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Running GCM physics and dynamics on different grids: algorithm and tests Cover

Running GCM physics and dynamics on different grids: algorithm and tests

By:   
Open Access
|Jan 2009

Abstract

An ‘alternate grid’ (GridAlt) technique is presented, which allows the different components of a general circulation model’s governing equations to be computed on distinct grids chosen for that component or process. In the implementation presented here, the tendencies of state variables from the physical parametrizations are computed on a vertical grid with very fine resolution near the surface, whereas the remaining terms in the equations of motion are computed using an Eta coordinate with coarser vertical resolution.

Results from a suite of aquaplanet experiments show that much of the benefit of increased vertical resolution in the whole model can be realized by enhancing the vertical resolution of the ‘physics grid’ using GridAlt. The benefit is realized in the fields which are computed directly in the physical parametrizations, and in the vertical structure of the relative humidity and mass streamfunction. Results from a suite of realistically configured simulations demonstrated an impact of GridAlt that was similar to its impact in the simplified simulations, as well as an improved response to El Ni˜no Southern Oscillation forcing. It is concluded that the present implementation of GridAlt offers a practical way to allow GCMs to better capture the near-surface structure of the atmosphere.

Language: English
Page range: 381 - 393
Submitted on: Nov 15, 2007
Accepted on: Jan 13, 2009
Published on: Jan 1, 2009
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2009 Andrea Molod, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.