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contributor authorHoussam Yassin
contributor authorStephen M. Griffies
date accessioned2023-04-12T18:37:17Z
date available2023-04-12T18:37:17Z
date copyright2022/11/09
date issued2022
identifier otherJPO-D-22-0040.1.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4289973
description abstractNumerical and observational evidence indicates that, in regions where mixed layer instability is active, the surface geostrophic velocity is largely induced by surface buoyancy anomalies. Yet, in these regions, the observed surface kinetic energy spectrum is steeper than predicted by uniformly stratified surface quasigeostrophic theory. By generalizing surface quasigeostrophic theory to account for variable stratification, we show that surface buoyancy anomalies can generate a variety of dynamical regimes depending on the stratification’s vertical structure. Buoyancy anomalies generate longer-range velocity fields over decreasing stratification and shorter-range velocity fields over increasing stratification. As a result, the surface kinetic energy spectrum is steeper over decreasing stratification than over increasing stratification. An exception occurs if the near-surface stratification is much larger than the deep-ocean stratification. In this case, we find an extremely local turbulent regime with surface buoyancy homogenization and a steep surface kinetic energy spectrum, similar to equivalent barotropic turbulence. By applying the variable stratification theory to the wintertime North Atlantic, and assuming that mixed layer instability acts as a narrowband small-scale surface buoyancy forcing, we obtain a predicted surface kinetic energy spectrum between
publisherAmerican Meteorological Society
titleSurface Quasigeostrophic Turbulence in Variable Stratification
typeJournal Paper
journal volume52
journal issue12
journal titleJournal of Physical Oceanography
identifier doi10.1175/JPO-D-22-0040.1
journal fristpage2995
journal lastpage3013
page2995–3013
treeJournal of Physical Oceanography:;2022:;volume( 052 ):;issue: 012
contenttypeFulltext


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