On the instability of a three-dimensional attachment-line boundary layer: weakly nonlinear theory and a numerical approach

Author:

Hall Philip,Malik Mujeeb R.

Abstract

The instability of a three-dimensional attachment-line boundary layer is considered in the nonlinear regime. Using weakly nonlinear theory, it is found that, apart from a small interval near the (linear) critical Reynolds number, finite-amplitude solutions bifurcate subcritically from the upper branch of the neutral curve. The time-dependent Navier–Stokes equations for the attachment-line flow have been solved using a Fourier–Chebyshev spectral method and the subcritical instability is found at wavenumbers that correspond to the upper branch. Both the theory and the numerical calculations show the existence of supercritical finite-amplitude (equilibrium) states near the lower branch which explains why the observed flow exhibits a preference for the lower branch modes. The effect of blowing and suction on nonlinear stability of the attachment-line boundary layer is also investigated.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference11 articles.

1. Hall, P. , Malik, M. R. & Poll, D. I. A. 1984 Proc. R. Soc. Lond. A395,229.

2. Moin, P. & Kim, J. 1982 J. Fluid Mech. 118,341.

3. Orszag, S. A. & Kells, L. C. 1980 J. Fluid Mech. 96,159.

4. Pfenninger, W. & Bacon, J. W. 1969 In Viscous Drag Reduction (ed. C. S. Wells ), p.85.Plenum Press.

5. Herbert, T. 1977 In Laminar—Turbulent Transition, AOARD Conf. Proc. No. 224, p.31.

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