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The performance analysis of the transcritical Rankine cycle using carbon dioxide mixtures as the working fluids for waste heat recovery

机译:使用二氧化碳混合物作为废热回收工作流体的跨临界朗肯循环的性能分析

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The aim of this study is to investigate the economic performance improvement of a transcritical Rankine cycle system employing carbon dioxide mixtures for waste heat recovery. Five lower global-warming-potential working fluids, namely difluoromethane, fluoroethane, propane, tetrafluoroethane, and tetrafluoropropene, are selected to blend with carbon dioxide. In addition to thermodynamic analysis, the apparatus and maintenance costs of the waste heat recovery system are considered to evaluate the levelized energy cost for the economic performance study. The results indicate that the system cycled with carbon dioxide/fluoroethane exhibits the most effective economic performance, and is superior to that cycled with carbon dioxide/difluoromethane, carbon dioxide/tetrafluoropropene, carbon dioxide/tetrafluoroethane, carbon dioxide/propane, and pure carbon dioxide by 0.7, 13.89, 15.27, 20.88, and 21.52%, respectively. In the transcritical Rankine cycle operated with the carbon dioxide mixtures, not only are energy costs reduced, but the high pressure and temperature are also decreased. Furthermore, the optimal expander inlet pressures for the transcritical Rankine cycle with a minimal levelized energy cost are always smaller than those with maximal thermal efficiencies. Finally, economic performance correlations are proposed for the waste heat recovery system, utilizing various waste heat source temperatures.
机译:这项研究的目的是研究采用二氧化碳混合物进行余热回收的跨临界朗肯循环系统的经济性能改进。选择五种较低的全球升温潜能值工作液,即二氟甲烷,氟乙烷,丙烷,四氟乙烷和四氟丙烯,与二氧化碳混合。除了进行热力学分析外,还考虑了废热回收系统的设备和维护成本,以评估用于经济性能研究的平均能源成本。结果表明,使用二氧化碳/氟乙烷循环的系统表现出最有效的经济性能,并且优于使用二氧化碳/二氟甲烷,二氧化碳/四氟丙烯,二氧化碳/四氟乙烷,二氧化碳/丙烷和纯二氧化碳的系统分别增加0.7、13.89、15.27、20.88和21.52%。在用二氧化碳混合物运行的跨临界朗肯循环中,不仅降低了能源成本,而且还降低了高压和高温。此外,跨临界兰金循环的最佳膨胀机入口压力具有最小的均等化能源成本,始终小于具有最大热效率的最佳膨胀机入口压力。最后,提出了利用各种废热源温度的废热回收系统的经济性能相关性。

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