Logo image
Open Research University homepage
Surrey researchers Sign in
Euler equation on a fast rotating sphere-Time-averages and zonal flows
Journal article   Peer reviewed

Euler equation on a fast rotating sphere-Time-averages and zonal flows

Bin Cheng and Alex Mahalov
European journal of mechanics, B, Fluids, Vol.37, pp.48-58
01/01/2013

Abstract

Mechanics Physical Sciences Physics Physics, Fluids & Plasmas Science & Technology Technology
Motivated by recent studies in geophysical and planetary sciences, we investigate the PDE-analytical aspects of time-averages for barotropic, inviscid flows on a fast rotating sphere S-2. Of particular interest is the incompressible Euler equation. We prove that finite-time-averages of solutions stay close to a subspace of longitude-independent zonal flows. The initial data are unprepared and can be arbitrarily far away from this subspace. Our analytical study justifies the global Coriolis effect in the spherical geometry as the underlying mechanism of this phenomenon. We use Riemannian geometric tools including the Hodge theory in the proofs. (C) 2012 Elsevier Masson SAS. All rights reserved.

Metrics

Details

Logo image

Usage Policy