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A performance comparison of vapour-compression refrigeration system using various alternative refrigerants

机译:使用多种替代制冷剂的蒸汽压缩制冷系统的性能比较

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摘要

A theoretical performance study on a traditional vapour-compression refrigeration system with refrigerant mixtures based on HFC134a, HFC152a, HFC32, HC290, HC1270, HC600, and HC600a was done for various ratios and their results are compared with CFC12, CFC22, and HFC134a as possible alternative replacements. In spite of the HC refrigerants' highly flammable characteristics, they are used in many applications, with attention being paid to the safety of the leakage from the system, as other refrigerants in recent years are not related with any effect on the depletion of the ozone layer and increase in global warming. Theoretical results showed that all of the alternative refrigerants investigated in the analysis have a slightly lower performance coefficient (COP) than CFC12, CFC22, and HFC134a for the condensation temperature of 50℃ and evaporating temperatures ranging between - 30℃ and 10℃. Refrigerant blends of HC290/HC600a (40/ 60 by wt.%) instead of CFC12 and HC290/HC1270 (20/80 by wt.*) instead of CFC22 are found to be replacement refrigerants among other alternatives in this paper as a result of the analysis. The effects of the main parameters of performance analysis such as refrigerant type, degree of subcooling, and superheating on the refrigerating effect, coefficient of performance and volumetric refrigeration capacity are also investigated for various evaporating temperatures.
机译:对基于HFC134a,HFC152a,HFC32,HC290,HC1270,HC600和HC600a的具有混合制冷剂的传统蒸汽压缩制冷系统进行了理论性能研究,并将其结果与CFC12,CFC22和HFC134a进行了比较。替代品。尽管HC制冷剂具有高度易燃的特性,但它们仍在许多应用中使用,但要注意系统泄漏的安全性,因为近年来其他制冷剂对臭氧层的消耗没有任何影响。层和全球变暖的加剧。理论结果表明,在50℃的冷凝温度和-30℃至10℃的蒸发温度下,分析中研究的所有替代制冷剂的性能系数(COP)均略低于CFC12,CFC22和HFC134a。 HC290 / HC600a(40/60 wt。%)代替CFC12和HC290 / HC1270(20/80 wt。*)代替CFC22的制冷剂混合物是替代制冷剂,因为分析。还研究了在各种蒸发温度下,性能分析的主要参数(例如制冷剂类型,过冷度和过热)对制冷效果,性能系数和制冷量的影响。

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