A RESONANT GRAVITY-DRIVEN FLOW OF A POWER-LAW FLUID OVER A SLIPPERY TOPOGRAPHY SUBSTRATE

S. Selim
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Abstract

The gravity-driven flow of a power-law fluid over a slippery topography substrate is studied. The fluid flow, due to the gravity, is assumed to be steady and confined to the limit of small amplitude of the wall corrugation. As an analytic approach, we apply the Karman– Pohlhausen integral boundary-layer method and derive an asymptotic equation valid for rather thin films. Our results support the view that the resonance is associated with an interaction of the undulated film with capillary-gravity waves travelling against the mean flow direction in the linear case. The influence of the slip condition on the linear resonance phenomena for different power-law indices n is the main factor in this work.
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幂律流体在光滑地形基板上由重力驱动的共振流动
研究了幂律流体在光滑地形基底上的重力驱动流动。由于重力作用,假定流体的流动是稳定的,并且被限制在壁面波纹的小振幅极限内。作为一种解析方法,我们应用Karman - Pohlhausen积分边界层方法,导出了一个对相当薄的薄膜有效的渐近方程。我们的结果支持这样一种观点,即共振与波动膜与沿平均流动方向行进的毛细管重力波在线性情况下的相互作用有关。滑移条件对不同幂律指数n下线性共振现象的影响是本文研究的主要因素。
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