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Thermodiffusion as a means to manipulate liquid film dynamics on chemically patterned surfaces

机译:热扩散作为一种手段来控制化学图案化表面上的液膜动力学

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摘要

The model problem examined here is the stability of a thin liquid film consisting of two miscible components, resting on a chemically patterned solid substrate and heated from below. In addition to surface tension gradients, the temperature variations also induce gradients in the concentration of the film by virtue of thermodiffusion/Soret effects. We study the stability and dewetting behaviour due to the coupled interplay between thermal gradients, Soret effects, long-range van der Waals forces, and wettability gradient-driven flows. Linear stability analysis is first employed to predict growth rates and the critical Marangoni number for chemically homogeneous surfaces. Then, nonlinear simulations are performed to unravel the interfacial dynamics and possible locations of the film rupture on chemically patterned substrates. Results suggest that appropriate tuning of the Soret parameter and its direction, in conjunction with either heating or cooling, can help manipulate the location and time scales of the film rupture. The Soret effect can either potentially aid or oppose film instability depending on whether the thermal and solutal contributions to flow are cooperative or opposed to each other.
机译:此处检查的模型问题是由两个可混溶成分组成的液体薄膜的稳定性,该液体薄膜位于化学图案化的固体基材上并从下方加热。除了表面张力梯度之外,温度变化还通过热扩散/索雷特效应引起薄膜浓度的梯度。我们研究了由于热梯度,索雷特效应,远距离范德华力和可湿性梯度驱动的流动之间的相互作用而引起的稳定性和去湿行为。线性稳定性分析首先用于预测化学均质表面的生长速率和临界Marangoni数。然后,执行非线性模拟以揭示化学图案化基材上的界面动力学和膜破裂的可能位置。结果表明,适当调节Soret参数及其方向,以及加热或冷却,都可以帮助控制膜破裂的位置和时间尺度。 Soret效应可以潜在地帮助或反对薄膜的不稳定性,具体取决于对流动的热和稀释作用是相互配合还是相反。

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