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首页> 外文期刊>International Journal of Heat and Mass Transfer >Boundary conditions at the solid-liquid surface over the multiscale channel size from nanometer to micron
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Boundary conditions at the solid-liquid surface over the multiscale channel size from nanometer to micron

机译:从纳米到微米的多尺度通道尺寸上固液表面的边界条件

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摘要

The boundary condition at the solid surface is one of the important problems for the microfluidics. In this paper we study the effects of the channel sizes on the boundary conditions (BC), using the hybrid computation scheme adjoining the molecular dynamics (MD) simulations and the continuum fluid mechanics. We could reproduce the three types of boundary conditions (slip, no-slip and locking) over the multiscale channel sizes. The slip lengths are found to be mainly dependent on the interfacial parameters with the fixed apparent shear rate. The channel size has little effects on the slip lengths if the size is above a critical value within a couple of tens of molecular diameters. We explore the liquid particle distributions nearest the solid walls and found that the slip boundary condition always corresponds to the uniform liquid particle distributions parallel to the solid walls, while the no-slip or locking boundary conditions correspond to the ordered liquid structures close to the solid walls. The slip, no-slip and locking interfacial parameters yield the positive, zero and negative slip lengths respectively. The three types of boundary conditions existing in "microscale" still occur in "macroscale". However, the slip lengths weakly dependent on the channel sizes yield the real shear rates and the slip velocity relative to the solid wall traveling speed approaching those with the no-slip boundary condition when the channel size is larger than thousands of liquid molecular diameters for all of the three types of interfacial parameters, leading to the quasi-no-slip boundary conditions.
机译:固体表面的边界条件是微流体的重要问题之一。在本文中,我们结合分子动力学(MD)模拟和连续流体力学的混合计算方案,研究了通道尺寸对边界条件(BC)的影响。我们可以在多尺度通道大小上重现三种类型的边界条件(滑动,不滑动和锁定)。发现滑移长度主要取决于具有固定表观剪切速率的界面参数。如果通道尺寸在几十个分子直径内高于临界值,则对滑动长度几乎没有影响。我们探索了最接近固体壁的液体颗粒分布,发现滑移边界条件始终对应于平行于固体壁的均匀液体颗粒分布,而无滑移或锁定边界条件对应于靠近固体的有序液体结构墙壁。滑移,无滑移和锁定界面参数分别产生正滑移长度,零和负滑移长度。存在于“微尺度”中的三种边界条件仍然存在于“宏观尺度”中。然而,当通道尺寸大于数千个液体分子直径时,滑移长度弱依赖于通道尺寸会产生实际的剪切速率和相对于固体壁行进速度的滑移速度,接近于无滑移边界条件的滑移速度。三种类型的界面参数,导致准无滑移边界条件。

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