Nonlinear evolution of interacting oblique waves on two-dimensional shear layers

Author:

Goldstein M. E.,Choi S.-W.

Abstract

We consider the effects of critical-layer nonlinearity on spatially growing oblique instability waves on nominally two-dimensional shear layers between parallel streams. The analysis shows that three-dimensional effects cause nonlinearity to occur at much smaller amplitudes than it does in two-dimensional flows. The nonlinear instability wave amplitude is determined by an integro-differential equation with cubic-type nonlinearity. The numerical solutions to this equation are worked out and discussed in some detail. We show that they always end in a singularity at a finite downstream distance.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference17 articles.

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5. Goldstein, M. E. & Leib, S. J. 1988 Nonlinear roll-up of externally excited free shear layers.J. Fluid Mech. 191,481–515.

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