/[MITgcm]/manual/s_examples/barotropic_gyre/baro.tex
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revision 1.9 by adcroft, Thu May 16 15:54:37 2002 UTC revision 1.13 by molod, Tue Apr 4 20:23:08 2006 UTC
# Line 13  Line 13 
13  %{\large May 2001}  %{\large May 2001}
14  %\end{center}  %\end{center}
15    
16  This is the first in a series of tutorials describing  \section[Barotropic Gyre MITgcm Example]{Barotropic Ocean Gyre In Cartesian Coordinates}
 example MITgcm numerical experiments. The example experiments  
 include both straightforward examples of idealized geophysical  
 fluid simulations and more involved cases encompassing  
 large scale modeling and  
 automatic differentiation. Both hydrostatic and non-hydrostatic  
 experiments are presented, as well as experiments employing  
 Cartesian, spherical-polar and cube-sphere coordinate systems.  
 These ``case study'' documents include information describing  
 the experimental configuration and detailed information on how to  
 configure the MITgcm code and input files for each experiment.  
   
 \section{Barotropic Ocean Gyre In Cartesian Coordinates}  
17  \label{sect:eg-baro}  \label{sect:eg-baro}
18  \label{www:tutorials}  \label{www:tutorials}
19    \begin{rawhtml}
20    <!-- CMIREDIR:eg-baro: -->
21    \end{rawhtml}
22    
23    
24  This example experiment demonstrates using the MITgcm to simulate  This example experiment demonstrates using the MITgcm to simulate
# Line 68  $\tau_0$ is set to $0.1N m^{-2}$. Line 59  $\tau_0$ is set to $0.1N m^{-2}$.
59  Figure \ref{FIG:eg-baro-simulation_config}  Figure \ref{FIG:eg-baro-simulation_config}
60  summarizes the configuration simulated.  summarizes the configuration simulated.
61    
62    %% === eh3 ===
63  \begin{figure}  \begin{figure}
64  \begin{center}  %% \begin{center}
65   \resizebox{7.5in}{5.5in}{  %%  \resizebox{7.5in}{5.5in}{
66     \includegraphics*[0.2in,0.7in][10.5in,10.5in]  %%    \includegraphics*[0.2in,0.7in][10.5in,10.5in]
67      {part3/case_studies/barotropic_gyre/simulation_config.eps} }  %%     {part3/case_studies/barotropic_gyre/simulation_config.eps} }
68  \end{center}  %% \end{center}
69    \centerline{
70      \scalefig{.95}
71      \epsfbox{part3/case_studies/barotropic_gyre/simulation_config.eps}
72    }
73  \caption{Schematic of simulation domain and wind-stress forcing function  \caption{Schematic of simulation domain and wind-stress forcing function
74  for barotropic gyre numerical experiment. The domain is enclosed bu solid  for barotropic gyre numerical experiment. The domain is enclosed bu solid
75  walls at $x=$~0,1200km and at $y=$~0,1200km.}  walls at $x=$~0,1200km and at $y=$~0,1200km.}

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