On the stability of Kelvin waves

Author:

Melville W. K.,Tomasson G. G.,Renouard D. P.

Abstract

We consider the evolution of weakly nonlinear dispersive long waves in a rotating channel. The governing equations are derived and approximate solutions obtained for the initial data corresponding to a Kelvin wave. In consequence of the small nonlinear speed correction it is shown that weakly nonlinear Kelvin waves are unstable to a direct nonlinear resonance with the linear Poincaré modes of the channel. Numerical solutions of the governing equations are computed and found to give good agreement with the approximate analytical solutions. It is shown that the curvature of the wavefront and the decay of the leading wave amplitude along the channel are attributable to the Poincaré waves generated by the resonance. These results appear to give a qualitative explanation of the experimental results of Maxworthy (1983), and Renouard, Chabert d'Hières & Zhang (1987).

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference14 articles.

1. Renouard, D. P. , Chabert d'Hières, G. & Zhang, X. 1987 An experimental study of strongly nonlinear waves in a rotating system.J. Fluid Mech. 177,381–394.

2. Armi, L. & Farmer, D. 1984 The internal hydraulies of the Strait of Gibraltar and associated sills and narrows.Oceanol. Acta 8,37–46.

3. Gill, A. E. 1982 Atmosphere-Ocean Dynamics. Academic.

4. Whitham, G. B. 1974 Linear and nonlinear waves. Wiley.

5. Winther, R. 1985 Model equations for long, almost plane waves in nonlinear dispersive systems. Unpublished manuscript.

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