On parametric instabilities of finite-amplitude internal gravity waves

Author:

Klostermeyer J.

Abstract

The equations describing parametric instabilities of a finite-amplitude internal gravity wave in an inviscid Boussinesq fluid are studied numerically. By improving the numerical approach, discarding the concept of spurious roots and considering the whole range of directions of the Floquet vector, Mied's work is generalized to its full complexity. In the limit of large disturbance wavenumbers, the unstable disturbances propagate in the directions of the two infinite curve segments of the related resonant-interaction diagram. They can therefore be classified into two families which are characterized by special propagation directions. At high wavenumbers the maximum growth rates converge to limits which do not depend on the direction of the Floquet vector. The limits are different for both families; the disturbance waves propagating at the smaller angle to the basic gravity wave grow at the larger rate.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference12 articles.

1. Phillips, O. M. 1969 The Dynamics of the Upper Ocean .Cambridge University Press.

2. Mied, R. P. 1978 The instabilities of finite-amplitude barotropic Rossby waves.J. Fluid Mech. 86,225–246.

3. Hasselmann, K. 1967 A criterion for nonlinear wave stability.J. Fluid Mech. 30,737–739.

4. Gill, A. E. 1974 The stability of planetary waves on an infinite beta-plane.Geophys. Fluid Dyn. 6,29–47.

5. Smith, B. T. , Boyle, J. M. , Dongarra, J. J. , Garbow, B. S. , Ikebe, Y. , Klema, V. C. & Moler, C. B. 1976 Matrix Eigensystem Routines-EISPACK Guide .Springer.

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