffusion coeff.
662 C for mixing of heat vertically ( units of r^2/s )
663 C diffKr4T :: vertical profile of Biharmonic diffusion coeff.
664 C for mixing of heat vertically ( units of r^4/s )
665 C diffKhS :: Laplacian diffusion coeff. for mixing of
666 C salt laterally ( m^2/s )
667 C diffK4S :: Biharmonic diffusion coeff. for mixing of
668 C salt laterally ( m^4/s )
669 C diffKrNrS :: vertical profile of Laplacian diffusion coeff.
670 C for mixing of salt vertically ( units of r^2/s ),
671 C diffKr4S :: vertical profile of Biharmonic diffusion coeff.
672 C for mixing of salt vertically ( units of r^4/s )
673 C diffKrBL79surf :: T/S surface diffusivity (m^2/s) Bryan and Lewis, 1979
674 C diffKrBL79deep :: T/S deep diffusivity (m^2/s) Bryan and Lewis, 1979
675 C diffKrBL79scl :: depth scale for arctan fn (m) Bryan and Lewis, 1979
676 C diffKrBL79Ho :: depth offset for arctan fn (m) Bryan and Lewis, 1979
677 C BL79LatVary :: polarwise of this latitude diffKrBL79 is applied with
678 C gradual transition to diffKrBLEQ towards Equator
679 C diffKrBLEQsurf :: same as diffKrBL79surf but at Equator
680 C diffKrBLEQdeep :: same as diffKrBL79deep but at Equator
681 C diffKrBLEQscl :: same as diffKrBL79scl but at Equator
682 C diffKrBLEQHo :: same as diffKrBL79Ho but at Equator
683 C deltaT :: Default timestep ( s )
684 C deltaTClock :: Timestep used as model "clock". This determines the
685 C IO frequencies and is used in tagging output. It can
686 C be totally different to the dynamical time. Typically
687 C it will be the deep-water timestep for accelerated runs.
688 C Frequency of checkpointing and dumping of the model state
689 C are referenced to this clock. ( s )
690 C deltaTMom :: Timestep for momemtum equations ( s )
691 C dTtracerLev :: Timestep for tracer equations ( s ), function of level k
692 C deltaTFreeSurf :: Timestep for free-surface equation ( s )
693 C freeSurfFac :: Parameter to turn implicit free surface term on or off
694 C freeSurFac = 1. uses implicit free surface
695 C freeSurFac = 0. uses rigid lid
696 C abEps :: Adams-Bashforth-2 stabilizing weight
697 C alph_AB :: Adams-Bashforth-3 primary factor
698 C beta_AB :: Adams-Bashforth-3 secondary factor
699 C implicSurfPress :: parameter of the Crank-Nickelson time stepping :
700 C Implicit part of Surface Pressure Gradient ( 0-1 )
701 C implicDiv2Dflow :: parameter of the Crank-Nickelson time stepping :
702 C Implicit part of barotropic flow Divergence ( 0-1 )
703 C implicitNHPress :: parameter of the Crank-Nickelson time stepping :
704 C Implicit part of Non-Hydrostatic Pressure Gradient ( 0-1 )
705 C hFacMin :: Minimum fraction size of a cell (affects hFacC etc...)
706 C hFacMinDz :: Minimum dimensional size of a cell (affects hFacC etc..., m)
707 C hFacMinDp :: Minimum dimensional size of a cell (affects hFacC etc..., Pa)
708 C hFacMinDr :: Minimum dimensional size of a cell (-> hFacC etc..., r units)
709 C hFacInf :: Threshold (inf and sup) for fraction size of surface cell
710 C hFacSup that control vanishing and creating levels
711 C tauCD :: CD scheme coupling timescale ( s )
712 C rCD :: CD scheme normalised coupling parameter (= 1 - deltaT/tauCD)
713 C epsAB_CD :: Adams-Bashforth-2 stabilizing weight used in CD scheme
714 C baseTime :: model base time (time origin) = time @ iteration zero
715 C startTime :: Starting time for this integration ( s ).
716 C endTime :: Ending time for this integration ( s ).
717 C chkPtFreq :: Frequency of rolling check pointing ( s ).
718 C pChkPtFreq :: Frequency of permanent check pointing ( s ).
719 C dumpFreq :: Frequency with which model state is written to
