A MODIFIED CLAUSIUS EQUATION OF STATE FOR CALCULATION OF MULTICOMPONENT REFRIGERANT VAPOR-LIQUID-EQUILIBRIA

被引:9
作者
GOW, AS
机构
关键词
THEORY; EQUATION OF STATE; CUBIC; VAPOR LIQUID EQUILIBRIA; CRYOGENIC LIQUIDS; MODIFIED CLAUSIUS EQUATION;
D O I
10.1016/0378-3812(93)85066-U
中图分类号
O414.1 [热力学];
学科分类号
摘要
A modified Clausius equation of state with a single temperature dependent energy-volume parameter a(T) in the attractive term was designed to describe the vapor pressure vs. temperature relationship of 39 pure refrigerant fluids including elementary cryogenic materials (e.g. He, Ar, N2, CO2, CH4, etc.), chlorofluorocarbons (CFCs), hydrofluorocarbons (HFCs), hydrochlorofluorocarbons (HCFCs), fluorocarbons (FCs), and various other simple cryogenic compounds. The equation developed represents the vapor-liquid coexistence dome, and the superheated vapor compressibility factor and enthalpy for pure refrigerants. The vapor-liquid equilibrium for refrigerant mixtures is calculated using a ''phi-phi'' method with ''one fluid'' van der Waals mixing and combining rules for the equation of state parameters a(M)(T), b(M) and c(M). A single interaction constant k12 is used to describe non-ideal behavior of each binary. The binary interaction constant, which is a strong function of temperature, and the sign of which signifies the type of deviations from Raoult's law, is obtained by correlating experimental bubble point data for isothermal binary refrigerant mixtures. The proposed equation of state generally describes binary P-x,y data more accurately the higher the temperature for a given system. The method presented is extended to predict vapor-liquid equilibria for the R14-R23-R13 ternary system at 198.75 K using binary interaction constants at this temperature for the three binaries involved.
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页码:219 / 249
页数:31
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