Title of article
Exchange of global mean angular momentum between an atmosphere and its underlying planet
Author/Authors
Zhu، نويسنده , , Xun and Strobel، نويسنده , , Darrell F. and Flasar، نويسنده , , Michael F.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
8
From page
1524
To page
1531
Abstract
This paper investigates the exchange of global mean angular momentum between an atmosphere and its underlying planet by a simple model. The model parameterizes four processes that are responsible for zonal mean momentum budget in the atmospheric boundary layer for a rotating planet: (i) meridional circulation that redistributes the relative angular momentum, (ii) horizontal diffusion that smoothes the prograde and retrograde winds, (iii) frictional drag that exchanges atmospheric angular momentum with the underlying planet, and (iv) internal redistribution of the zonal mean momentum by wave drag. It is shown that under a steady-state or a long-term average condition, the global relative angular momentum in the boundary layer vanishes unless there exists a preferred frictional drag for either the prograde or the retrograde zonal wind. We further show quantitatively that one cannot have either a predominant steady prograde or retrograde wind in the boundary layer of a planetary atmosphere. The parameter dependencies of the global relative angular momentum and the strength of the atmospheric circulation in the boundary layer are derived explicitly and used to explain the observational differences between the atmospheres of Earth and Venus.
Keywords
atmospheric dynamics , Meteorology , atmospheric boundary layer
Journal title
PLANETARY AND SPACE SCIENCE
Serial Year
2008
Journal title
PLANETARY AND SPACE SCIENCE
Record number
2313501
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