Climate Modeling (Meteo 523)
Spring 1999 References

Piexoto, J. P., and A. H. Oort, 1992: Physics of Climate. American Institute of Physics, Woodbury, NY, 520pp.
Krishnamurti, T. N., H. S. Bedi and V. M. Hardiker, 1998: An Introduction to Global Spectral Modeling. Oxford University Press, New York, NY, 253pp.
Washington, W. M., and C. L. Parkinson, 1992: An Introduction to Three-Dimensional Climate Modeling. University Science Books, Mill Valley, CA., 422pp.
Trenberth, K. E., 1992: Climate System Modeling. Cambridge University Press, Cambridge, United Kingdom, 788pp.
Abramowitz, M., and I. A. Stegun, 1970: Handbook of mathematical functions. Dover Publications Inc., New York, NY, 1046pp.
Eliasen, E., B. Machenhauer and E. Rasmussen, 1970: On a Numerical Method for Integration of the Hydrodynamical Equations with a Spectral Representation of the Horizontal Fields. Report No. 2, Institute for Theoretical Meteorology, Copenhagen University, Copenhagen, Denmark, 35pp.
Gordon, C. T., and W. F. Stern, 1982: A Description of the GFDL Global Spectral Model. Mon. Wea. Rev., 110, 625-644.
Hack, J. J., and R. Jakob, 1992: Description of a Global Shallow Water Model Based on the Spectral Transform Method. NCAR Technical Note NCAR/TN-343+STR, Boulder, CO, 39pp.
Haltiner, G. J., and R. T. Williams, 1980: Numerical Prediction and Dynamic Meteorology. Second Edition, John Wiley and Sons, New York, NY, 477pp.
Orszag, S. A., 1970: Transform Method for Calculation of Vector-Coupled Sums: Application to the Spectral Form of the Vorticity Equation. J. Atmos. Sci., 27, 890-895.


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Last Updated: 5 March 1999