/[MITgcm]/manual/s_examples/text/model_examples.tex
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revision 1.18 by jmc, Tue Jan 15 21:17:19 2008 UTC revision 1.19 by jmc, Tue Jan 15 23:24:59 2008 UTC
# Line 34  Each example is briefly described below. Line 34  Each example is briefly described below.
34    \ref{sect:eg-fourlayer}.    \ref{sect:eg-fourlayer}.
35    
36  \item \texttt{tutorial\_barotropic\_gyre} - single layer, ocean double  \item \texttt{tutorial\_barotropic\_gyre} - single layer, ocean double
37    gyre (barotropic with free-surface). This experiment is described in    gyre (barotropic with free-surface).
38    detail in section \ref{sect:eg-baro}.    This experiment is described in detail in section \ref{sect:eg-baro}.
39    
40  \item \texttt{tutorial\_cfc\_offline} Offline form of the MITgcm to  \item \texttt{tutorial\_cfc\_offline} Offline form of the MITgcm to
41    study advection of a passive tracer and CFCs.    study advection of a passive tracer and CFCs.
42      This experiment is described in detail in section \ref{sect:eg-offline-cfc}.
43    
44  \item \texttt{tutorial\_deep\_convection} - Inhomogenously forced  \item \texttt{tutorial\_deep\_convection} - Inhomogenously forced
45    ocean convection in a doubly periodic box. This experiment is    ocean convection in a doubly periodic box. This experiment is
# Line 49  Each example is briefly described below. Line 50  Each example is briefly described below.
50    experiment is described in detail in section    experiment is described in detail in section
51    \ref{sect:eg-biogeochem_tutorial}.    \ref{sect:eg-biogeochem_tutorial}.
52    
53  \item \texttt{tutorial\_global\_oce\_in\_p} Global circulation in  \item \texttt{tutorial\_global\_oce\_in\_p} Global ocean simulation in
54    pressure coordinate (non-Boussinesq ocean model). Described in    pressure coordinate (non-Boussinesq ocean model). Described in
55    detail in section \ref{sect:eg-globalpressure}.    detail in section \ref{sect:eg-globalpressure}.
56    
# Line 62  Each example is briefly described below. Line 63  Each example is briefly described below.
63    detail in section \ref{sect:eg-global_state_estimate}.    detail in section \ref{sect:eg-global_state_estimate}.
64    
65  \item \texttt{tutorial\_held\_suarez\_cs} - 3D atmosphere dynamics  \item \texttt{tutorial\_held\_suarez\_cs} - 3D atmosphere dynamics
66    using Held and Suarez (1994) forcing on the cubed sphere.  This    using Held and Suarez (1994) forcing on cubed sphere grid.  This
67    experiment is described in detail in section \ref{sect:eg-hs}.    experiment is described in detail in section \ref{sect:eg-hs}.
68        
69  \item \texttt{tutorial\_offline} Offline form of the MITgcm to study  \item \texttt{tutorial\_offline} Offline form of the MITgcm to study
# Line 75  Each example is briefly described below. Line 76  Each example is briefly described below.
76    
77  \item \texttt{tutorial\_tracer\_adjsens} Simple passive tracer  \item \texttt{tutorial\_tracer\_adjsens} Simple passive tracer
78    experiment. Includes derivative calculation. This experiment is    experiment. Includes derivative calculation. This experiment is
79    described in detail in section \ref{sect:eg-simple-tracer}.    described in detail in section \ref{sect:eg-simple-tracer-adjoint}.
80    
81  \item \texttt{adjustment.128x64x1} Barotropic adjustment problem on  \item \texttt{adjustment.128x64x1} Barotropic adjustment problem on
82    latitude longitude grid with 128x64 grid points ($2.8^\circ$ resolution).    latitude longitude grid with 128x64 grid points ($2.8^\circ$ resolution).
