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Influence of periodic wall roughness on the slip behaviour at liquid/solid interfaces: molecular-scale simulations versus continuum predictions

机译:周期性壁面粗糙度对液/固界面处滑移行为的影响:分子尺度模拟与连续体预测

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摘要

The influence of surface roughness on the slip behaviour of a Newtonian liquid in steady planar shear is investigated using three different approaches, namely Stokes flow calculations, molecular dynamics (MD) simulations and a statistical mechanical model for the friction coefficient between a corrugated wall and the first liquid layer. These approaches are used to probe the behaviour of the slip length as a function of the slope parameter ka = 2πa/λ, where a and λ represent the amplitude and wavelength characterizing the periodic corrugation of the bounding surface. The molecular and continuum approaches both confirm a monotonic decay in the slip length with increasing ka but the rate of decay as well as the magnitude of the slip length obtained from the Stokes flow solutions exceed the MD predictions as the wall feature sizes approach the liquid molecular dimensions. In the limit of molecular-scale wall corrugation, a Green–Kubo analysis based on the fluctuation–dissipation theorem accurately reproduces the MD results for the behaviour of the slip length as a function of a. In combination, these three approaches provide a detailed picture of the influence of periodic roughness on the slip length which spans multiple length scales ranging from molecular to macroscopic dimensions.
机译:使用斯托克斯流量计算,分子动力学(MD)模拟和波纹壁与壁之间摩擦系数的统计力学模型这三种不同的方法,研究了表面粗糙度对牛顿液体在稳态平面剪切中的滑动行为的影响。第一液体层。这些方法用于探测滑移长度随斜率参数ka =2πa/λ的变化,其中a和λ代表表征边界表面周期性波纹的振幅和波长。分子方法和连续方法都证实滑移长度随ka的增加而单调衰减,但是当壁特征尺寸接近液体分子时,从斯托克斯流解决方案获得的衰减率以及滑移长度的大小都超过了MD的预测。尺寸。在分子尺度壁波纹的极限中,基于涨落耗散定理的Green-Kubo分析可以准确地再现滑移长度随a的变化的MD结果。结合起来,这三种方法提供了周期性粗糙度对滑移长度的影响的详细描述,滑移长度跨越了从分子尺度到宏观尺度的多个长度尺度。

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