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Performance characteristics of low global warming potential R134a alternative refrigerants in ejector-expansion refrigeration system

机译:低全球升温潜能值R134a替代制冷剂在喷射器-膨胀制冷系统中的性能特征

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Performance assessment of ejector-expansion vapor compression refrigeration system with eco-friendly R134a alternative refrigerants (R152a, R1234yf, R600a, R600, R290, R161, R32, and propylene) is presented for air-conditioning application. Ejector has been modeled by considering experimental data based correlations of component efficiencies to take care of all irreversibilities. Ejector area ratio has been optimized based on maximum coefficient of performance (COP) for typical air-conditioner operating temperatures. Selected refrigerants have been compared based on area ratio, pressure lift ratio, entrainment ratio, COP, COP improvement and volumetric cooling capacity. Effects of normal boiling point and critical point on the performances have been studied as well. Using ejector as an expansion device, maximum improvement in COP is noted in R1234yf (10.1%), which reduces the COP deviation with R134a (4.5% less in basic cycle and 2.5% less in ejector cycle). Hence, R1234yf seems to be best alternative for ejector expansion system due to its mild flammability and comparable volumetric capacity and cooling COP. refrigerant R161 is superior to R134a in terms of both COP and volumetric cooling capacity, although may be restricted for low capacity application due to its flammability.
机译:提出了具有环保R134a替代制冷剂(R152a,R1234yf,R600a,R600,R290,R161,R32和丙烯)的喷射器-膨胀蒸汽压缩制冷系统的性能评估,用于空调应用。通过考虑基于实验数据的组件效率相关性对喷射器进行建模,以解决所有不可逆性。基于典型空调工作温度的最大性能系数(COP),优化了喷射器面积比。根据面积比,升压比,夹带比,COP,COP改进和容积冷却能力对所选制冷剂进行了比较。还研究了正常沸点和临界点对性能的影响。使用喷射器作为扩展设备时,R1234yf(10.1%)注意到COP的最大改进,它通过R134a减小了COP偏差(基本循环减少4.5%,喷射器循环减少2.5%)。因此,R1234yf似乎是喷射器膨胀系统的最佳替代品,因为它具有轻度的易燃性,相当的容积和冷却COP。尽管制冷剂R161的可燃性可能会限制其用于低容量应用,但在COP和制冷量方面都优于R134a。

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