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On the spectral equations and the statistical energy spectrum of atmospheric motions in the frequency domain1 Cover

On the spectral equations and the statistical energy spectrum of atmospheric motions in the frequency domain1

By:   
Open Access
|Jan 1970

Abstract

The kinetic energy spectral equations in the frequency domain was derived for the large-scale atmospheric motions. Some of the more important implications revealed by the spectral equations are: (1) the shape of the spectral density function ϕil (v), is controlled by the out-of-phase relationships among various meteorological variables; (2) the rotation of the earth has an explicit influence on ϕil (v) as well as on the average level of the atmospheric kinetic energy, and (3) an atmosphere that is efficient in spreading its kinetic energy among its various frequency components, so that there is no particular tendency for spectral peaks to form, should have a red-noise spectrum. A detailed discussion of these as well as of other implications is given in the text.

Language: English
Page range: 608 - 619
Submitted on: Jun 23, 1969
Accepted on: Sep 1, 1970
Published on: Jan 1, 1970
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 1970 Wan-Cheng Chiu, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.