# Line 88  Each example is briefly described below. Line 89  Each example is briefly described below.
89    cube sphere grid (32x32 grid points per face, roughly $2.8^\circ$)    cube sphere grid (32x32 grid points per face, roughly $2.8^\circ$)
90        
91  \item \texttt{advect\_xy} Two-dimensional (horizontal plane) passive  \item \texttt{advect\_xy} Two-dimensional (horizontal plane) passive
92    advection test on Cartesian grid.    advection test on Cartesian grid.\\
93      Also contains an additional set-up iusing Adams-Bashforth 3 (input.ab3\_c4).
94        
95  \item \texttt{advect\_xz} Two-dimensional (vertical plane) passive  \item \texttt{advect\_xz} Two-dimensional (vertical plane) passive
96    advection test on Cartesian grid.    advection test on Cartesian grid.
# Line 103  Each example is briefly described below. Line 105  Each example is briefly described below.
105        
106  \item \texttt{aim.5l\_cs} - 5-levels Intermediate Atmospheric physics,  \item \texttt{aim.5l\_cs} - 5-levels Intermediate Atmospheric physics,
107    Global configuration on cube sphere grid    Global configuration on cube sphere grid
108    (32x32 grid points per face, roughly $2.8^\circ$).    (32x32 grid points per face, roughly $2.8^\circ$).\\
109      Also contains an additional set-up with an ocean mixed layer and thermodynamics
110      sea-ice (input.thSI).
111    
112    \item \texttt{biogeo} (to be removed)
113    
114  \item \texttt{bottom\_ctrl\_5x5} Adjoint test using the bottom  \item \texttt{bottom\_ctrl\_5x5} Adjoint test using the bottom
115    topography as the control parameter.    topography as the control parameter.
# Line 111  Each example is briefly described below. Line 117  Each example is briefly described below.
117  \item \texttt{cfc\_example} Global ocean with online computation and  \item \texttt{cfc\_example} Global ocean with online computation and
118    advection of CFC11 and CFC12.    advection of CFC11 and CFC12.
119    
120    \item \texttt{cpl\_aim+ocn}
121    
122    \item \texttt{cpl\_atm2d+ocn}
123    
124    \item \texttt{deep\_anelastic}
125    
126  \item \texttt{dome} Idealized 3D test of a density-driven bottom current.  \item \texttt{dome} Idealized 3D test of a density-driven bottom current.
127    
128  \item \texttt{exp2} Old version of the global ocean experiment.  \item \texttt{exp2} Old version of the global ocean experiment (no GM,
129          no partial-cells).\\
130      Also contains an additional set-up with ridid-lid (input.rigidLid).
131    
132  \item \texttt{exp4} - Flow over a Gaussian bump in open-water or  \item \texttt{exp4} - Flow over a Gaussian bump in open-water or
133    channel with open boundaries.    channel with open boundaries.
# Line 138  Each example is briefly described below. Line 152  Each example is briefly described below.
152  \item \texttt{front\_relax} - Relaxation of an ocean thermal front  \item \texttt{front\_relax} - Relaxation of an ocean thermal front
153    (test for Gent/McWilliams scheme). 2D (Y-Z).    (test for Gent/McWilliams scheme). 2D (Y-Z).
154    
155  \item \texttt{global\_ocean.90x40x15} Global circulation with GM, flux  \item \texttt{global1x1\_tot} ECCO-GODAE production configuration
