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Performance Measurement of R32 in Vapor Injection Heat Pump System

机译:R32在蒸汽喷射热泵系统中的性能测量

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As global warming has raised more critical concerns in recent years, refrigerants with high global warming potentials (GWP) are facing the challenges of being phased out. R410A, with a GWP of 2,088, has been widely used in residential air-conditioning and heat pump systems. A potential substitute for R410A is R32, which has a GWP of 675. This paper investigates the performance difference of R410A and R32 in a vapor-injected heat pump system. A drop-in test was performed using R32 in a heat pump system that was designed for R410A, for both cooling and heating conditions. Through experimentation, it was found that for a single-stage cycle without vapor injection, the capacity improvement of using R32 was between 3.4% and 9.7%, and the COP improvement was between 2.0% and 9.0%, as compared to an identical cycle using R410A. For the vapor injection mode, the capacity improvement of R32 was found to be 1.8% to 7.4%, and the COP improvement was found to be 1.2% to 5.7%. No improvement was found for extreme cooling and heating conditions. High compressor discharge temperature was observed at extreme cooling and heating conditions when using R32. The compressor performance was analyzed to better understand the performance difference between the two different refrigerants. It is concluded that R32 is an excellent alternative to replace R410A in terms of performance and can be further enhanced by component optimization.
机译:近年来,由于全球变暖引起了越来越多的关注,具有高全球变暖潜能值(GWP)的制冷剂正面临逐步淘汰的挑战。 R410A的全球升温潜能值为2088,已广泛用于住宅空调和热泵系统。 R410A的潜在替代品是R32,其GWP为675。本文研究了R410A和R32在蒸汽喷射热泵系统中的性能差异。在针对R410A设计的热泵系统中,针对冷却和加热条件,都使用R32进行了插入式测试。通过实验发现,与不使用蒸汽的相同循环相比,对于不使用蒸汽注入的单级循环,使用R32的容量提高了3.4%至9.7%,而COP改善了2.0%至9.0%。 R410A。对于蒸气喷射模式,发现R32的容量提高为1.8%至7.4%,而COP提高为1.2%至5.7%。对于极端的冷却和加热条件,未发现任何改善。使用R32时,在极端冷却和加热条件下观察到较高的压缩机排气温度。对压缩机的性能进行了分析,以更好地了解两种不同制冷剂之间的性能差异。结论是,就性能而言,R32是替代R410A的绝佳替代品,并且可以通过组件优化进一步增强。

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