Low Reynolds numbers flow past an ellipsoid of revolution of large aspect ratio

Author:

Shi Yun-Yuan

Abstract

The results of Proudman & Pearson (1957) and Kaplun & Lagerstrom (1957) for a sphere and a cylinder are generalized to study an ellipsoid of revolution of large aspect ratio with its axis of revolution perpendicular to the uniform flow at infinity. The limiting case, where the Reynolds number based on the minor axis of the ellipsoid is small while the other Reynolds number based on the major axis is fixed, is studied. The following points are deduced: (1) although the body is three-dimensional the expansion is in inverse power of the logarithm of the Reynolds number as the case of a two-dimensional circular cylinder; (2) the existence of the ends and the variation of the diameter along the axis of revolution have no effect on the drag to the first order; (3) a formula for drag is obtained to higher order.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference12 articles.

1. Kaplun, S. & Lagerstrom, P. A. 1957 Asymptotic expansions of Navier-Stokes solutions for small Reynolds numbers.J. Math. Mech. 6,585–93.

2. Oseen, C. W. 1927 Neuere Method und Ergebnisse in der Hydrodynamic .Leipzig:Akad. Verlagsgesellschaft.

3. Shi, Y. Y. 1963 Low Reynolds number flow past finite cylinder of large aspect ratio. Ph.D. Thesis, Graduate Aeronautical Laboratories, California Institute of Technology, Pasadena, California.

4. Cole, J. D. & Roshko, A. 1954 Heat transfer from wires at Reynolds numbers in the Oseen range. Heat transf. & Fluid Mech. Inst.

5. Lagerstrom, P. A. & Cole, J. D. 1955 Examples illustrating expansion procedures for Navier-Stokes equations.J. Rat. Mech. 4,817–882.

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