Finite-amplitude steady waves in plane viscous shear flows

Author:

Milinazzo F. A.,Saffman P. G.

Abstract

Computations of two-dimensional solutions of the Navier–Stokes equations are carried out for finite-amplitude waves on steady unidirectional flow. Several cases are considered. The numerical method employs pseudospectral techniques in the streamwise direction and finite differences on a stretched grid in the transverse direction, with matching to asymptotic solutions when unbounded. Earlier results for Poiseuille flow in a channel are re-obtained, except that attention is drawn to the dependence of the minimum Reynolds number on the physical constraint of constant flux or constant pressure gradient. Attempts to calculate waves in Couette flow by continuation in the velocity of a channel wall fail. The asymptotic suction boundary layer is shown to possess finite-amplitude waves at Reynolds numbers orders of magnitude less than the critical Reynolds number for linear instability. Waves in the Blasius boundary layer and unsteady Rayleigh profile are calculated by employing the artifice of adding a body force to cancel the spatial or temporal growth. The results are verified by comparison with perturbation analysis in the vicinity of the linear-instability critical Reynolds numbers.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference12 articles.

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3. Herbert, T. 1981 Stability of plane Poiseuille flow – theory and experiment.Fluid Dyn. Trans. 11,77–126.

4. Saffman, P. G. 1983 Vortices, stability and turbulence. InProc. 4th Intl Conf. Physico-Chemical Hydrodynamics (ed. R. Pfeffer );Ann. NY Acad. Sci. 404,12–24.

5. Hocking, L. M. 1975 Non-linear instability of the asymptotic suction velocity profile.Q. J. Mech. Appl. Maths 28,341–353.

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