/[MITgcm]/manual/s_examples/text/model_examples.tex
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revision 1.11 by molod, Tue Jun 27 19:08:22 2006 UTC revision 1.12 by molod, Tue Jun 27 20:47:05 2006 UTC
# Line 21  under the directory \texttt{verification Line 21  under the directory \texttt{verification
21    
22  \begin{enumerate}  \begin{enumerate}
23        
24    \item \texttt{tutorial\_barotropic\_gyre}
25    
26  \item \texttt{tutorial\_barotropic\_gyre} - single layer, ocean double gyre  \item \texttt{tutorial\_barotropic\_gyre} - single layer, ocean double gyre
27    (barotropic with free-surface). This experiment is described in detail in section    (barotropic with free-surface). This experiment is described in detail in section
28    \ref{sect:eg-baro}.    \ref{sect:eg-baro}.
# Line 51  Gent/McWilliams scheme). 2D (Y-Z). Line 53  Gent/McWilliams scheme). 2D (Y-Z).
53  \item \texttt{hs94.128x64x5} - 3D atmosphere dynamics using Held and  \item \texttt{hs94.128x64x5} - 3D atmosphere dynamics using Held and
54    Suarez '94 forcing.    Suarez '94 forcing.
55        
56  \item \texttt{hs94.cs-32x32x5} - 3D atmosphere dynamics using Held and Suarez  \item \texttt{tutorial\_held\_suarez\_cs} - 3D atmosphere dynamics using Held and Suarez
57    (1994) forcing on the cubed sphere.  This experiment is described in detail in    (1994) forcing on the cubed sphere.  This experiment is described in detail in
58    section \ref{sect:eg-hs}.    section \ref{sect:eg-hs}.
59        
# Line 68  Gent/McWilliams scheme). 2D (Y-Z). Line 70  Gent/McWilliams scheme). 2D (Y-Z).
70    Global configuration, on latitude longitude grid with 128x64x5 grid    Global configuration, on latitude longitude grid with 128x64x5 grid
71    points ($2.8^\circ$ resolution).    points ($2.8^\circ$ resolution).
72        
73    \item \texttt{aim.5l_cs}
74    
75  \item \texttt{adjustment.128x64x1} Barotropic adjustment problem on  \item \texttt{adjustment.128x64x1} Barotropic adjustment problem on
76    latitude longitude grid with 128x64 grid points ($2.8^\circ$ resolution).    latitude longitude grid with 128x64 grid points ($2.8^\circ$ resolution).
77        
# Line 81  Gent/McWilliams scheme). 2D (Y-Z). Line 85  Gent/McWilliams scheme). 2D (Y-Z).
85  \item \texttt{advect\_xy} Two-dimensional (horizontal plane) passive  \item \texttt{advect\_xy} Two-dimensional (horizontal plane) passive
86    advection test on Cartesian grid.    advection test on Cartesian grid.
87        
88  \item \texttt{advect\_yz} Two-dimensional (vertical plane) passive  \item \texttt{advect\_xz} Two-dimensional (vertical plane) passive
89    advection test on Cartesian grid.    advection test on Cartesian grid.
90        
91  \item \texttt{tutorial\_tracer\_adjsens} Simple passive tracer experiment. Includes  \item \texttt{tutorial\_tracer\_adjsens} Simple passive tracer experiment. Includes
# Line 116  Gent/McWilliams scheme). 2D (Y-Z). Line 120  Gent/McWilliams scheme). 2D (Y-Z).
120  \item \texttt{rotating\_tank} Rotating tank simulation in cylindrical coordinates.  \item \texttt{rotating\_tank} Rotating tank simulation in cylindrical coordinates.
121    This experiment is described in detail in section \ref{sect:eg-tank}.    This experiment is described in detail in section \ref{sect:eg-tank}.
122    
123    \item \texttt{MLAdjust} Simple test for different viscosity formulations.
124    
125    \item \texttt{bottom_ctrl_5x5} Adjoint test using the bottom topography as the
126      control parameter.
127    
128    \item \texttt{cfc_example} Global ocean with online computation and advection of
129    CFC11 and CFC12.
130    
131    \item \texttt{dome} Idealized 3D test of a density-driven bottom current.
132    
133    \item \texttt{exp2} Old version of the global ocean experiment.
134    
135    \item \texttt{exp5} Deep convection.
136    
137    \item \texttt{fizhi-cs-32x32x10} Global atmospheric simulation with realistic topography,
138      10 vertical levels, a cubed sphere grid and the full atmospheric physics package.
139    
140    \item \texttt{fizhi-cs-aqualev20} Global atmospheric simulation on an aqua planet with
141      full atmospheric physics. Run is perpetual march with an analytical SST distribution.
142      This is the configuration for the APE (Aqua Planet Experiment) participation experiment.
143    
144    \item \texttt{fizhi-gridalt-hs} Global atmospheric simulation Held-Suarez (1994) forcing,
145      with the physical forcing and the dynamical forcing running on different vertical grids.
146    
147    \item \texttt{global_ocean.cs32x15} Global ocean experiment on the cubed sphere grid, using
148    thermodynamic sea ice and bulk force packages.
149    
150    \item \texttt{global_ocean_ebm} Global ocean experiment on a lat-lon grid coupled to an
151    atmospheric energy balance model. Similar to global_ocean.90x40x15 experiment.
152    
153    \item \texttt{global_with_exf} Global ocean experiment on a lat-lon grid using the exf
154    package. Similar to global_ocean.90x40x15 experiment.
155    
156    \item \texttt{hs94.cs-32x32x5} 3D atmosphere dynamics using Held and Suarez
157      (1994) forcing on the cubed sphere. 5 vertical levels.
158    
159    \item \texttt{ideal_2D_oce} Idealized 2D global ocean simulation on an aqua planet.
160    
161    \item \texttt{inverted_barometer} Simple test of ocean response to atmospheric pressure
162    loading.
163    
164    \item \texttt{lab_sea} Regional Labrador Sea simulation on a lat-lon grid. Coupled to
165    the sea ice model.
166    
167    \item \texttt{matrix_example} Test of experimental method to accelerated convergence towards
168    equillibrium.
169    
170    \item \texttt{tutorial_cfc_offline} Offline form of the MITgcm to study advection of a passive
171      tracer and CFCs.
172    
173    \item \texttt{vermix} Simple test in a small domain (3 columns) for ocean vertical mixing schemes.
174    
175  \end{enumerate}  \end{enumerate}
176    
177  \subsection{Directory structure of model examples}  \subsection{Directory structure of model examples}

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