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INSTABILITY OF A GRAVITY-DRIVEN LIQUID FILM CONFINED IN AN INCLINED RECTANGULAR DUCT

机译:重力驱动的液体膜的不稳定性,限制在倾斜的矩形管道中

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摘要

This study deals with the confinement effects due to top and side walls on the stability of a falling liquid film flowing down an incline. To this aim, we consider a liquid film flowing between two infinite plates and in rectangular ducts in the presence of an adjacent gas phase, focusing on the case of zero net gas flow rate. A rigorous linear stability analysis is conducted for three gas-liquid systems of particular interest in applications. This enables us to demonstrate the effect of the gas-liquid density ratio and viscosity ratio in small channels/ducts and shallow downward inclinations. Although the analysis considers all wave numbers, the neutral stability boundary is found to be defined mainly by long-wave perturbations in the two-plate (TP) geometry, as well as in the rectangular ducts. The decrease of the channel height for the considered liquid-gas systems always stabilizes the liquid film. However, the Kapitza criterion for the onset of Kapitza waves on the surface of a falling liquid film can either overpredict or underpredict the stability limits of the channel/duct flows, depending on the channel height, its aspect ratio, and the viscosity and density ratios of the phases. The falling liquid film, bounded by the side walls, becomes unstable at larger flow rates with the decrease of the duct aspect ratio. The presence of recirculating gas in the channel/duct is found to affect the stability through the dynamic shear stress components at the gas-liquid interface. Therefore, its presence must be taken into account.
机译:这项研究涉及由于顶壁和侧壁对倾斜倾斜液膜的稳定性引起的限制效应。为此,我们考虑在存在相邻气相的情况下在两个无限板和矩形管中流动的液膜,重点是零净气流流量。对三个在应用中特别感兴趣的气流系统进行了严格的线性稳定性分析。这使我们能够证明在小通道/管道和浅下向下倾斜中,气液密度比和粘度比的影响。尽管分析考虑了所有波数,但发现中性稳定性边界主要是通过两板(TP)几何形状以及矩形管道中的长波扰动来定义的。被考虑的液态气体系统的通道高度降低始终稳定液膜。然而,在掉落液膜表面上kapitza波发作的Kapitza标准可以预测过度预测或低估了通道/导管流的稳定性限制,取决于通道的高度,其长宽比和粘度和密度比率,阶段。随着管道纵横比的降低,在较大的流速下以较大的流速下降的液体膜变得不稳定。发现通道/导管中循环气体的存在通过气体液体界面处的动态剪切应力分量影响稳定性。因此,必须考虑其存在。

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