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Peng-Robinson-based association equation of state for mixtures of hydrofluorocarbon refrigerants

机译:状态 的 基础 鹏 罗宾逊 关联 方程 烃致冷剂 的混合物

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The objective of this work was to extend to mixtures of hydrofluorocarbon refrigerants a recently developed Peng-Robinson plus association equation of state for those compounds. In that equation of state, two terms constituted the residual dimensionless Helmholtz energy: the first was a substance-specific dimensionless form of the conventional Peng-Robinson equation while the second was the association term from the Statistical Associating Fluid Theory. The extension to mixtures consisted of the conventional Peng-Robinson equation to mixtures, i.e. the expressing the mixture attractive parameter as a van der Waals one-fluid mixing rule with a binary interaction parameter at the unlike-interaction term. The systems of interest were the mixtures systems (HFC-32 + HFC-125), (HFC-32 + HFC-134a), (HFC-125 + HFC-134a), (HFC-125 + HFC-143a), (HFC-134a + HFC-143a), and (HFC-134a + HFC-152a); and the ternary systems (HFC-32 + HFC-125 + HFC-134a) and (HFC-125 + HFC-134a + HFC-143a). For the important number of 98000 data, the percentage overall average absolute deviations obtained were 1.44 in ppT; 53.9 in isochoric heat capacities, 34.8 in isobaric heat capacities, 0.183 in speeds of sound, and 1.27 in bubble-point vapour pressures; and an overall average absolute difference in second virial coefficients of 41.4 cm(3).mol(-1). Those results compared favourably with those obtained with the standard Pang-Robinson equation, with a substance-specific version of the Pang-Robinson equation, and with a cubic plus association equation. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项工作的目的是延伸到氢氟烃制冷剂的混合物最近开发的彭 - 罗宾逊Plus与这些化合物的状态的关联方程。在该状态方程中,两个术语构成了残余无量纲亥姆霍兹能量:第一是传统彭罗宾逊方程的特定于物质的无量纲形式,而第二种是来自统计关联流体理论的关联术语。混合的延伸由传统的彭罗宾逊方程组成,即混合,即表示混合的吸引力参数作为van der WaaS的一个流体混合规则,其与相互作用项不同。感兴趣的系统是混合物系统(HFC-32 + HFC-125),(HFC-32 + HFC-134A)(HFC-125 + HFC-134A),(HFC-125 + HFC-143A),(HFC -134A + HFC-143A),和(HFC-134A + HFC-152A);和三元系统(HFC-32 + HFC-125 + HFC-134A)和(HFC-125 + HFC-134A + HFC-143A)。对于98000数据的重要数量,PPT中获得的总体平均绝对偏差的百分比为1.44; 53.9在等因素热量中,34.8在同级热容量中,声音速度为0.183,气泡点蒸气压力为1.27;和整体平均水平绝对差异为41.4cm(3).mol(-1)。这些结果与用标准庞罗宾逊方程获得的那些相比,具有特定于庞罗宾逊方程的特定于物质的版本,以及立方加协会方程。 (c)2018 Elsevier B.v.保留所有权利。

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