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作 者:孙维栋[1] 张鹏[1] 张昌[1] SUN Wei-Dong;ZHANG Peng;ZHANG Chang(Wuhan Textile University,Wuhan 430200,China)
机构地区:[1]武汉纺织大学,湖北武汉430200
出 处:《流体机械》2017年第8期78-83,共6页Fluid Machinery
摘 要:用PR方程结合vdW和HV混合法则建立了R1234yf/R134a的热物性模型,分析了混合物的气液相平衡特性曲线,发现R1234yf/R134a存在共沸点。当R1234yf/R134a的摩尔组分比为0.533/0.467,压力在400k Pa以上时,温度滑移最大约0.01K;当摩尔组分比为0.178/0.822,压力为200k Pa时,温度滑移最大为0.28K。根据余函数法导出了R1234yf/R134a的焓、熵计算式,可以用于R1234yf/R134a直接替代的工程研究。The thermophysical properties models of R1234yf/R134a were developed by using PR EOS with vdW mixing ruleand HV mixing rule,respectively.Curves on vapor-liquid equilibrium properties of the mixture were analyzed.It was found thatR1234yf/R134a existed azeotropic points.When the mole composition ratio of R1234yf/R134a was0.533/0.467and pressure wasabove400kPa,the maximum of temperature glide was about0.01K.The temperature glide was as high as0.28K at the pressure of200kPa and the mole composition ratio of0.178/0.822.Based on residual function method,the enthalpy and entropy calculationformulas of R1234yf/R134a were derived and could be used in the engineering research of R1234yf/R134a direct substitution.
关 键 词:R1234yf/R134a 摩尔组分比 热物性
分 类 号:TH12[机械工程—机械设计及理论]
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