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首页> 外文期刊>International Journal of Thermophysics >Helmholtz-Type Equations of State for Hydrocarbon Refrigerant Mixtures of Propane-Butane, Propane/Isobutane, n-Butane/Isobutane, and Propane-Butane/Isobutane
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Helmholtz-Type Equations of State for Hydrocarbon Refrigerant Mixtures of Propane-Butane, Propane/Isobutane, n-Butane/Isobutane, and Propane-Butane/Isobutane

机译:丙烷/正丁烷,丙烷/异丁烷,正丁烷/异丁烷和丙烷/正丁烷/异丁烷的烃制冷剂混合物的亥姆霍兹型状态方程

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摘要

Highly accurate thermodynamic property models for binary and ternary hydrocarbon mixtures containing propane, n-butane, and isobutane have been developed. In the present model, reliable equations of state explicit in Helmholtz free energy for these three hydrocarbons that have already been developed by the present authors have been adapted. The excess term used to represent the contribution of mixing was optimized for each binary mixture by using the available experimental thermodynamic property data including PρTx, isochoric heat capacity, and saturation properties (bubble-point pressures, mole fractions in the vapor phase, and saturated vapor- and liquid-densities) as input data. A generalized correction for the three binary mixtures, besides the ideal mixing, consists of only four terms in its functional form, the structure of which was determined by simultaneous optimization to the input data for the three binary mixtures by employing a stepwise regression analysis. The “bank of terms,” that is a matrix of candidate terms applied for the regression, was carefully prepared through detailed observation of the nonideal mixing representation of the experimental data of the three binary mixtures. No additional adjustable parameters were used in the present model for the ternary propane-butane/isobutane mixture. Based on comparisons with the available experimental data and values from the developed equations of state, the present models for the three binary and the ternary hydrocarbon mixtures accurately represent most of the reliable experimental data. In addition, the graphical tests of the derived thermodynamic properties show that the models, including that for the ternary mixture, provide a physically sound representation of all the thermodynamic properties over the entire fluid phase.
机译:对于包含丙烷,正丁烷和异丁烷的二元和三元烃混合物,已开发出高精度的热力学性质模型。在本模型中,对本作者已经开发的这三种烃的亥姆霍兹自由能中明确的可靠状态方程进行了调整。通过使用可用的实验热力学性质数据,包括PρTx,等容热容和饱和性质(泡点压力,气相中的摩尔分数和饱和蒸气),针对每种二元混合物优化了用于表示混合作用的多余项。 -和液体密度)作为输入数据。除理想混合外,对三种二元混合物的广义校正仅包含四个功能形式的项,通过逐步回归分析同时优化三种二元混合物的输入数据来确定其结构。通过详细观察三种二元混合物的实验数据的非理想混合表示,精​​心准备了“术语库”,该术语库是用于回归的候选术语的矩阵。在本模型中,对于三元丙烷/正丁烷/异丁烷混合物,没有使用其他可调参数。基于与可用的实验数据和已开发的状态方程的值进行比较的结果,当前的三种二元和三元烃混合物模型准确地代表了大多数可靠的实验数据。另外,对导出的热力学性质的图形测试表明,包括三元混合物的模型在内的模型,在整个流体相中都提供了所有热力学性质的物理表示。

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