Baroclinic Adjustment and Dissipative Control of Storm Tracks

Author:

Novak Lenka1,Ambaum Maarten H. P.1,Harvey Ben J.1

Affiliation:

1. Department of Meteorology, University of Reading, Reading, United Kingdom

Abstract

Abstract The steady-state response of a midlatitude storm track to large-scale extratropical thermal forcing and eddy friction is investigated in a dry general circulation model with a zonally symmetric forcing. A two-way equilibration is found between the relative responses of the mean baroclinicity and baroclinic eddy intensity, whereby mean baroclinicity responds more strongly to eddy friction whereas eddy intensity responds more strongly to the thermal forcing of baroclinicity. These seemingly counterintuitive responses are reconciled using the steady state of a predator–prey relationship between baroclinicity and eddy intensity. This relationship provides additional support for the well-studied mechanism of baroclinic adjustment in Earth’s atmosphere, as well as providing a new mechanism whereby eddy dissipation controls the large-scale thermal structure of a baroclinically unstable atmosphere. It is argued that these two mechanisms of baroclinic adjustment and dissipative control should be used in tandem when considering storm-track equilibration.

Funder

Natural Environment Research Council

Publisher

American Meteorological Society

Subject

Atmospheric Science

Reference59 articles.

1. A nonlinear oscillator describing storm track variability;Ambaum;Quart. J. Roy. Meteor. Soc.,2014

2. A note on potential energy density in a stratified compressible fluid;Andrews;J. Fluid Mech.,1981

3. The driving of baroclinic anomalies at different timescales;Blanco-Fuentes;Geophys. Res. Lett.,2011

4. Cloud feedback mechanisms and their representation in global climate models;Ceppi;Wiley Interdiscip. Rev.: Climate Change,2017

5. Sensitivity of the latitude of the surface westerlies to surface friction;Chen;J. Atmos. Sci.,2007

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