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Optimization study of heat pumps using refrigerant blends - Ejector versus expansion valve systems

机译:使用制冷剂混合的热泵优化研究 - 喷射器与膨胀阀系统

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This article investigates tap water heating systems to highlight an ongoing debate. Some report that CO2-based transcritical heat pumps with an ejector have the best coefficient of performance (COP), while others report that blend-based refrigerant systems (without an ejector) are better. In the literature, however, these systems are only compared with conventional heat pump designs, and not against each other, making it difficult to conclude which design is the best. In addition, the outcome of combining the two modifications has not been explored extensively. This article investigates the performance of heat pumps using mixtures of CO2 and propane, with and without an ejector or a suction gas heat exchanger. It presents a novel method for modeling blend-based heat pumps with an ejector using an optimization approach and a minimum allowed temperature pinch in heat exchangers. A sensitivity study explores how the heat pump performance depends on operating conditions, ejector efficiency and the refrigerant blend. The sensitivity studies allow for the comparison of the heat pump designs. For example, the results show that it is inefficient to use CO2 and propane blends in systems with an ejector. A blend-based system with a suction gas heat exchanger was found to outperform a CO2-based system with an ejector if either the tap water is above 25 degrees C, the ejector efficiency is below 0.17, or the temperature of the heat source is reduced with more than 10 K when flowing through the evaporator. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:本文调查了自来水加热系统,突出了持续的辩论。有些报告称,带有喷射器的二氧化碳基转换热泵具有最佳的性能系数(COP),而其他结果则报告混合的制冷剂系统(没有弹出器)更好。然而,在文献中,只有这些系统与传统的热泵设计相比,而不是相互互相进行比较,这使得难以结论哪种设计是最好的。此外,结合两种修改的结果尚未广泛探讨。本文研究了使用CO2和丙烷的混合物的热泵的性能,其中没有喷射器或吸入气体热交换器。它呈现了一种用于使用优化方法和热交换器中的最小允许温度夹紧的喷射器用喷射器建模混合的热泵的新方法。灵敏度研究探讨了热泵性能如何取决于操作条件,喷射器效率和制冷剂混合物。灵敏度研究允许比较热泵设计。例如,结果表明,在具有喷射器的系统中使用CO2和丙烷混合是低效的。发现基于混合物的系统具有吸气气体热交换器的系统,如果自来水高于25℃,则喷射器效率低于0.17,或者热源的温度降低了流过蒸发器时超过10 k。 (c)2019年Elsevier Ltd和IIR。版权所有。

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