720 C post-processing files ( s ).
721 C diagFreq :: Frequency with which model writes diagnostic output
722 C of intermediate quantities.
723 C afFacMom :: Advection of momentum term tracer parameter
724 C vfFacMom :: Momentum viscosity tracer parameter
725 C pfFacMom :: Momentum pressure forcing tracer parameter
726 C cfFacMom :: Coriolis term tracer parameter
727 C foFacMom :: Momentum forcing tracer parameter
728 C mtFacMom :: Metric terms tracer parameter
729 C cosPower :: Power of cosine of latitude to multiply viscosity
730 C cAdjFreq :: Frequency of convective adjustment
731 C
732 C taveFreq :: Frequency with which time-averaged model state
733 C is written to post-processing files ( s ).
734 C tave_lastIter :: (for state variable only) fraction of the last time
735 C step (of each taveFreq period) put in the time average.
736 C (fraction for 1rst iter = 1 - tave_lastIter)
737 C tauThetaClimRelax :: Relaxation to climatology time scale ( s ).
738 C tauSaltClimRelax :: Relaxation to climatology time scale ( s ).
739 C latBandClimRelax :: latitude band where Relaxation to Clim. is applied,
740 C i.e. where |yC| <= latBandClimRelax
741 C externForcingPeriod :: Is the period of which forcing varies (eg. 1 month)
742 C externForcingCycle :: Is the repeat time of the forcing (eg. 1 year)
743 C (note: externForcingCycle must be an integer
744 C number times externForcingPeriod)
745 C convertFW2Salt :: salinity, used to convert Fresh-Water Flux to Salt Flux
746 C (use model surface (local) value if set to -1)
747 C temp_EvPrRn :: temperature of Rain & Evap.
748 C salt_EvPrRn :: salinity of Rain & Evap.
749 C temp_addMass :: temperature of addMass array
750 C salt_addMass :: salinity of addMass array
751 C (notes: a) tracer content of Rain/Evap only used if both
752 C NonLin_FrSurf & useRealFreshWater are set.
753 C b) use model surface (local) value if set to UNSET_RL)
754 C hMixCriteria:: criteria for mixed-layer diagnostic
755 C dRhoSmall :: parameter for mixed-layer diagnostic
756 C hMixSmooth :: Smoothing parameter for mixed-layer diag (default=0=no smoothing)
757 C ivdc_kappa :: implicit vertical diffusivity for convection [m^2/s]
758 C sideDragFactor :: side-drag scaling factor (used only if no_slip_sides)
759 C (default=2: full drag ; =1: gives half-slip BC)
760 C bottomDragLinear :: Linear bottom-drag coefficient (units of [r]/s)
761 C bottomDragQuadratic :: Quadratic bottom-drag coefficient (units of [r]/m)
762 C (if using zcoordinate, units becomes linear: m/s, quadratic: [-])
763 C smoothAbsFuncRange :: 1/2 of interval around zero, for which FORTRAN ABS
764 C is to be replace by a smoother function
765 C (affects myabs, mymin, mymax)
766 C nh_Am2 :: scales the non-hydrostatic terms and changes internal scales
767 C (i.e. allows convection at different Rayleigh numbers)
768 C tCylIn :: Temperature of the cylinder inner boundary
769 C tCylOut :: Temperature of the cylinder outer boundary
770 C phiEuler :: Euler angle, rotation about original z-axis
771 C thetaEuler :: Euler angle, rotation about new x-axis
772 C psiEuler :: Euler angle, rotation about new z-axis
773 COMMON /PARM_R/ cg2dTargetResidual, cg2dTargetResWunit,
774 & cg2dpcOffDFac, cg3dTargetResidual,
775 & delR, delRc, xgOrigin, ygOrigin, rSphere, recip_rSphere,
776 & radius_fromHorizGrid, seaLev_Z, top_Pres, rSigmaBnd,
777 & deltaT, deltaTMom, dTtracerLev, deltaTFreeSurf, deltaTClock,
778 & abEps, alph_AB, beta_AB,
779 & f0, beta, fPrime, omega, rotationPeriod,
780 & viscFacAdj, viscAh, viscAhW, smag3D_coeff,
781 & viscAhMax, viscAhGrid, viscAhGridMax, viscAhGridMin,
782 & viscC2leith, viscC2leithD,
