Comparison of Horizontal Difference Schemes for the Shallow Water Equations on a Sphere

Author:

Russell Gary L.1,Takano Kenji1,Abramopoulos Frank1

Affiliation:

1. NASA/Goddard Space Flight Center, Institute for Space Studies 2880 Broadway, New York, NY 10025, U.S.A.

Publisher

Meteorological Society of Japan

Subject

Atmospheric Science

Reference11 articles.

1. Arakawa, A., 1972: Design of the UCLA general circulation model. Numerical Simulation of Weather and Climate. Tech. Rept. No. 7. Dept. of Meteorology, UCLA, 116 pp.

2. — and V. R. Lamb, 1977: Computational design of the basic dynamical processes of the UCLA general circulation model. Methods in Computational Physics, Vol. 17, Academic Press, Inc., 337 pp.

3. — and —, 1981: A potential enstrophy and energy conserving scheme for the shallow water equations. Mon. Wea. Rev., 109, 18-36.

4. Holloway, J. L. Jr. and S. Manabe, 1971: Simulation of climate by a global circulation model: I. Hydrologic cycle and heat balance. Mon. Wea. Rev., 99, 335-270.

5. —, M. J. Spelman and S. Manabe, 1973: Latitude-longitude grid suitable for numerical time integration of a global atmospheric model. Mon. Wea. Rev., 101, 69-78.

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