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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Depinning of Drops on Inclined Smooth and Topographic Surfaces: Experimental and Lattice Boltzmann Model Study
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Depinning of Drops on Inclined Smooth and Topographic Surfaces: Experimental and Lattice Boltzmann Model Study

机译:倾斜的光滑表面和地形表面上的液滴的固定作用:实验和格子Boltzmann模型研究

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摘要

In this study, the dynamics of initially stationary liquid drops on smooth and topographic inclined silicon surfaces was investigated experimentally and by lattice Boltzmann simulations. The transient contact angles and the critical angle of inclination were measured systematically for different liquids, drop sizes, and surfaces having different wettability and surface roughness. In general, the critical angle of inclination is larger for hydrophilic than for hydrophobic surfaces, irrespective of the liquids, and increases with increasing contact angle hysteresis and decreasing drop sizes. A two-phase liquid-vapor lattice Boltzmann model based on the Shan and Chen approach was developed for two dimensions which incorporates the wetting and topographic characteristics of the surface. The simulation results matched the experimentally found features quantitatively and allowed one to explore the roll-off behavior even in cases that can hardly be accessed experimentally.
机译:在这项研究中,通过格子Boltzmann模拟实验研究了光滑和地形倾斜的硅表面上初始静止液滴的动力学。对于不同的液体,液滴尺寸以及具有不同润湿性和表面粗糙度的表面,系统地测量了瞬态接触角和倾斜临界角。通常,与液体无关,亲水性的临界临界角大于疏水性的表面,并且随着接触角滞后的增加和液滴尺寸的减小而增加。建立了基于Shan和Chen方法的两相液-气晶格Boltzmann模型,该模型在二维上结合了表面的润湿性和形貌特征。仿真结果定量地匹配了实验发现的特征,即使在很难通过实验访问的情况下,也可以探索滚降行为。

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