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MITgcm Sealion Release Home Page |
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<blockquote><font size=+1>Welcome to the web page of release 1 of MITgcm.</font></blockquote> |
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<p><br><font size=+1>MITgcm </font> |
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<div align="Justify"><font FACE="HELVETICA" SIZE="3"> |
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The M.I.T. General Circulation Model (MITgcm) Release 1 contains code for |
<font size=+1>can be used to study both |
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simulating a wide variety of ocean and atmosphere problems. The model is |
<a href="../online_documents/manual/atmos.html">atmospheric</a> |
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compatible with platforms ranging from desktop and commodity |
and |
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cluster x86 systems to high-end multi-processor supercomputers. Minimum |
<a href="../online_documents/manual/ocean.html">oceanic</a> circulation</font></li> |
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requirements are a Fortran compiler (the free g77 compiler is sufficient) |
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and a UNIX like operating system (such as Linux, Solaris, IRIX). |
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<font size=+1>has a |
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<a href="../online_documents/manual/nonhydro.html">non-hydrostatic</a> |
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A broad span of example problem configurations are included in the |
capability</font></li> |
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release. These examples range from planetary scale |
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circulation simulations of the ocean and atmosphere to high-resolution, |
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small-scale process studies encompassing non-hydrostatic dynamics. In |
<font size=+1>supports horizontal orthogonal curvilinear coordinates</font></li> |
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addition to conventional |
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prognostic operation, differentiated forms (both tangent-linear and adjoint) |
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of the MITgcm code can be generated automatically using either the TAMC or TAF |
<font size=+1>has a finite volume treatment of topography</font></li> |
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automatic differentiation tools. These derivative forms can be used for |
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dynamical sensitivity studies and can also be used, together with appropriate |
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optimisation and |
<font size=+1>supports a wide range of physical parameterizations</font></li> |
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control infrastructure, for mathematically rigorous state-estimation and |
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data-assimilation. A seamless interface to the ECCO group optimisation |
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environment is available. |
<font size=+1>has |
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<a href="../online_documents/manual/stateest.html">tangent |
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linear and adjoint code</a> maintained alongside the forward model</font></li> |
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<center> <h1>MITgcm Release 1 Features:</h1> </center> |
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<center> <h3> |
<font size=+1>can run on your pc, workstation or parallel computer using |
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<A href="../online_documents/"> Oceanic and Atmospheric Simulations </A> |
flexible domain decomposition</font></li> |
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</h3> </center> |
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<center> <h3> <A href="../online_documents/"> |
<font size=+1>Here you can:</font> |
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Automatic Differentiation and Adjoint Sensitivity</h3> |
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</A> </center> |
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<center> <A href="../online_documents/"> |
<font size=+1><a href="../download_software/index.html" target="mainFrame">download |
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<h3>Open Boundaries, Regional and Process Studies</h3> |
the code</a></font></li> |
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</A> </center> |
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<center> <A href="http://mitgcm.org/cgi-bin/cvsweb.cgi/models/MITgcmUV/?only_with_tag=release1_beta1"> |
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<h3>Packaged Source Repository</h3> |
<font size=+1><a href="../online_documents/index.html" target="mainFrame">access |
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</A> </center> |
on-line documentation</a></font></li> |
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<center> <A href="../online_documents/"> |
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<h3>Algorithm and Code Documentation</h3> |
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</A> </center> |
<font size=+1>follow <a href="../getting_started/index.html" target="mainFrame">tutorial |
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examples</a> of the use of MITgcm in the study of atmospheric and oceanic |
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flows</font></li> |
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</body> |
<font size=+1><a href="../code_reference/index.html" target="mainFrame">browse |
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the hyperlinked code</a></font></li> |
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