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PC-SAFT状态方程计算HFO类工质的饱和热力学性质

陈志强 尹建国 赵贯甲 马素霞

高校化学工程学报2025,Vol.39Issue(5):823-832,10.
高校化学工程学报2025,Vol.39Issue(5):823-832,10.DOI:10.3969/j.issn.1003-9015.2025.05.005

PC-SAFT状态方程计算HFO类工质的饱和热力学性质

Saturation properties of HFO refrigerants by PC-SAFT equation of state

陈志强 1尹建国 1赵贯甲 1马素霞1

作者信息

  • 1. 太原理工大学 电气与动力工程学院,山西 太原 030024
  • 折叠

摘要

Abstract

The well-known molecular based Perturbed-Chain Statistical Associating Fluid Theory(PC-SAFT)equation of state,which is parametrized by the fitting of experimental saturated vapor pressure and saturated liquid density data,are expected to predict the saturated vapor density with low accuracy.In this study,the experimental data of saturated vapor density,as well as the vapor pressure and saturated liquid density data,were included in the parametrization method to meet the ultimate objective and various parameter models were also investigated.Four representative hydrofluoroolefin(HFO)refrigerants,i.e.,R1234yf、R1234ze(E)、R1234ze(Z)and R1243zf,were used to verify the performance of the new parametrization method and the temperature-dependent parameter models.The results revealed that higher accuracy could be obtained not only for saturated vapor density but also for all the saturated properties,though lower accuracy for vapor pressure were observed,when saturated vapor density data were added in the parametrization process.Higher accuracy for vapor pressure couldbe obtained with the expo-nential temperature-dependent parameter model when using the new parametrization method.The maximum and minimum average AARDs of the three saturated properties for four HFOs are 0.75%and 0.48%,respectively.The conclusions contribute to the development and improvement of the SAFT type equation of state.

关键词

PC-SAFT/状态方程/HFOs/饱和性质/参数化方法/参数模型

Key words

PC-SAFT/equation of state/HFOs/saturated property/parameterization method/parameter model

分类

能源与动力

引用本文复制引用

陈志强,尹建国,赵贯甲,马素霞..PC-SAFT状态方程计算HFO类工质的饱和热力学性质[J].高校化学工程学报,2025,39(5):823-832,10.

基金项目

山西省基础研究计划资助项目(202103021224078). (202103021224078)

高校化学工程学报

OA北大核心

1003-9015

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