A second approximation for the velocity of a large gas bubble rising in an infinite liquid

Author:

Collins R.

Abstract

A second approximation for the velocity of a large gas bubble in an infinite liquid is derived from a linear perturbation of the first approximation. Previously known experimental results are in excellent agreement with the resulting velocity, \[ U = 0.652(g\overline{a})^{\frac{1}{2}}, \] where $\overline{a}$ is the apparent radius of curvature of the front part of the bubble, and g the acceleration due to gravity. The shape of this second approximation is seen to be indistinguishable from spherical over a large region near the front stagnation point.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference11 articles.

1. Lamb, H. 1932 Hydrodynamics , 6th ed., p. 125 et seq.Cambridge University Press.

2. Rosenberg, B. 1950 David Taylor Model Basin, Rep. no. 727.

3. Hobson, E. W. 1931 Spherical and Ellipsoidal Harmonics , p. 17.Cambridge University Press.

4. Collins, R. 1965b J. Fluid Mech. 22,76.

5. Temperley, H. N. V. & Chambers, Ll. G. 1945 Reprinted in: Underwater Explosion Research, vol. 11, p. 437, Office of Naval Research (U.S.A.) 1950.

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