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The effects of spherical geometry on baroclinic instabilityA baroclinic stability analysis is performed for a simple family of zonal shear profiles over a sphere, using a two-layer, quasi-geostrophic model. The stability properties and the structure of the most unstable waves are qualitatively similar to those on a beta-plane. However, the spherical geometry plays a major role in locating some of the important features of the most unstable waves. In particular, the locations of the maximum wave amplitude, maximum eddy heat fluxes, and maximum convergence of the eddy angular momentum flux are all well correlated with the location of the maximum excess of the vertical shear over the minimum value necessary for local instability on a sphere. Consequently the eddy momentum flux tends to generate a mid-latitude jet even if there is no preexisting mid-latitude jet in the basic state zonal flow. These findings suggest some of the elements needed for parameterizing the meridional variations of baroclinic eddy fluxes accurately.
Document ID
19760046388
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Moura, A. D.
(Massachusetts Inst. of Tech. Cambridge, MA, United States)
Stone, P. H.
(MIT Cambridge, Mass., United States)
Date Acquired
August 8, 2013
Publication Date
April 1, 1976
Publication Information
Publication: Journal of the Atmospheric Sciences
Volume: 33
Subject Category
Meteorology And Climatology
Accession Number
76A29354
Funding Number(s)
CONTRACT_GRANT: NGR-22-009-727
CONTRACT_GRANT: NSF GA-28724
Distribution Limits
Public
Copyright
Other

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