Drag modifications for a sphere in a rotational motion at small, non-zero Reynolds and Taylor numbers: wake interference and possibly Coriolis effects

Author:

Davis A. M. J.

Abstract

Matched asymptotic expansion methods are used to establish governing equations of Oseen type for a tethered sphere that describes a circular path and a stationary sphere subjected to a rotating fluid in an ‘antisedimentation’ tube. The two cases are shown to be significantly different, in contrast to an earlier presentation (Davis & Brenner 1986), because only the latter is subject to the Coriolis force. The evaluation of the force and torque coefficients is much improved, enabling better comparisons to be made with the classical rectilinear trajectory result of Proudman & Pearson (1957).

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference11 articles.

1. Gradshteyn, I. S. & Ryzhik, I. M. 1980 Table of Integrals, Series, and Products (corrected and enlarged edition).Academic.

2. Dill, L. H. & Brenner, H. 1983 Taylor dispersion in systems of sedimenting nonspherical Brownian particles III. Time-periodic forces.J. Colloid Interface Sci. 94,430–450.

3. Davis, A. M. J. & Brenner, H. 1986 Steady rotation of a tethered sphere at small, non-zero Reynolds and Taylor numbers: wake interference effects on drag.J. Fluid Mech. 168,151–167.

4. Proudman, I. & Pearson, J. R. A. 1957 Expansions at small Reynolds number for the flow past a sphere and a circular cylinder.J. Fluid Mech. 2,237–262.

5. Herron, I. H. , Davis, S. H. & Bretherton, F. P. 1975 On the sedimentation of a sphere in a centrifuge.J. Fluid Mech. 68,209–234.

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