Fundamental equation of state for mixtures of nitrogen, oxygen, and argon based on molecular simulation data

Monika Thol, Sven Michael Pohl, Denis Saric, Roland Span, Jadran Vrabec
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Abstract

A fundamental equation of state in terms of the Helmholtz energy is presented for mixtures of nitrogen, oxygen, and argon at any composition. It is expressed in terms of the residual Helmholtz energy and can be used to calculate all thermodynamic equilibrium properties including vapor–liquid equilibria. The parameters of the equations for the pure-fluid and mixture contributions are fitted exclusively to molecular simulation data so that the model has a predictive character. The description of the mixture-specific reducing parameters is realized via generalized correlations of the critical parameters of the pure fluids so that an extension of the model to additional components can be implemented straightforwardly. Extensive comparisons to experimental data and the GERG-2008 reference equation of state show that the prediction of thermodynamic properties is satisfactory.
基于分子模拟数据的氮、氧和氩混合物基本状态方程
以亥姆霍兹能为基础,介绍了氮气、氧气和氩气混合物在任何成分下的基本状态方程。它以残余亥姆霍兹能表示,可用于计算包括汽液平衡在内的所有热力学平衡特性。纯流体和混合物贡献方程的参数完全与分子模拟数据相匹配,因此该模型具有预测性。对混合物特定还原参数的描述是通过纯流体临界参数的广义相关性实现的,因此可以直接将模型扩展到其他组分。与实验数据和 GERG-2008 参考状态方程的广泛比较表明,热力学性质的预测令人满意。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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