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The Evaluation of the Equations of State Used for the Joule-Thomson Effect Analysis in the Dry Gas Seal

机译:干气封中焦耳 - 汤姆森效应分析的状态方程评价

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The Joule-Thomson (JT) effect will occur when the gas flows through the components of filters, valves, orifices and end faces in the system of the dry gas seal, which may cause the temperature of the seal gas to decrease, and even the emergence of liquid condensation. Generally, the Joule-Thomson effect is reflected by the Joule-Thomson coefficient. As to the hydrogen, nitrogen, carbon dioxide and air, which are often met in the dry gas seal, the corresponding Joule-Thomson (JT) coefficients were calculated by four classical equations of state (EOS) of VDW, RK, SRK and PR, which are compared with the experimental data in the literature. The results show that the JT coefficients calculated by RK equation are most close to the experimental data in the literature, whose relative error is lowest and less than 4%. When the JT effect of real gas in the dry gas seal is analyzed, the RK equation of state is recommend.
机译:当气体流过干气封系统中的过滤器,阀门,孔口和端面的部件时,将发生焦耳 - 汤姆森(JT)效果,这可能导致密封气体的温度降低,甚至是液体凝结的出现。通常,焦耳 - 汤姆森效应被焦耳 - 汤姆森系数反射。关于氢气,氮气,二氧化碳和空气经常在干燥气体密封中达到,相应的焦耳 - 汤姆森(JT)系数由VDW,RK,SRK和Pr的四种典型方程计算,与文献中的实验数据进行比较。结果表明,由RK方程计算的JT系数最接近文献中的实验数据,其相对误差最低,小于4%。当分析真实气体在干气密封中的JT效应时,建议国家的RK方程。

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