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Influence of Simulation Details on Thermodynamic and Transport Properties in Molecular Dynamics of Fully Flexible Molecular Models

机译:全柔性分子模型的分子动力学中模拟细节对热力学和输运性质的影响

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In this work, we examine the impact of details of molecular dynamics simulation and data analysis protocols on resulting thermodynamic and transport properties of interest in the study of lubricant components. Of particular importance is understanding how viscosity computed from the fluctuation-dissipation formalism is influenced by simulation details, including the differences obtained between employing an atomic vs. molecular formalism to describe the stress tensor, the impact of the size of timestep properties of interest helps us to establish simulation protocols for examining transport properties f low molecular weight isomers, where we hope to resolve differences in transport, properties as a function of fine structural features of the molecules.
机译:在这项工作中,我们研究了分子动力学模拟和数据分析协议的细节对所得的热力学和传输特性的影响,这些影响是润滑成分研究中感兴趣的。特别重要的是要了解如何通过波动耗散形式主义计算出的粘度会受到模拟细节的影响,包括使用原子形式主义与分子形式主义来描述应力张量之间的差异,所关注的时间步长属性的大小对我们的帮助建立模拟协议以检查低分子量异构体的传输性质,我们希望在其中解决传输差异的问题,这些差异是分子精细结构特征的函数。

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