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A Helmholtz Energy Equation of State for Calculating the Thermodynamic Properties of Fluid Mixtures

机译:用于计算流体混合物热力学性质的亥姆霍兹能量状态方程

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A new approach has been developed for calculating the properties of mixtures based on an equation of state explicit in reduced Helmholtz energy. This approach allows for the representation of the thermodynamic properties over a wide range of fluid states and is based on highly accurate equations of state for the pure components combined at the reduced temperature and density of the mixture. The reducing parameters used for temperature and density depend on composition. For simple mixtures (those that closely follow Raoult's law), a very accurate representation of all thermodynamic properties has been achieved with relatively simple functions. For nonideal mixtures, the reducing functions for density and temperature were modified, and a departure function was added to the equation of state. Generally, the model is able to represent liquid and vapor states with uncertainties of 0.1% in density, 1% in heat capacities and 1% in bubble point pressures if experimental data of comparable uncertainties exist. Two applications of the mixture model concepts were developed independently by the authors in the United States and Germany over the same time period. These applications include the development of individual equations for each binary system and a generalization of the model which is valid for a wide variety of mixtures. The individual approaches are presented with an explanation of the similarities and differences. Although the paper focuses mainly on binary systems, some results for ternary mixtures are also presented.
机译:已经开发出一种新的方法,用于基于降低的亥姆霍兹能量的状态方程来计算混合物的性能。该方法可以表示各种流体状态下的热力学性质,并且基于在降低的温度和混合物密度下结合的纯组分的高精度状态方程。用于温度和密度的还原参数取决于组成。对于简单的混合物(那些紧密遵循拉乌尔定律的混合物),已经通过相对简单的功能获得了所有热力学性质的非常精确的表示。对于非理想混合物,修改了密度和温度的折减函数,并将离差函数添加到状态方程中。通常,如果存在可比较不确定性的实验数据,则该模型能够以0.1%的密度,1%的热容和1%的泡点压力不确定性表示液体和蒸汽状态。混合模型概念的两个应用程序是由美国和德国的作者在同一时期独立开发的。这些应用包括为每个二元系统开发单独的方程式,以及对各种混合物有效的模型推广。介绍了各个方法,并说明了它们的异同。尽管本文主要关注二元系统,但也给出了三元混合物的一些结果。

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