Abstract
Oscillations of a nominally hemispherical, inviscid drop on a solid plate are considered accounting for the contact line dynamics. Hocking boundary conditions hold on the contact line: the velocity of the contact line is proportional to the deviation of the contact angle from its equilibrium value. Natural oscillations of a drop are studied, and both eigenfrequencies and damping ratios are determined for the axisymmetric modes. The linear oscillations caused by normal vibration of the substrate are considered. Well-pronounced resonant phenomena are revealed. The nonlinear oscillations of a drop are studied. © 2006 American Institute of Physics.
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Lyubimov, D. V., Lyubimova, T. P., & Shklyaev, S. V. (2006). Behavior of a drop on an oscillating solid plate. Physics of Fluids, 18(1). https://doi.org/10.1063/1.2137358
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