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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Faraday Instability in a Conjugated-Double-Liquid-Layer System

机译:APS-流体动力学APS部门第70届年会-事件-共轭双液层系统中的法拉第不稳定性

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摘要

The Faraday instability of two conjugated liquid layers of disparate thickness is investigated theoretically. Owing to the coupling effect, a unique instability mode is shared between the two layers. At the same time, caused by the disparity of the layer thicknesses, the top thick layer destabilizes with wavelengths at the same order of its own thickness, i.e. the short-wavelength mode (SW), while the bottom thin film exposes a long-wavelength (LW) mode. Different from cases where the two layers are both sufficiently thick, the deformation of the liquid-liquid interface in the present system is mainly induced by the viscous shearing effect. Because the inertial force is negligible in the bottom film, the potential Rayleigh-Taylor instability is rather weak even when the top layer has a higher density. The influence of the bottom film on the top layer can be characterized as a generalization of the classical Navier-slip boundary condition which lowers the instability threshold. Therefore, as the thickness of the bottom film becomes very small, the present system serves as a testing ground for the influence of the wall boundary condition on the onset of instabilities in liquid films.
机译:理论上研究了两个厚度不同的共轭液体层的法拉第不稳定性。由于耦合效应,在两个层之间共享唯一的不稳定性模式。同时,由于各层厚度的差异,最上层的厚层在波长与其自身厚度相同的数量级(即短波长模式(SW))下不稳定,而下层薄膜则暴露出长波长(LW)模式。与两层都足够厚的情况不同,本系统中液-液界面的变形主要是由粘性剪切作用引起的。由于在底膜中的惯性力可忽略不计,因此即使顶层具有较高的密度,潜在的瑞利-泰勒不稳定性也很弱。底膜对顶层的影响可以表征为降低不稳定性阈值的经典Navier滑移边界条件的概括。因此,当底膜的厚度变得非常小时,本系统用作壁边界条件对液体膜中不稳定性开始的影响的试验场。

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