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View Resource Atmosphere-Ocean Modeling Exploiting Fluid Isomorphisms

We describe how mathematical isomorphisms between the equations that govern the evolution of a compressible atmosphere and an incompressible ocean can be exploited to guide the design of a...

http://paoc.mit.edu/paoc/papers/a_o_iso.pdf
View Resource Barotropic Ocean Gyre In Cartesian Coordinates

This example experiment demonstrates using the MITgcm to simulate a Barotropic, wind-forced, ocean gyre circulation. The experiment is a numerical rendition of the gyre circulation problem similar to...

http://mitgcm.org/sealion/online_documents/node97.html
View Resource Four Layer Baroclinic Ocean Gyre In Spherical Coordinates

This document describes an example experiment using MITgcm to simulate a baroclinic ocean gyre in spherical polar coordinates. The barotropic example experiment in section 3.8 illustrated how to...

http://mitgcm.org/sealion/online_documents/node101.html
View Resource Global Ocean Simulation at 4. Resolution

This example experiment demonstrates using the MITgcm to simulate the planetary ocean circulation. The simulation is configured with realistic geography and bathymetry on a $ 4^{\circ} \times...

http://mitgcm.org/sealion/online_documents/node107.html
View Resource Suspended Sediment

Transport of sediment and associated contaminants in streams is a water-quality issue of national concern. Of the nearly 600 x 107 tons of material eroded annually in the United States only about one...

http://water.usgs.gov/osw/suspended_sediment/
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EERL's mission is to be the best possible online collection of environmental and energy sustainability resources for community college educators and for their students. The resources are also available for practitioners and the public.

EERL & ATEEC
EERL is a product of a community college-based National Science Foundation Center, the Advanced Technology Environmental and Energy Center (ATEEC), and its partners.

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