首页> 外文期刊>Chemical Engineering Science >THERMODYNAMIC PROPERTIES OF TERNARY FLUID MIXTURES FROM THE IMPROVED PERTURBATION THEORY AND VAN DER WAALS ONE-FLUID THEORY .1. MODEL MIXTURES
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THERMODYNAMIC PROPERTIES OF TERNARY FLUID MIXTURES FROM THE IMPROVED PERTURBATION THEORY AND VAN DER WAALS ONE-FLUID THEORY .1. MODEL MIXTURES

机译:改进的扰动理论和范德华一流体理论的三元混合物热力学性质1。模型混合

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In this paper, we present a first-order hard sphere perturbation theory of nonideal ternary fluid mixtures. Results are reported for total and excess thermodynamic properties of three ternary mixtures, in which size parameters of the mixture components are the same, but energy parameters differ significantly. Comparisons of theoretical predictions with accurate simulation results for mixture density, internal energy, excess Gibbs free energy, excess volume and excess enthalpy show the very good performance of perturbation theory. We have also checked the accuracy of van der Waals one-fluid theory, which uses an accurate equation of state for the pure fluids. Van der Waals one-fluid theory is successful in predicting excess properties of nearly ideal to moderately nonideal mixtures, but becomes less reliable when the mixtures become highly nonideal. In general, perturbation theory is very reliable in predicting thermodynamic properties of ternary mixtures, and is found to be more accurate than van der Waals one-fluid theory. Copyright (C) 1996 Elsevier Science Ltd [References: 27]
机译:在本文中,我们提出了非理想三元流体混合物的一阶硬球微扰理论。报告了三种三元混合物的总热力学性质和过量热力学性质的结果,其中混合物组分的尺寸参数相同,但能量参数差异很大。理论预测与混合物密度,内部能量,过量吉布斯自由能,过量体积和过量焓的精确模拟结果的比较表明,摄动理论具有很好的性能。我们还检查了范德华一流体理论的准确性,该理论对纯流体使用精确的状态方程。 Van der Waals一流体理论成功地预测了几乎理想到中等非理想混合物的过剩性能,但是当混合物变得高度非理想时,可靠性就降低了。通常,微扰理论在预测三元混合物的热力学性质方面非常可靠,并且比范德华一流体理论更准确。版权所有(C)1996 Elsevier Science Ltd [参考:27]

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