The stability of a water drop oscillating with finite amplitude in an electric field

Author:

Brazier-Smith P. R.

Abstract

By assuming that an uncharged drop situated in a uniform electric fieldEretains a spheroidal shape while oscillating about its equilibrium configuration, two approximate equations of motion are derived for the deformation ratio γ expressed as the ratioa/bof the major and minor axis of the drop. Solutions of these equations of motion indicate that the stability of a drop of undistorted radiusRand surface tensionTdepends uponE(R/T)½and the initial displacement of γ from its equilibrium value. The predictions of the two equations are compared to assess the accuracy of the spheroidal assumption as applied to such a dynamical situation. The analysis is used to determine the stability criterion of a drop subject to a step function field. Finally, the limit of validity of the spheroidal assumption is discussed in terms of Rayleigh's criterion for the stability of charged spherical drops. By applying Rayleigh's criterion to the poles of a spheroidal drop, the stage at which the drop departs from spheroidal form to form conical jets was approximately determined.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference20 articles.

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2. Lamb, H. 1932 Hydrodynamics .Dover.

3. Chandrasekhar, S. 1969 Ellipsoidal Figures of Equilibrium .Yale University Press.

4. Rayleigh, Lord 1882 Phil. Mag. 14,184.

5. Jones, D. M. A. 1959 J. Meteorol. 16,504.

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