Thin liquid film resulting from a distributed source on a vertical wall

Y. Ruan, A. Nadim, M. Chugunova
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引用次数: 4

Abstract

We examine the dynamics of a thin film formed by a distributed liquid source on a vertical solid wall. The model is derived using the lubrication approximation and includes the effects of gravity, upward airflow and surface tension. When surface tension is neglected, a critical source strength is found below which the film flows entirely upward due to the airflow, and above which some of the flow is carried downward by gravity. In both cases, a steady state is established over the region where the finite source is located. Shock waves that propagate in both directions away from the source region are analyzed. Numerical simulations are included to validate the analytical results. For models including surface tension, numerical simulations are carried out. The presence of surface tension, even when small, causes a dramatic change in the film profiles and the speed and structure of the shock waves. These are studied in more detail by examining the traveling wave solutions away from the source region.
由分布在垂直壁上的源形成的液体薄膜
我们研究了由分布的液体源在垂直固体壁上形成的薄膜的动力学。该模型采用润滑近似推导,并考虑了重力、向上气流和表面张力的影响。当忽略表面张力时,发现了一个临界源强度,在此强度以下,薄膜由于气流完全向上流动,而在此强度以上,部分流动被重力向下携带。在这两种情况下,在有限源所在的区域上都建立了一个稳态。对远离震源区向两个方向传播的激波进行了分析。数值模拟验证了分析结果。对于包含表面张力的模型,进行了数值模拟。表面张力的存在,即使很小,也会引起薄膜轮廓、冲击波的速度和结构的巨大变化。通过检查远离源区的行波解,对这些问题进行了更详细的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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