Propagation of barotropic vortices over topography in a rotating tank

Author:

Carnevale G. F.,Kloosterziel R. C.,Van Heijst G. J. F.

Abstract

A small-scale cyclonic vortex in a relatively broad valley tends to climb up and out of the valley in a cyclonic spiral about the centre, and when over a relatively broad hill it tends to climb toward the top in an anticyclonic spiral around the peak. This phenomenon is examined here through two-dimensional numerical simulations and rotating-tank experiments. The basic mechanism involved is shown to be the same as that which accounts for the northwest propagation of cyclones on a β-plane. This inviscid nonlinear effect is also shown to be responsible for the observed translationary motion of barotropic vortices in a free-surface rotating tank. The behaviour of isolated vortices is contrasted with that of vortices with non-vanishing circulation.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference32 articles.

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2. Willoughby, H. E. 1988 Linear motion of a shallow-water, barotropic vortex.J. Atmos. Sci. 45, 1906–1928.

3. Firing, E. & Beardsley, R. C. 1976 The behavior of a barotropic eddy on a β-plane.J. Phys. Oceanogr. 6,57–65.

4. Mcwilliams, J. C. & Flierl, G. R. 1979 On the evolution of isolated, nonlinear vortices.J. Phys. Oceanogr. 9,1155–1182.

5. Kloosterziel. R. C. & Heijst, G. J. F. van 1991 An experimental study of unstable barotropic vortices in a rotating fluid.J. Fluid Mech. 223,1–24.

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