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Transport Properties of Dumbbell Molecules by Equilibrium Molecular Dynamics Simulations

机译:平衡分子动力学模拟哑铃分子的传输性质

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We presents new results for transport properties of dumbbell fluids by equilibrium molecular dynamics (EMD) simulations using Green-Kubo and Einstein formulas.It is evident that the interaction between dumbbell molecules is less attractive than that between spherical molecules which leads to higher diffusion and to lower friction.The calculated viscosity,however,is almost independent on the molecular elongation within statistical error bar,which is contradicted to the Stokes' law.The calculated thermal conductivity increases and then decreases as molecular elongation increases.These results of viscosity and thermal conductivity for dumbbell molecules by EMD simulations are inconsistent with the earlier results of those by non-equilibrium molecular dynamics (NEMD) simulations.The possible limitation of the Green-Kubo and Einstein formulas with regard to the calculations of viscosity and thermal conductivity for molecular fluids such as the missing rotational degree of freedom is pointed out.
机译:我们通过使用Green-Kubo和Einstein公式进行的平衡分子动力学(EMD)模拟,提供了哑铃液传输特性的新结果。很显然,哑铃分子之间的相互作用不如球形分子之间的相互作用那么有吸引力,这导致了更高的扩散和较低的摩擦力。然而,计算出的粘度几乎与统计误差范围内的分子伸长率无关,这与斯托克斯定律相反。计算出的导热率随分子伸长率的增加而增加,然后降低。这些粘度和导热率的结果通过EMD模拟得到的哑铃分子与非平衡分子动力学(NEMD)模拟得到的早期结果不一致.Green-Kubo和Einstein公式在计算分子流体的粘度和导热率方面可能存在局限性指出缺少的旋转自由度出来。

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