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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Thermodynamic and transport properties of nitrogen fluid: Molecular theory and computer simulations
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Thermodynamic and transport properties of nitrogen fluid: Molecular theory and computer simulations

机译:氮气流体的热力学和运输性能:分子理论与计算机模拟

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Computer simulations and various theories are applied to compute the thermodynamic and transport properties of nitrogen fluid. To model the nitrogen interaction, an existing potential in the literature is modified to obtain a close agreement between the simulation results and experimental data for the orthobaric densities. We use the Generic van der Waals theory to calculate the mean free volume and apply the results within the modified Cohen-Turnbull relation to obtain the self-diffusion coefficient. Compared to experimental data, excellent results are obtained via computer simulations for the orthobaric densities, the vapor pressure, the equation of state, and the shear viscosity. We analyze the results of the theory and computer simulations for the various thermophysical properties. (C) 2018 Elsevier B.V. All rights reserved.
机译:应用计算机模拟和各种理论以计算氮气流体的热力学和运输性能。 为了模拟氮相互作用,修改文献中的现有潜力,以获得仿真结果与双骨密度的实验数据之间的密切一致。 我们使用通用范德瓦尔斯理论来计算平均自由体积,并在改进的Cohen-transbull关系内应用结果以获得自扩散系数。 与实验数据相比,通过计算机仿真获得优异的结果,用于双骨密度,蒸气压,状态方程和剪切粘度。 我们分析了各种热物理性质的理论和计算机模拟结果。 (c)2018 Elsevier B.v.保留所有权利。

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