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Non-equilibrium Molecular Dynamics Simulations of Thermal Transport Coefficients of Liquid Water

机译:液态水传热系数的非平衡分子动力学模拟

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In a recent paper we reported equilibrium (EMD) and non-equilibrium (NEMD) molecular dynamics simulations of liquid argon using the Green-Kubo relations and NEMD algorithms to calculate the thermal transport coefficients-the self-diffusion coefficient, shear viscosity, and thermal conductivity. The overall agreement with experimental data is quite good. In this paper the same technique is applied to calculate the thermal transport coefficients of liquid water at 298.15 K and 1 atm using TIP4P model for the interaction between water molecules. The EMD results show difficulty to apply the Green-Kubo relations since the time-correlation functions of liquid water are oscillating and not decaying rapidly enough except the velocity auto-correlation function. The NEMD results are found to be within approximately 【 30-40% error bars, which makes it possible to apply the NEMD technique to other molecular liquids.
机译:在最近的一篇论文中,我们报道了使用Green-Kubo关系和NEMD算法计算液氩的平衡(EMD)和非平衡(NEMD)分子动力学模拟,以计算热输运系数-自扩散系数,剪切粘度和热电导率。与实验数据的总体一致性很好。本文采用相同的技术,利用TIP4P模型计算水分子之间的相互作用,计算298.15 K和1 atm大气压下液态水的热传递系数。 EMD结果显示出应用Green-Kubo关系的困难,因为液态水的时间相关函数在振荡,并且除了速度自相关函数之外没有足够快地衰减。发现NEMD结果在大约30-40%的误差范围内,这使得NEMD技术可以应用于其他分子液体。

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