Mixed Layer Instabilities and Restratification

Author:

Boccaletti Giulio1,Ferrari Raffaele1,Fox-Kemper Baylor1

Affiliation:

1. Massachusetts Institute of Technology, Cambridge, Massachusetts

Abstract

Abstract The restratification of the oceanic surface mixed layer that results from lateral gradients in the surface density field is studied. The lateral gradients are shown to be unstable to ageostrophic baroclinic instabilities and slump from the horizontal to the vertical. These instabilities, which are referred to as mixed layer instabilities (MLIs), differ from instabilities in the ocean interior because of the weak surface stratification. Spatial scales are O(1–10) km, and growth time scales are on the order of a day. Linear stability analysis and fully nonlinear simulations are used to study MLIs and their impact on mixed layer restratification. The main result is that MLIs are a leading-order process in the ML heat budget acting to constantly restratify the surface ocean. Climate and regional ocean models do not resolve the scales associated with MLIs and are likely to underestimate the rate of ML restratification and consequently suffer from a bias in sea surface temperatures and ML depths. In a forthcoming paper, the authors discuss a parameterization scheme to include the effect of MLIs in ocean models.

Publisher

American Meteorological Society

Subject

Oceanography

Reference60 articles.

1. Short-wavelength instabilities on coastal jets and fronts.;Barth;J. Geophys. Res.,1994

2. Free boundary effects in baroclinic instability.;Beron-Vera;J. Fluid Mech.,1997

3. On the behaviour of baroclinic waves undergoing horizontal deformation. II: Error-bound amplification and Rossby wave diagnostic.;Bishop;Quart. J. Roy. Meteor. Soc.,1993

4. On short-wave baroclinic instability.;Blumen;J. Atmos. Sci.,1979

5. The dynamics of long waves in a baroclinic westerly current.;Charney;J. Meteor.,1947

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