The observed motion of a sphere through a short, rotating cylinder of fluid

Author:

Maxworthy T.

Abstract

The drag on a sphere has been measured as it moves through a slightly viscous fluid contained in a rotating cylinder that is short compared to the length of ‘Taylor columns’ created by the sphere motion. These results suggest that only when inertia effects are very much smaller than both viscous and Coriolis forces are the results of Moore & Saffman (1968) approached. Flow field observations show qualitative agreement with many of the features described in their paper but differ sufficiently to warrant a further, fairly extensive discussion. These differences are characterized by a marked fore and aft asymmetry in the shear layer and boundary-layer flows for all values of the parameters covered by this study.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference8 articles.

1. Hide, R. & Titman, C. W. 1967 Detached shear layers in a rotating fluid J. Fluid Mech. 29,1.

2. Baker, J. 1966 A technique for the precise measurement of fluid flow in the range 0–5 cm/sec J. Fluid Mech. 26,3.

3. Benjamin, T. B. 1962 Theory of the vortex breakdown phenomenon.J. Fluid Mech. 14,4,593.

4. Bretherton, F. P. , Carrier, G. F. & Longuet-Higgins, M. S. 1966. Report on the I.U.T.A.M. symposium on rotating fluid systems,J. Fluid Mech. 26,2,393.

5. Maxworthy, T. 1967 The flow creating a concentration of vorticity over a stationary plate.JPL Space Programs Summary, no. 37–44,vol. IV.

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