The final approach to steady, viscous flow near a stagnation point following a change in free stream velocity

Author:

Kelly R. E

Abstract

The flow field near a stagnation point in two-dimensional, incompressible, viscous flow is considered to change with time in such a way that the inviscid flow is steady after some given finite instant of time. The final approach to steady flow throughout the field is shown to be characterized by exponential decay with time of perturbations from the steady velocity field. The characteristic factors in the exponents arise from the solution of an eigenvalue problem in ordinary linear differential equations.Similar behaviour exists for the axially symmetric case. A comparable analysis furnishes, however, a meaningless result in the case of a two-dimensional, semiinfinite flat plate which is moving in its own plane, normal to its leading edge.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference10 articles.

1. Stewartson, K. 1951 On the implusive motion of a flat plate in a viscous fluid.Quart. J. Mech. Appl. Math. 4,182.

2. Titchmarsh, E. C. 1946 Eigenfunction Expansions Associated with Second-Order Differential Equations .Oxford University Press.

3. Lam, S. H. & Rott, N. 1960 Theory of linearized time-dependent boundary layers.Cornell University Grad. School of Aero. Eng., AFORS Tech. Note-60-1100.

4. Moore, F. K. 1957 The unsteady laminar boundary layer of a wedge and a related three-dimensional problem. Heat Transfer and Fluid Mechanics Institute Preprints ,California Institute of Technology, 99.

5. Goldstein, S. & Rosenhead, L. 1936 Boundary-layer growth.Proc. Camb. Phil. Soc. 32,392.

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