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The determination and matching analysis of pinch point temperature difference in evaporator and condenser of organic rankine cycle for mixed working fluid

机译:混合工质有机朗肯循环蒸发器和冷凝器夹点温差的确定与匹配分析

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Exergo-economic analysis of the pinch point temperature difference (PPTD) in both evaporator and condenser of sub-critical organic Rankine cycle system (ORCs) are performed based on the first and second laws of thermodynamics. Taking mixture R13I1/R601a as a working fluid and the annual total cost per net output power Z as exergo-economic performance evaluation criterion, the effects of PPTD in evaporator T-e, and the PPTD ratio of condenser to evaporator y, on the exergo-economic performance of ORCs are analyzed. Moreover, how some other parameters influence the optimal PPTD in evaporator T-e,T-opt and the optimal PPTD ratio of condenser to evaporator y(opt) are also discussed. It has been found that the exergo-economic performance of ORCs is remarkably influenced by T-e and y, and there exists T-e,T-opt and y(opt). In addition, T-e,T-opt and y(opt) are affected by heat transfer coefficient ratio of condenser to evaporator ss, the temperature of working fluid at dew point in condenser T-1a, and composition of R13I1/R601a: larger ss and T-1a lead to lower T-e,T-opt and y(opt); by contraries, larger mass fraction of R13I1 makes T-e,T-opt and y(opt) increase, and y(opt) increases linearly. The effects of the temperature of working fluid at bubble point in evaporator T-3a, mass flow rate of exhaust flue gas m(g), and inlet temperature of exhaust flue gas T-gi on T-e,T-opt and y(opt) are very slight. For comparison, three additional working fluids, namely R601a, R245fa, and 0.32R245fa/0.68R601a, are also taken into account.
机译:基于热力学的第一定律和第二定律,对亚临界有机朗肯循环系统(ORC)的蒸发器和冷凝器中的夹点温度差(PPTD)进行了能效经济分析。以混合物R13I1 / R601a为工作流体,以每年每净输出功率总成本Z为能效经济性能评估标准,蒸发器Te中PPTD的影响以及冷凝器与蒸发器y的PPTD比率对能效经济性的影响分析了ORC的性能。此外,还讨论了其他一些参数如何影响蒸发器T-e,T-opt的最佳PPTD以及冷凝器与蒸发器的最佳PPTD比率y(opt)。已经发现,ORC的能效-经济性能受T-e和y的显着影响,并且存在T-e,T-opt和y(opt)。此外,Te,T-opt和y(opt)受冷凝器与蒸发器的传热系数比ss,冷凝器T-1a中露点处的工作流体温度以及R13I1 / R601a的组成的影响:较大的ss和T-1a导致较低的Te,T-opt和y(opt);与之相反,R13I1的较大质量分数使T-e,T-opt和y(opt)增加,而y(opt)线性增加。蒸发器T-3a中气泡点的工作流体温度,废气的质量流量m(g)和废气的入口温度T-gi对Te,T-opt和y(opt)的影响很小为了进行比较,还考虑了另外三种工作流体,即R601a,R245fa和0.32R245fa / 0.68R601a。

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