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\section{Surface Driven Convection} |
\section{Surface Driven Convection} |
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\label{www:tutorials} |
\label{www:tutorials} |
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\label{sect:eg-bconv} |
\label{sect:eg-bconv} |
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\begin{rawhtml} |
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<!-- CMIREDIR:eg-bconv: --> |
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\end{rawhtml} |
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\bodytext{bgcolor="#FFFFFFFF"} |
\bodytext{bgcolor="#FFFFFFFF"} |
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\item Line 4, |
\item Line 4, |
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\begin{verbatim} |
\begin{verbatim} |
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4 tRef=20*20.0, |
4 tRef=20*20.0, |
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\end{verbatim} |
\end{verbatim} |
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this line sets |
this line sets |
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the initial and reference values of potential temperature at each model |
the initial and reference values of potential temperature at each model |
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\item Line 5, |
\item Line 5, |
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\begin{verbatim} |
\begin{verbatim} |
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5 sRef=20*35.0, |
5 sRef=20*35.0, |
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\end{verbatim} |
\end{verbatim} |
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this line sets the initial and reference values of salinity at each model |
this line sets the initial and reference values of salinity at each model |
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level in units of ppt. In this case salinity is set to an (arbitrary) uniform value of |
level in units of ppt. In this case salinity is set to an (arbitrary) uniform value of |
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\item Line 6, |
\item Line 6, |
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\begin{verbatim} |
\begin{verbatim} |
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6 viscAh=0.1, |
6 viscAh=0.1, |
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\end{verbatim} |
\end{verbatim} |
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this line sets the horizontal laplacian dissipation coefficient to |
this line sets the horizontal laplacian dissipation coefficient to |
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0.1 ${\rm m^{2}s^{-1}}$. Boundary conditions |
0.1 ${\rm m^{2}s^{-1}}$. Boundary conditions |
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\item Line 7, |
\item Line 7, |
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\begin{verbatim} |
\begin{verbatim} |
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7 viscAz=0.1, |
7 viscAz=0.1, |
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\end{verbatim} |
\end{verbatim} |
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this line sets the vertical laplacian frictional dissipation coefficient to |
this line sets the vertical laplacian frictional dissipation coefficient to |
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0.1 ${\rm m^{2}s^{-1}}$. Boundary conditions |
0.1 ${\rm m^{2}s^{-1}}$. Boundary conditions |