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Thermodynamic Modeling of the Use of Alkane Mixtures as Working Fluids in Absorption Cycles

机译:烷烃混合物的热力学建模作为吸收循环中的工作流体

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The main objective is to show the effect of the choice of the most adequate combination of activity-fugacity coefficient models on the vapor-liquid phase equilibrium (VLE) data quality and on the calculation of the enthalpies of the different vapor and liquid streams in a refrigeration absorption machine. Six alkane binary mixtures, i.e. propane or n-butane as refrigerants and n-heptane, n-octane, or n-decane as absorbents, were considered as working fluids for their proven positive characteristics. Two activity coefficient models, UNIFAC and NRTL, and two equations of state, virial and Peng-Robinson (PR), were tested. The obtained results showed that the UNIFAC-PR combination reproduced the VLE data reasonably well; hence, it should be recommended for this type of refrigeration systems operating with alkanes.
机译:主要目的是展示选择最适当的活性 - 逃生系数模型对汽液相平衡(VLE)数据质量的效果以及在A中不同蒸气和液体流的计算的计算 制冷吸收机。 六烷烃二元混合物,即丙烷或正丁烷作为制冷剂和正庚烷,N-庚烷或N-癸烷作为吸收剂,被认为是其经过验证的阳性特征的工作流体。 测试了两种活动系数模型,UNIFAC和NRTL,以及状态,病毒和彭罗宾逊(PR)的两个方程。 所得结果表明,Unifac-Pr组合合理地再现了VLE数据; 因此,应该建议使用与烷烃操作的这种类型的制冷系统。

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