The instability of the steady flow past spheres and disks

Author:

Natarajan Ramesh,Acrivos Andreas

Abstract

We consider the instability of the steady, axisymmetric base flow past a sphere, and a circular disk (oriented broadside-on to the incoming flow). Finite-element methods are used to compute the steady axisymmetric base flows, and to examine their linear instability to three-dimensional modal perturbations. The numerical results show that for the sphere and the circular disk, the first instability of the base flow is through a regular bifurcation, and the critical Reynolds number (based on the body radius) is 105 for the sphere, and 58.25 for the circular disk. In both cases, the unstable mode is non-axisymmetric with azimuthal wavenumber m = 1. These computational results are consistent with previous experimental observations (Magarvey & Bishop 1961 a, b; Nakamura 1976; Willmarth, Hawk & Harvey 1964).

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference27 articles.

1. Jackson, C. P. 1987 A finite-element study of the onset of vortex shedding in flow past variously shaped bodies.J. Fluid Mech. 182,23.

2. Kim, I. & Pearlstein, A. J. 1990 Stability of the flow past a sphere.J. Fluid Mech. 211,73.

3. Roos, F. W. & Willmarth, W. W. 1971 Some experimental results on sphere and disk drag.AIAA J. 9,285.

4. Taneda, S. 1956 Experimental investigation of the wake behind a sphere at low Reynolds numbers.J. Phys. Soc. Japan 11,1104.

5. Nakamura, I. 1976 Steady wake behind a sphere.Phys. Fluids 19,5.

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