Oscillations of liquid drops: results from USML-1 experiments in Space

Author:

Wang T. G.,Anilkumar A. V.,Lee C. P.

Abstract

Oscillations of low-viscosity drops were studied in the microgravity environment of a Space shuttle flight. From the damped oscillation data, the inviscid frequency shift, due to nonlinearity, has been extracted using a central-averaging scheme. For the classical case of the oscillations of a free low-viscosity drop, it has been found that the frequency shift agrees well with the predictions of the inviscid nonlinear theory of Tsamopoulos & Brown (1983) for ε < 0.3. But for the oscillations of a rotating low-viscosity drop, under acoustic levitation, the frequency shift is smaller, and the percentage of time spent in prolate displacement is significantly less than that for the classical case.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference26 articles.

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2. Anilkumar, A. V. , Lee, C. P. & Wang, T. G. 1993 Stability of an acoustically levitated and flattened drop: an experimental study.Phys. Fluids A5,2763–2774.

3. Basaran, O. A. 1992 Nonlinear oscillations of viscous liquid drops.J. Fluid Mech. 241,169–198.

4. Wang, T. G. , Anilkumar, A. V. , Lee, C. P. & Lin, K. C. 1994b Core-centering of compound drops in capillary oscillations: observations on USML-1 experiments in Space.J. Colloid Interface Sci. 165,19–30.

5. Patzek, T. W. , Benner, R. E. , Basaran, O. A. & Scriven, L. E. 1991 Nonlinear oscillations of inviscid free drops.J. Comput. Phys. 97,489–515.

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