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首页> 外文期刊>The Journal of Chemical Physics >Thermodynamic properties of supercritical n-m Lennard-Jones fluids and isochoric and isobaric heat capacity maxima and minima
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Thermodynamic properties of supercritical n-m Lennard-Jones fluids and isochoric and isobaric heat capacity maxima and minima

机译:超临界n-m Lennard-Jones流体的热力学性质以及等静压和等压热容的最大值和最小值

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摘要

Molecular dynamics simulations are reported for the thermodynamic properties of n-m Lennard-Jones fluids, where n = 10 and 12, and m = 5 and 6. Results are reported for the thermal expansion coefficient, isothermal and adiabatic compressibilities, isobaric and isochoric heat capacities, Joule-Thomson coefficient, and speed of sound at supercritical conditions covering a wide range of fluid densities. The thermodynamic criteria for maxima/minima in the isochoric and isobaric heat capacities are identified and the simulation results are also compared with calculations from Lennard-Jones equations of state. The Johnson [Mol. Phys. 78, 591 (1993)] equation of state can be used to reproduce all heat capacity phenomena reported [T. M. Yigzawe and R. J. Sadus, J. Chem. Phys. 138, 194502 (2013)] from molecular dynamics simulations for the 12-6 Lennard-Jones potential. Significantly, these calculations and molecular dynamics results for other n-m Lennard-Jones potentials support the existence of Cp minima at supercritical conditions. The values of n and m also have a significant influence on many other thermodynamic properties.
机译:分子动力学模拟报告了nm Lennard-Jones流体的热力学性质,其中n = 10和12,m = 5和6。结果报告了热膨胀系数,等温和绝热可压缩性,等压和等压热容量,焦耳-汤姆森系数和超临界条件下的声速涵盖了广泛的流体密度。确定了等静压和等压热容最大值/最小值的热力学标准,并将模拟结果与Lennard-Jones状态方程的计算结果进行了比较。约翰逊[分子。物理状态方程(78,591(1993))可用于重现报告的所有热容现象。 M.Yigzawe和R.J.Sadus,J.Chem。物理138,194502(2013)],从分子动力学模拟得出12-6 Lennard-Jones势。重要的是,这些计算结果和其他n-m Lennard-Jones势的分子动力学结果支持了超临界条件下Cp极小值的存在。 n和m的值也对许多其他热力学性质有重要影响。

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