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Density-dependent finite system-size effects in equilibrium molecular dynamics estimation of shear viscosity: Hydrodynamic and configurational study

机译:剪切粘度平衡分子动力学估算中的密度依赖性有限系统尺寸效应:流体动力学和配置研究

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We study the intrinsic nature of the finite system-size effect in estimating shear viscosity of dilute and dense fluids within the framework of the Green-Kubo approach. From extensive molecular dynamics simulations, we observe that the size effect on shear viscosity is characterized by an oscillatory behavior with respect to system size L at high density and by a scaling behavior with an L-1 correction term at low density. Analysis of the potential contribution in the shear-stress autocorrelation function reveals that the former is configurational and is attributed to the inaccurate description of the long-range spatial correlations in finite systems. Observation of the long-time inverse-power decay in the kinetic contribution confirms its hydrodynamic nature. The L-1 correction term of shear viscosity is explained by the sensitive change in the long-time tail obtained from a finite system.
机译:我们研究了在绿色kubo方法框架内估算稀释和致密流体的剪切粘度的有限系统尺寸效应的内在性质。 从广泛的分子动力学模拟中,我们观察到对剪切粘度的尺寸效应是在高密度的高密度和通过低密度的L-1校正项的缩放行为方面的振荡行为。 分析剪切应力自相关函数的潜在贡献揭示了前者是配置的,并且归因于有限系统中的远程空间相关性的不准确描述。 观察动力学贡献中的长时间逆功率衰减证实了其流体动力学性质。 通过从有限系统获得的长时间尾部的敏感性变化来解释剪切粘度的L-1校正项。

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