Barotropic Rossby Waves With Non-zonal Basic Flows, Topography and δ Effect

Author:

Zhang Hongxin1,Cao Hongxing2,Song Jian1

Affiliation:

1. College of Sciences, Inner Mongolia University of Technology, Hohhot, CHINA

2. Chinese Academy of Meteorological Sciences, Beijing,China

Abstract

Using the multi-scale method, the stability of barotropic Rossby waves with topography and δ effects have been studied in non-zonal basic flow. The influences of the non-zonal basic flows and topography and the parameter δ on the Rossby waves are discussed. The results show that the W-E oriented topography and the N-S oriented topography on the stability and phase speed of the Rossby waves are quite different; the effect of parameter δ is remarkable in the high latitude regions.

Publisher

World Scientific and Engineering Academy and Society (WSEAS)

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