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Parameterization of Mixed Layer Eddies. Part I: Theory and Diagnosis

Journal of Physical Oceanography · 2008 · Vol. 38(6) · pp. 1145–1165
Baylor Fox‐KemperRaffaele FerrariRobert Hallberg

Abstract

Abstract Ageostrophic baroclinic instabilities develop within the surface mixed layer of the ocean at horizontal fronts and efficiently restratify the upper ocean. In this paper a parameterization for the restratification driven by finite-amplitude baroclinic instabilities of the mixed layer is proposed in terms of an overturning streamfunction that tilts isopycnals from the vertical to the horizontal. The streamfunction is proportional to the product of the horizontal density gradient, the mixed layer depth squared, and the inertial period. Hence restratification proceeds faster at strong fronts in deep mixed layers with a weak latitude dependence. In this paper the parameterization is theoretically motivated, confirmed to perform well for a wide range of mixed layer depths, rotation rates, and vertical and horizontal stratifications. It is shown to be superior to alternative extant parameterizations of baroclinic instability for the problem of mixed layer restratification. Two companion papers discuss the numerical implementation and the climate impacts of this parameterization.

Oceanographic and Atmospheric ProcessesClimate variability and modelsMeteorological Phenomena and SimulationsBaroclinityMixed layerEddyGeologyBarotropic fluidFrontogenesisStream functionAmplitudeMechanicsPhysics

Funding

  • National Science Foundation
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References
Mixed Layer Instabilities and Restratification
Journal of Physical Oceanography · 2007 · 671 citations
Isopycnal Mixing in Ocean Circulation Models
Journal of Physical Oceanography · 1990 · 3,251 citations
Upper Ocean Response to a Hurricane
Journal of Physical Oceanography · 1981 · 1,305 citations
A finite‐volume, incompressible Navier Stokes model for studies of the ocean on parallel computers
Journal of Geophysical Research Atmospheres · 1997 · 2,717 citations
Parameterizing Eddy-Induced Tracer Transports in Ocean Circulation Models
Journal of Physical Oceanography · 1995 · 889 citations
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