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Electrorheological Rayleigh-Taylor Instability at the Interface between a Porous Layer and Thin Shell with Poorly Conducting Couple Stress Fluid

机译:具有导电性差的应力流体的多孔层与薄壳界面处的电流变Rayleigh-Taylor不稳定性

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摘要

This paper is concerned with the study of the Electrorheological Rayleigh-Taylor instability (ERTI) at the interface between a densely packed saturated poorly conducting couple stress porous layer accelerated by a lighter poorly conducting couple stress fluid in a thin shell in the presence of a transverse electric field and laser radiation. A simple theory based on fully developed flow approximations is used to derive the dispersion relation for the growth rate of ERTI. The cutoff and the maximum wave numbers and the corresponding maximum frequencies are obtained. It is shown that the effects of couple stress parameter and the electric field reduce the growth rate considerably compared to a non-conducting fluid in the absence of an electric field. These are favorable to control the surface instabilities in many practical applications discussed in this paper.
机译:本文涉及在横向存在的情况下,在薄壳中由较轻的弱导电耦合应力流体加速的致密堆积的饱和弱导电耦合应力多孔层之间的界面处的电流变瑞利泰勒不稳定性(ERTI)的研究。电场和激光辐射。使用基于充分发展的流量近似的简单理论来得出ERTI增长率的色散关系。获得截止和最大波数以及相应的最大频率。结果表明,与不存在电场的非导电流体相比,耦合应力参数和电场的影响大大降低了增长率。这些有利于控制本文讨论的许多实际应用中的表面不稳定性。

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