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首页> 外文期刊>The Journal of Chemical Physics >Departure of microscopic friction from macroscopic drag in molecular fluid dynamics
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Departure of microscopic friction from macroscopic drag in molecular fluid dynamics

机译:分子流体动力学中宏观拖动的显微摩擦偏离

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Friction coefficient of the Langevin equation and drag of spherical macroscopic objects in steady flow at low Reynolds numbers are usually regarded as equivalent. We show that the microscopic friction can be different from the macroscopic drag when the mass is taken into account for particles with comparable scale to the surrounding fluid molecules. We illustrate it numerically by molecular dynamics simulation of chloride ion in water. Friction variation by the atomistic mass effect beyond the Langevin regime can be of use in the drag reduction technology as well as the electro or thermophoresis. (C) 2016 Author(s).
机译:Langevin方程的摩擦系数和低雷诺数在低雷诺数的稳定流动中的球形宏观物体的拖动通常被认为是等同的。 我们表明,当考虑具有与周围流体分子的颗粒考虑粒子时,微观摩擦可以与宏观拖动不同。 我们通过水中氯离子的分子动力学模拟来数字地说明它。 通过超出Langevin制度之外的原子质量效应的摩擦变化可以用于减阻技术以及电泳或热电泳。 (c)2016年作者。

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