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Bulk viscosity of the Lennard-Jones system at the triple point by dynamical nonequilibrium molecular dynamics

机译:动力学动态非平衡分子动力学在三重点下的Lennard-Jones体系的本体粘度

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摘要

Nonequilibrium molecular dynamics (NEMD) calculations of the bulk viscosity of the triple point Lennard-Jones fluid are performed with the aim of investigating the origin of the observed disagreement between Green-Kubo estimates and previous NEMD data. We show that a careful application of the Doll's perturbation field, the dynamical NEMD method, the instantaneous form of the perturbation and the "subtraction technique" provides a NEMD estimate of the bulk viscosity at zero field in full agreement with the value obtained by the Green-Kubo formula. As previously reported for the shear viscosity, we find that the bulk viscosity exhibits a large linear regime with the field intensity.
机译:进行三点Lennard-Jones流体的体粘度的非平衡分子动力学(NEMD)计算是为了研究Green-Kubo估计值与先前NEMD数据之间观察到的分歧的起源。我们表明,仔细应用Doll的摄动场,动态NEMD方法,摄动的瞬时形式和“减法”可提供零场处的体粘度的NEMD估计值,与格林所获得的值完全一致-久保公式。如先前关于剪切粘度的报道,我们发现本体粘度随场强表现出大的线性范围。

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