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Combined effects of surface roughness and wetting characteristics on the moving contact line in microchannel flows

机译:表面粗糙度和润湿特性对微通道流动中移动接触线的综合影响

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摘要

The present study investigates moving contact lines in microfluidic confinements with rough topographies modeled with random generating functions. Using matched asymptotic expansion, the description of the whole contact line is obtained and the dynamic contact angle is extracted by extrapolating the bulk meniscus to the channel wall. Significant variations are observed in the contact angle because of the heterogeneities of the confining walls of the microfluidic channel. The effects of the surface wetting condition also play a crucial role in altering the description of the contact line bearing particular nontrivial interactions with the topological features of the solid boundaries. In an effort to assess the underlying consequences, two different surface wetting conditions are studied; namely, complete wetting substrate and partial wetting substrate. Our studies reveal that the consequent wetting characteristics are strongly influenced by action of intermolecular forces in presence of surface roughness. The effect of slip, correlation length, and roughness parameters on the dynamic contact angle have been also investigated.
机译:本研究调查了具有随机生成函数建模的粗糙地形的微流体约束中的移动接触线。使用匹配的渐近展开,可以获得整个接触线的描述,并通过将整体弯月面外推到通道壁来提取动态接触角。由于微流体通道的限制壁的异质性,在接触角上观察到了显着的变化。在改变接触线的描述时,表面润湿条件的影响也起着至关重要的作用,该接触线带有固体边界的拓扑特征,具有特定的非平凡的相互作用。为了评估潜在的后果,研究了两种不同的表面润湿条件。即,完全润湿的基材和部分润湿的基材。我们的研究表明,在存在表面粗糙度的情况下,分子间力的作用会严重影响随后的润湿特性。还研究了滑移,相关长度和粗糙度参数对动态接触角的影响。

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