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THE INFLUENCE OF EDDY VISCOSITY ON THE SUBTROPICAL PLANETARY-SCALE CIRCULATION IN SUMMER
引用本文:Huang Ronghui. THE INFLUENCE OF EDDY VISCOSITY ON THE SUBTROPICAL PLANETARY-SCALE CIRCULATION IN SUMMER[J]. , 1989, 3(2): 145-155
作者姓名:Huang Ronghui
作者单位:Institute of
摘    要:The influence of eddy viscosity on the distribution of subtropical quasi-stationary planetary waves in summeris analysed theoretically.It is found that since the basic flow is very weak,the eddy viscosity may play an impor-tant role for the subtropical planetary-scale motion in summer.A linear,quasi-geostrophic,34-level spherical coordinate model is also utilized to calculate the differencesof quasi-stationary planetary waves and of quasi-stationary disturbance pattern responding to forcing bytopography and heat sources under the different eddy viscosities.The computed results show that thecoefficient of eddy viscosity considerably influences the strength of the subtropical planetary-scale circulationin summer.

收稿时间:1988-05-23

THE INFLUENCE OF EDDY VISCOSITY ON THE SUBTROPICAL PLANETARY-SCALE CIRCULATION IN SUMMER
Huang Ronghui. THE INFLUENCE OF EDDY VISCOSITY ON THE SUBTROPICAL PLANETARY-SCALE CIRCULATION IN SUMMER[J]. Acta Meteorologica Sinica, 1989, 3(2): 145-155
Authors:Huang Ronghui
Affiliation:Institute of Atmospheric Physics, Academia Sinica, Beijing
Abstract:The influence of eddy viscosity on the distribution of subtropical quasi-stationary planetary waves in summer is analysed theoretically.It is found that since the basic flow is very weak,the eddy viscosity may play an important role for the subtropical planetary-scale motion in summer.A linear,quasi-geostrophic,34-level spherical coordinate model is also utilized to calculate the differences of quasi-stationary planetary waves and of quasi-stationary disturbance pattern responding to forcing by topography and heat sources under the different eddy viscosities.The computed results show that the coefficient of eddy viscosity considerably influences the strength of the subtropical planetary-scale circulation in summer.
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