Baroclinic instability of quasi-geostrophic flows localized in a thin layer

Author:

Benilov E. S.

Abstract

This paper examines the baroclinic instability of a quasi-geostrophic flow with vertical shear in a continuously stratified fluid. The flow and density stratification are both localized in a thin upper layer. (i) Disturbances whose wavelength is much smaller than the deformation radius (based on the depth of the upper layer) are demonstrated to satisfy an ‘equivalent two-layer model’ with properly chosen parameters. (ii) For disturbances whose wavelength is of the order of, or greater than, the deformation radius we derive a sufficient stability criterion. The above analysis is applied to the subtropical and subarctic frontal currents in the Northern Pacific. The effective time of growth of disturbances (i) is found to be 16–22 days, the characteristic spatial scale is 130–150 km.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference8 articles.

1. Pedlosky, J. 1987 Geophysical Fluid Dynamics .Springer.

2. Killworth, P. D. 1980 Barotropic and baroclinic instability in rotating stratified fluids.Dyn. Atmos. Oceans 4,143–184.

3. Benilov, E. S. 1995 Stability of large-amplitude geostrophic flows localized in a thin layer.J. Fluid Mech. 288,157–174.

4. Roden, G. I. 1975 On North Pacific temperature, salinity, sound velocity and density fronts and their relation to the wind and energy flux fields.J. Phys. Oceanogr. 5,557–571.

5. Benilov, E. S. & Reznik, G. M. 1995 The complete classification of large-amplitude geostrophic flows.Dyn. Atmos. Oceans (Submitted).

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