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首页> 外文期刊>The Journal of Chemical Physics >Thermodynamic and transport properties of carbon dioxide from molecular simulation
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Thermodynamic and transport properties of carbon dioxide from molecular simulation

机译:分子模拟中二氧化碳的热力学和传输性质

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Monte Carlo and molecular dynamics simulations have been used in order to test the ability of a three center intermolecular potential for carbon dioxide to reproduce literature experimental thermophysical values. In particular, both the shear viscosity under supercritical conditions and along the phase coexistence line, as well as the thermal conductivity under supercritical conditions, have been calculated. Together with the already reported excellent agreement for the phase coexistence densities, the authors find that the agreement with experimental values is, in general, good, except for the thermal conductivity at low density. Although extended versions of the model were employed, which include an explicit account of bending and vibrational degrees of freedom, a significant difference was still found with respect to the reported experimental value. (c) 2007 American Institute of Physics.
机译:为了测试二氧化碳的三个中心分子间电位复制文献实验热物理值的能力,使用了蒙特卡洛和分子动力学模拟。特别地,已经计算了在超临界条件下和沿着相共存线的剪切粘度,以及在超临界条件下的导热率。与已经报道的关于相共存密度的极好的协议一起,作者发现,除了低密度下的热导率之外,与实验值的协议通常是好的。尽管使用了模型的扩展版本,其中包括弯曲和振动自由度的明确说明,但是相对于报告的实验值仍然发现了显着差异。 (c)2007年美国物理研究所。

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