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Tunable-slip boundaries for coarse-grained simulations of fluid flow

机译:可调滑移边界,用于流体流动的粗粒度模拟

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On the micro- and nanoscale, classical hydrodynamic boundary conditions such as the no-slip condition no longer apply. Instead, the flow profiles exhibit “slip“ at the surface, which is characterized by a finite slip length (partial slip). We present a new, systematic way of implementing partial-slip boundary conditions with arbitrary slip length in coarse-grained computer simulations. The main idea is to represent the complex microscopic interface structure by a spatially varying effective viscous force. An analytical equation for the resulting slip length can be derived for planar and for curved surfaces. The comparison with computer simulations of a DPD (dissipative particle dynamics) fluid shows that this expression is valid from full slip to no slip.
机译:在微米和纳米尺度上,经典的流体动力学边界条件(例如防滑条件)不再适用。取而代之的是,流量分布在表面表现出“滑移”,其特征在于滑移长度有限(部分滑移)。我们提出了一种在粗粒度计算机模拟中实现具有任意滑移长度的部分滑移边界条件的新的系统方法。主要思想是通过在空间上变化的有效粘性力来表示复杂的微观界面结构。可以得出平面和曲面的滑移长度的解析方程。与DPD(耗散粒子动力学)流体的计算机模拟的比较表明,该表达式从完整滑移到无滑移都是有效的。

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