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首页> 外文期刊>Fluid Phase Equilibria >Prediction of sound velocity and heat capacities of n-alkanes from the modified SAFT-BACK equation of state
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Prediction of sound velocity and heat capacities of n-alkanes from the modified SAFT-BACK equation of state

机译:从修正的SAFT-BACK状态方程预测正构烷烃的声速和热容

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摘要

Based on thermodynamic perturbation theory of Wertheim, statistical associating fluid theory (SAFT) has proven to be quite successful in the prediction of thermodynamic properties of polar and non-polar fluids. In this work, a new version of SAFT (modified SAFT BACK) equation of state has been developed to determine the speed of sound for some chain fluids (from C-1 to C-10) in the wide density and temperature ranges including critical temperature. We have also calculated the isobaric and isochoric heat capacities over the wide density and temperature ranges, including liquid and supercritical regions. Moreover, we have investigated the different microscopic contributions to the isochoric heat capacity. The ability of the modified SAFT BACK EOS to predict the speed of sound and heat capacities of chain fluids near and far from critical regions is discussed. (c) 2006 Elsevier B.V. All rights reserved.
机译:基于Wertheim的热力学扰动理论,统计缔合流体理论(SAFT)已被证明在预测极性和非极性流体的热力学性质方面非常成功。在这项工作中,已经开发了新版本的SAFT(改进的SAFT BACK)状态方程,以确定在较宽的密度和温度范围(包括临界温度)下某些链条流体(从C-1到C-10)的声速。 。我们还计算了包括液体和超临界区域在内的宽密度和温度范围内的等压和等容热容。此外,我们研究了等静热容的不同微观贡献。讨论了改进的SAFT BACK EOS预测接近和远离关键区域的链条流体的声和热容量速度的能力。 (c)2006 Elsevier B.V.保留所有权利。

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