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Nonlinear stability of Eady's model

Authors :
Mu, Mu
Shepherd, Theodore G.
Source :
Journal of the Atmospheric Sciences. Dec 1, 1994, Vol. 51 Issue 23, p3427, 10 p.
Publication Year :
1994

Abstract

A nonlinear stability theorem is established for Eady's model of baroclinic flow. In particular, the Eady basic state is shown to be nonlinearly stable (for arbitrary shear) provided [Delta]z/[Delta]y > 2[square root of 5]f/[Pi]N, where [Delta]z is the height of the domain, [Delta]y the channel width, f the Coriolis parameter, and N the buoyancy frequency. When this criterion is satisfied, explicit bounds can be derived on the disturbance potential enstrophy, the disturbance energy, and the disturbance available potential energy on the rigid lids, which are expressed in terms of the initial disturbance fields. The disturbances are completely general (with nonzero potential vorticity) and are not assumed to be of small amplitude. The results may be regarded as an extension of Arnol'd's second nonlinear stability theorem to continuously stratified quasigeostrophic baroclinic flow.

Details

ISSN :
00224928
Volume :
51
Issue :
23
Database :
Gale General OneFile
Journal :
Journal of the Atmospheric Sciences
Publication Type :
Academic Journal
Accession number :
edsgcl.16539132