156    boundary conditions and poles.   version 1, 2 \& 3
157    
158    \item \texttt{global2x2\_tot} ECCO production configuration version 0
159    
160    \item \texttt{global\_ocean.90x40x15} Global ocean simulation at 4x4
161      degree resolution. Similar to tutorial\_global\_oce\_latlon, with
162      quasi-non-hydrostatics and non-hydrostatic metric terms.\\
163      Also contains an adjoint set-up (code\_ad, input\_ad).
164    
165  \item \texttt{global\_ocean.cs32x15} Global ocean experiment on the  \item \texttt{global\_ocean.cs32x15} Global ocean experiment on the
166    cubed sphere grid, using thermodynamic sea ice and bulk force    cubed sphere grid.\\
167    packages.    Also contains additional set-ups:
168      \begin{enumerate}
169       \item non-hydrostratic with biharmonic viscosity (input.viscA4)
170       \item using thermodynamic sea ice and bulk force (input.thsice)
171       \item using thermodynamic (pkg/thsice) dynamics (pkg/seaice) sea-ice
172             and exf pkg (input.icedyn)
173      \end{enumerate}
174    
175  \item \texttt{global\_ocean\_ebm} Global ocean experiment on a lat-lon  \item \texttt{global\_ocean\_ebm} Global ocean experiment on a lat-lon
176    grid coupled to an atmospheric energy balance model. Similar to    grid coupled to an atmospheric energy balance model. Similar to
# Line 153  Each example is briefly described below. Line 180  Each example is briefly described below.
180    grid using the exf package. Similar to global\_ocean.90x40x15    grid using the exf package. Similar to global\_ocean.90x40x15
181    experiment.    experiment.
182    
183  \item \texttt{hs94.128x64x5} - 3D atmosphere dynamics using Held and  \item \texttt{hs94.128x64x5} - 3D atmosphere dynamics on lat-lon grid,
184    Suarez '94 forcing.    using Held and Suarez '94 forcing.
185        
186  \item \texttt{hs94.1x64x5} - Zonal averaged atmosphere using Held and  \item \texttt{hs94.1x64x5} - Zonal averaged atmosphere dynamics
187    Suarez '94 forcing.    using Held and Suarez '94 forcing.
188        
189  \item \texttt{hs94.cs-32x32x5} 3D atmosphere dynamics using Held and  \item \texttt{hs94.cs-32x32x5} 3D atmosphere dynamics using Held and
190    Suarez (1994) forcing on the cubed sphere. 5 vertical levels.    Suarez (1994) forcing on the cubed sphere. 5 vertical levels.
# Line 171  Each example is briefly described below. Line 198  Each example is briefly described below.
198  \item \texttt{inverted\_barometer} Simple test of ocean response to  \item \texttt{inverted\_barometer} Simple test of ocean response to
199    atmospheric pressure loading.    atmospheric pressure loading.
200    
201    \item \texttt{isomip}
202    
203  \item \texttt{lab\_sea} Regional Labrador Sea simulation on a lat-lon  \item \texttt{lab\_sea} Regional Labrador Sea simulation on a lat-lon
204    grid. Coupled to the sea ice model.    grid. Coupled to the sea ice model.
205    
# Line 181  Each example is briefly described below. Line 210  Each example is briefly described below.
210    
211  \item \texttt{natl\_box} - Eastern subtropical North Atlantic with KPP  \item \texttt{natl\_box} - Eastern subtropical North Atlantic with KPP
212    scheme; 1 month integration    scheme; 1 month integration
213    
214    \item \texttt{natl\_box\_adjoint}
215    
216    \item \texttt{offline\_exf\_seaice}
217        
218    \item \texttt{OpenAD}
219    
220  \item \texttt{rotating\_tank} Rotating tank simulation in cylindrical  \item \texttt{rotating\_tank} Rotating tank simulation in cylindrical
221    coordinates.  This experiment is described in detail in section    coordinates.  This experiment is described in detail in section
222    \ref{sect:eg-tank}.    \ref{sect:eg-tank}.
223    
224    \item \texttt{seaice\_obcs}
225    
226  \item \texttt{solid-body.cs-32x32x1} Solid body rotation test for cube  \item \texttt{solid-body.cs-32x32x1} Solid body rotation test for cube
227    sphere grid.    sphere grid.
228    
229    \item \texttt{tidal\_basin\_2d}
230    
231  \item \texttt{vermix} Simple test in a small domain (3 columns) for  \item \texttt{vermix} Simple test in a small domain (3 columns) for
232    ocean vertical mixing schemes.    ocean vertical mixing schemes.
233    

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