783 & viscC2smag, viscC4smag,
784 & viscAhD, viscAhZ, viscA4D, viscA4Z,
785 & viscA4, viscA4W, viscA4Max,
786 & viscA4Grid, viscA4GridMax, viscA4GridMin,
787 & viscAhReMax, viscA4ReMax,
788 & viscC4leith, viscC4leithD, viscArNr,
789 & diffKhT, diffK4T, diffKrNrT, diffKr4T,
790 & diffKhS, diffK4S, diffKrNrS, diffKr4S,
791 & diffKrBL79surf, diffKrBL79deep, diffKrBL79scl, diffKrBL79Ho,
792 & BL79LatVary,
793 & diffKrBLEQsurf, diffKrBLEQdeep, diffKrBLEQscl, diffKrBLEQHo,
794 & tauCD, rCD, epsAB_CD,
795 & freeSurfFac, implicSurfPress, implicDiv2Dflow, implicitNHPress,
796 & hFacMin, hFacMinDz, hFacInf, hFacSup,
797 & gravity, recip_gravity, gBaro,
798 & gravFacC, recip_gravFacC, gravFacF, recip_gravFacF,
799 & rhoNil, rhoConst, recip_rhoConst, rho1Ref,
800 & rhoFacC, recip_rhoFacC, rhoFacF, recip_rhoFacF, rhoConstFresh,
801 & thetaConst, tRef, sRef, pRef4EOS, phiRef, dBdrRef,
802 & rVel2wUnit, wUnit2rVel, mass2rUnit, rUnit2mass,
803 & baseTime, startTime, endTime,
804 & chkPtFreq, pChkPtFreq, dumpFreq, adjDumpFreq,
805 & diagFreq, taveFreq, tave_lastIter, monitorFreq, adjMonitorFreq,
806 & afFacMom, vfFacMom, pfFacMom, cfFacMom, foFacMom, mtFacMom,
807 & cosPower, cAdjFreq,
808 & tauThetaClimRelax, tauSaltClimRelax, latBandClimRelax,
809 & externForcingCycle, externForcingPeriod,
810 & convertFW2Salt, temp_EvPrRn, salt_EvPrRn,
811 & temp_addMass, salt_addMass, hFacMinDr, hFacMinDp,
812 & ivdc_kappa, hMixCriteria, dRhoSmall, hMixSmooth,
813 & sideDragFactor, bottomDragLinear, bottomDragQuadratic, nh_Am2,
814 & smoothAbsFuncRange,
815 & tCylIn, tCylOut,
816 & phiEuler, thetaEuler, psiEuler
817
818 _RL cg2dTargetResidual
819 _RL cg2dTargetResWunit
820 _RL cg3dTargetResidual
821 _RL cg2dpcOffDFac
822 _RL delR(Nr)
823 _RL delRc(Nr+1)
824 _RL xgOrigin
825 _RL ygOrigin
826 _RL rSphere
827 _RL recip_rSphere
828 _RL radius_fromHorizGrid
829 _RL seaLev_Z
830 _RL top_Pres
831 _RL rSigmaBnd
832 _RL deltaT
833 _RL deltaTClock
834 _RL deltaTMom
835 _RL dTtracerLev(Nr)
836 _RL deltaTFreeSurf
837 _RL abEps, alph_AB, beta_AB
838 _RL f0
839 _RL beta
840 _RL fPrime
841 _RL omega
842 _RL rotationPeriod
843 _RL freeSurfFac
844 _RL implicSurfPress
845 _RL implicDiv2Dflow
846 _RL implicitNHPress
847 _RL hFacMin
848 _RL hFacMinDz
849 _RL hFacMinDp
850 _RL hFacMinDr
851 _RL hFacInf
852 _RL hFacSup
853 _RL viscArNr(Nr)
854 _RL viscFacAdj
855 _RL viscAh
856 _RL viscAhW
857 _RL viscAhD
858 _RL viscAhZ
859 _RL smag3D_coeff
860 _RL viscAhMax
861 _RL viscAhReMax
862 _RL viscAhGrid, viscAhGridMax, viscAhGridMin
863 _RL viscC2leith
864 _RL viscC2leithD
865 _RL viscC2smag
866 _RL viscA4
867 _RL viscA4W
868 _RL viscA4D
869 _RL viscA4Z
870 _RL viscA4Max
871 _RL viscA4ReMax
872 _RL viscA4Grid, viscA4GridMax, viscA4GridMin
873 _RL viscC4leith
874 _RL viscC4leithD
875 _RL viscC4smag
876 _RL diffKhT
877 _RL diffK4T
878 _RL diffKrNrT(Nr)
879 _RL diffKr4T(Nr)
880 _RL diffKhS
881 _RL diffK4S
882 _RL diffKrNrS(Nr)
883 _RL diffKr4S(Nr)
884 _RL diffKrBL79surf
885 _RL diffKrBL79deep
886 _RL diffKrBL79scl
887 _RL diffKrBL79Ho
888 _RL BL79LatVary
889 _RL diffKrBLEQsurf
890 _RL diffKrBLEQdeep
891 _RL diffKrBLEQscl
892 _RL diffKrBLEQHo
893 _RL tauCD, rCD, epsAB_CD
894 _RL gravity, recip_gravity
895 _RL gBaro
896 _RL gravFacC(Nr), recip_gravFacC(Nr)
897 _RL gravFacF(Nr+1), recip_gravFacF(Nr+1)
898 _RL rhoNil
899 _RL rhoConst, recip_rhoConst
900 _RL rho1Ref(Nr)
901 _RL rhoFacC(Nr), recip_rhoFacC(Nr)
902 _RL rhoFacF(Nr+1), recip_rhoFacF(Nr+1)
903 _RL rhoConstFresh
904 _RL thetaConst
905 _RL tRef(Nr)
906 _RL sRef(Nr)
907 _RL pRef4EOS(Nr)
908 _RL phiRef(2*Nr+1)
909 _RL dBdrRef(Nr)
910 _RL rVel2wUnit(Nr+1), wUnit2rVel(Nr+1)
