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Linear stability analysis of an insoluble surfactant monolayer spreading on a thin liquid film

机译:不溶性表面活性剂单层铺展在液体薄膜上的线性稳定性分析

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摘要

Recent experiments by several groups have uncovered a novel fingering instability in the spreading of surface active material on a thin liquid film. The mechanism responsible for this instability is yet to be determined. In an effort to understand this phenomenon and isolate a possible mechanism, we have investigated the linear stability of a coupled set of equations describing the Marangoni spreading of a surfactant monolayer on a thin liquid support. The unperturbed flows, which exhibit simple linear behavior in the film thickness and surfactant concentration, are self-similar solutions of the first kind for spreading in a rectilinear geometry. The solution of the disturbance equations determines that the rectilinear base flows are linearly stable. An energy analysis reveals why these base flows can successfully heal perturbations of all wavenumbers. The details of this analysis suggest, however, a mechanism by which the spreading can be destabilized. We propose how the inclusion of additional forces acting on the surfactant coated spreading film might give rise to regions of adverse mobility gradients known to produce fingering instabilities in other fluid flows.
机译:几组人最近进行的实验发现,在表面活性材料在液体薄膜上的铺展中,存在一种新的指法不稳定性。造成这种不稳定的机制尚未确定。为了理解这种现象并找出可能的机理,我们研究了耦合方程组的线性稳定性,这些方程组描述了表面活性剂单层在稀薄液体载体上的Marangoni扩散。在膜厚和表面活性剂浓度上表现出简单线性行为的不受扰动的流动,是第一类自相似溶液,以直线几何分布。干扰方程的解确定直线基流是线性稳定的。能量分析揭示了为什么这些基流可以成功地治愈所有波数的扰动。但是,此分析的详细信息提示了一种传播不稳定的机制。我们提出,包括附加作用在表面活性剂涂覆的涂膜上的附加力如何可能引起不利的迁移率梯度区域,该区域已知会在其他流体流动中产生指状不稳定性。

著录项

  • 作者单位
  • 年度 1997
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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