Oscillatory flow in a stepped channel

Author:

Tutty O. R.,Pedley T. J.

Abstract

Two-dimensional, unsteady flow of a viscous, incompressible fluid in a stepped channel has been studied by the numerical solution of the Navier–Stokes equation using an accurate finite-difference method.With a sinusoidal mass flow rate, the problem has three governing parameters: the Reynolds number, the Strouhal number, and the step height. The effects on the flow of varying all three parameters has been investigated systematically. In appropriate parameter regimes, a strong ‘vortex wave’ is generated during the forward phase when the flow is over the step into the expansion. Secondary effects on the wave can result in a complex flow pattern with each major structure of the flow consisting of an eddy with more than one core. No such wave is found during the reverse phase of the flow. The generation and development of the wave is examined in some detail, and our results are compared and contrasted with those of previous studies, both experimental and theoretical, of flow in non-uniform vessels.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference17 articles.

1. Ghaddar, N. K. , Korczak, K. Z. , Mikic, B. B. & Patera, A. T. 1986a Numerical investigation of incompressible flow in grooved channels. Part 1. Stability and self-sustained oscillations.J. Fluid Mech. 163,99–127.

2. Tutty, O. R. & Pedley, T. J. 1992 Unsteady flow in a non-uniform channel: a model for wave generation . (In preparation.)

3. Ku, D. N. , Giddens, D. P. , Zarins, C. K. & Glagov, S. 1985a Pulsatile flow and atherosclerosis in the human carotid bifurcation: positive correlation between plaque location and low and oscillating shear stress.Arteriosclerosis 5,293–302.

4. Sridhar, K. P. & Davis, R. T. 1985 A Schwarz–Christoffel method for generating two-dimensional flow grids.Trans. ASME I:J. Fluids Engng 107,330–337.

5. Armaly, B. F. , Durst, F. , Pereira, J. C. F. & Schonung, B. 1983 Experimental and theoretical investigation of backward-facing step flow.J. Fluid Mech. 127,473–496.

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