911 _RL mass2rUnit, rUnit2mass
912 _RL baseTime
913 _RL startTime
914 _RL endTime
915 _RL chkPtFreq
916 _RL pChkPtFreq
917 _RL dumpFreq
918 _RL adjDumpFreq
919 _RL diagFreq
920 _RL taveFreq
921 _RL tave_lastIter
922 _RL monitorFreq
923 _RL adjMonitorFreq
924 _RL afFacMom
925 _RL vfFacMom
926 _RL pfFacMom
927 _RL cfFacMom
928 _RL foFacMom
929 _RL mtFacMom
930 _RL cosPower
931 _RL cAdjFreq
932 _RL tauThetaClimRelax
933 _RL tauSaltClimRelax
934 _RL latBandClimRelax
935 _RL externForcingCycle
936 _RL externForcingPeriod
937 _RL convertFW2Salt
938 _RL temp_EvPrRn
939 _RL salt_EvPrRn
940 _RL temp_addMass
941 _RL salt_addMass
942 _RL ivdc_kappa
943 _RL hMixCriteria
944 _RL dRhoSmall
945 _RL hMixSmooth
946 _RL sideDragFactor
947 _RL bottomDragLinear
948 _RL bottomDragQuadratic
949 _RL smoothAbsFuncRange
950 _RL nh_Am2
951 _RL tCylIn, tCylOut
952 _RL phiEuler, thetaEuler, psiEuler
953
954 C-- COMMON /PARM_A/ Thermodynamics constants ?
955 COMMON /PARM_A/ HeatCapacity_Cp
956 _RL HeatCapacity_Cp
957
958 C-- COMMON /PARM_ATM/ Atmospheric physical parameters (Ideal Gas EOS, ...)
959 C celsius2K :: convert centigrade (Celsius) degree to Kelvin
960 C atm_Po :: standard reference pressure
961 C atm_Cp :: specific heat (Cp) of the (dry) air at constant pressure
962 C atm_Rd :: gas constant for dry air
963 C atm_kappa :: kappa = R/Cp (R: constant of Ideal Gas EOS)
964 C atm_Rq :: water vapour specific volume anomaly relative to dry air
965 C (e.g. typical value = (29/18 -1) 10^-3 with q [g/kg])
966 C integr_GeoPot :: option to select the way we integrate the geopotential
967 C (still a subject of discussions ...)
968 C selectFindRoSurf :: select the way surf. ref. pressure (=Ro_surf) is
969 C derived from the orography. Implemented: 0,1 (see INI_P_GROUND)
970 COMMON /PARM_ATM/
971 & celsius2K,
972 & atm_Cp, atm_Rd, atm_kappa, atm_Rq, atm_Po,
973 & integr_GeoPot, selectFindRoSurf
974 _RL celsius2K
975 _RL atm_Po, atm_Cp, atm_Rd, atm_kappa, atm_Rq
976 INTEGER integr_GeoPot, selectFindRoSurf
977
978 #ifdef ALLOW_PETSC
979 LOGICAL use_cg3d_petsc
980 LOGICAL cg3d_petsc_reuse_mat
981 LOGICAL cg3d_need2destroy_mat
982 LOGICAL cg3d_need2create_mat
983 COMMON /CG3D_PETSC_LOGICAL/
984 & cg3d_need2create_mat, cg3d_need2destroy_mat,
985 & use_cg3d_petsc, cg3d_petsc_reuse_mat
986
987 COMMON /CG3D_PETSC_C/
