Instability of an Interface Between Two Immiscible Fluids Under a Vertical Oscillation : Fluids Engineering

E. Hasegawa, F. Nagashima, H. Takashima
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引用次数: 1

Abstract

The instability of an interface between two immiscible fluids under an externally vertical oscillation is investigated by using a linear perturbation theory. Two incompressible viscous fluids under the action of gravity are assumed to be bounded by the upper and lower solid walls which are oscillated vertically. The neutral stability curves are found in the plane consisting of the angular frequency and the amplitude of the external oscillation. A critical amplitude of the external oscillation, below which any instability does not arise, is found from the neutral stability curve. The effects of the Reynolds number, the thickness ratio and the viscosity ratio on the critical amplitude are examined. The results obtained theoretically are confirmed experimentally by using two liquid layers consisting of a light oil and aqueous glycerine.
垂直振荡下两种非混相流体界面的不稳定性:流体工程
用线性摄动理论研究了两种不混相流体界面在垂直振动作用下的不稳定性。假设在重力作用下,两种不可压缩的粘性流体以上下垂直振荡的固体壁面为界。在由外部振荡的角频率和幅值组成的平面上找到了中性稳定性曲线。从中性稳定性曲线中可以找到外部振荡的临界幅值,低于此幅值不会产生任何不稳定性。考察了雷诺数、厚度比和粘度比对临界振幅的影响。用由轻质油和含水甘油组成的两层液体进行实验,证实了理论所得的结果。
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