Finite-amplitude instability of parallel shear flows

Author:

Reynolds W. C.,Potter Merle C.

Abstract

A formal expansion method for analysis of the non-linear development of an oblique wave in a parallel flow is presented. The present approach constitutes an extension and modification of the method of Stuart and Watson. Results are obtained for plane Poiseuille flow, and for a combination of plane Poiseuille and plane Couette flow. The Poiseuille flow exhibits finite-amplitude subcritical instability, and relatively weak but finite disturbances markedly reduce the critical Reynolds number. The combined flow, which becomes stable to infinitesimal disturbances at all Reynolds numbers when the Couette component is sufficiently great, remains unstable to finite disturbances.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference16 articles.

1. Stuart, J. T. 1961 On three-dimensional non-linear effects in the stability of parallel flows. Adv. Aero. Sci . 3–4,121.Pergamon Press.

2. Kaplan, R. E. 1964 Solution of Orr-Sommerfeld equation for laminar boundary layer flow over compliant boundaries. ASRL-TR-116-1,Cambridge Aeroelastic and Structures Research Lab. Report, Mass. Inst. Tech., June 1964 (STAR N64–29052).

3. Davey, A. 1902 J. Fluid Mech. 14,336.

4. Meksyn, D. & Stuart, J. T. 1951 Proc. Roy. Soc. A,208,517.

5. Lin, C. C. 1955 The Theory of Hydrodynamic Stability .Cambridge University Press.

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