988 & CG3D_PETSC_SOLVER_TYPE,
989 & CG3D_PETSC_PRECOND_TYPE
990 CHARACTER*(MAX_LEN_FNAM) CG3D_PETSC_SOLVER_TYPE
991 CHARACTER*(MAX_LEN_FNAM) CG3D_PETSC_PRECOND_TYPE
992
993 COMMON /CG3D_PETSC_I/
994 & cg3d_petsc_cpuInVert
995 INTEGER cg3d_petsc_cpuInVert
996 #endif
997
998 C Logical flags for selecting packages
999 LOGICAL useGAD
1000 LOGICAL useOBCS
1001 LOGICAL useSHAP_FILT
1002 LOGICAL useZONAL_FILT
1003 LOGICAL useOPPS
1004 LOGICAL usePP81
1005 LOGICAL useKL10
1006 LOGICAL useMY82
1007 LOGICAL useGGL90
1008 LOGICAL useKPP
1009 LOGICAL useGMRedi
1010 LOGICAL useDOWN_SLOPE
1011 LOGICAL useBBL
1012 LOGICAL useCAL
1013 LOGICAL useEXF
1014 LOGICAL useBulkForce
1015 LOGICAL useEBM
1016 LOGICAL useCheapAML
1017 LOGICAL useAUTODIFF
1018 LOGICAL useGrdchk
1019 LOGICAL useSMOOTH
1020 LOGICAL usePROFILES
1021 LOGICAL useECCO
1022 LOGICAL useCTRL
1023 LOGICAL useSBO
1024 LOGICAL useFLT
1025 LOGICAL usePTRACERS
1026 LOGICAL useGCHEM
1027 LOGICAL useRBCS
1028 LOGICAL useOffLine
1029 LOGICAL useMATRIX
1030 LOGICAL useFRAZIL
1031 LOGICAL useSEAICE
1032 LOGICAL useSALT_PLUME
1033 LOGICAL useShelfIce
1034 LOGICAL useStreamIce
1035 LOGICAL useICEFRONT
1036 LOGICAL useThSIce
1037 LOGICAL useLand
1038 LOGICAL useATM2d
1039 LOGICAL useAIM
1040 LOGICAL useAtm_Phys
1041 LOGICAL useFizhi
1042 LOGICAL useGridAlt
1043 LOGICAL useDiagnostics
1044 LOGICAL useREGRID
1045 LOGICAL useLayers
1046 LOGICAL useMNC
1047 LOGICAL useRunClock
1048 LOGICAL useEMBED_FILES
1049 LOGICAL useMYPACKAGE
1050 COMMON /PARM_PACKAGES/
1051 & useGAD, useOBCS, useSHAP_FILT, useZONAL_FILT,
1052 & useOPPS, usePP81, useKL10, useMY82, useGGL90, useKPP,
1053 & useGMRedi, useBBL, useDOWN_SLOPE,
1054 & useCAL, useEXF, useBulkForce, useEBM, useCheapAML,
1055 & useGrdchk, useSMOOTH, usePROFILES, useECCO, useCTRL,
1056 & useSBO, useFLT, useAUTODIFF,
1057 & usePTRACERS, useGCHEM, useRBCS, useOffLine, useMATRIX,
1058 & useFRAZIL, useSEAICE, useSALT_PLUME, useShelfIce,
1059 & useStreamIce, useICEFRONT, useThSIce, useLand,
1060 & useATM2D, useAIM, useAtm_Phys, useFizhi, useGridAlt,
1061 & useDiagnostics, useREGRID, useLayers, useMNC,
1062 & useRunClock, useEMBED_FILES,
1063 & useMYPACKAGE
1064
1065
1066
1067 CEH3 ;;; Local Variables: ***
1068 CEH3 ;;; mode:fortran ***
1069 CEH3 ;;; End: ***

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