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Thermodynamic Performance Analysis of Eco friendly Refrigerant Mixtures to Replace R22 Used in Air conditioning Applications

机译:ECO友好制冷剂混合物的热力学性能分析替代空调应用中使用的R22

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In the present study theoretical thermodynamic performance of a 0.8 TR window air conditioner with ten binary refrigerant mixtures consists of propylene (R1270) and propane (R290) was investigated based on actual vapour compression refrigeration cycle.All the investigated refrigerant mixtures consist of zero ozone depletion potential.Global warming potential of R22 is 1760 whereas GWP of all the studied refrigerant mixtures were below three and also these mixtures are closer to azeotropic containing the temperature glide below 0.4°C.Thermodynamic performance of all the refrigerant mixtures are computed at the evaporating and condensing temperatures of 7.2°C and 54.4°C (ARI conditions) respectively.The results revealed that the coefficient of performance for the mixture R1270/R290 (75/25 by mass %) was closer to R22.The percentage variation in cop for the mixture R1270/R290 (75/25 by mass %) was least by 0.97% among the ten investigated refrigerant mixtures when compared to R22.Refrigeration capacity of all the considered refrigerant mixtures was similar to that of capacity of refrigerant R22.The compressor discharge temperature for all the studied refrigerants were reduced in the range of 5.6-8.4°C when compared to the reference refrigerant R22.The power required per ton of refrigeration for the refrigerant mixture R1270/R290 (75/25 by mass %) was least among the ten investigated refrigerant mixtures.Since refrigerant mixtures consist of hydrocarbons, therefore they had better miscibility with the mineral lubricant oil.Overall the thermodynamic performance of a refrigerant mixture R1270/R290 (75/25 by mass %) was nearest to R22 and hence it is a suitable environmentally alternative refrigerant to substitute R22 used in residential air conditioning applications.
机译:在本研究中,具有十二二元制冷剂混合物的0.8 TR窗口空调的理论热力学性能由丙烯(R1270)和丙烷(R290)基于实际蒸汽压缩制冷循环研究。所研究的制冷剂混合物由零臭氧耗竭组成R22的潜在温暖电位为1760,而所有研究的制冷剂混合物的GWP均低于三个,并且这些混合物更接近含有低于0.4℃的温度滑动的共沸物。在蒸发和蒸发中计算所有制冷剂混合物的热力学性能。 4.2℃和54.4℃(ARI条件)的冷凝温度。结果表明,混合物R1270 / R290(75/25质量%)的性能系数更接近R22。警察的百分比变化与R22.REFRIGER相比,混合物R1270 / R290(75/25质量%)(75/25按质量%)在10个研究的制冷剂混合物中最少0.97%所有被认为的制冷剂混合物的容量类似于制冷剂R22的容量。与参考制冷剂R22相比,所有研究制冷剂的压缩机放电温度在5.6-8.4°C的范围内。制冷剂混合物的吨制冷R1270 / R290(75/25质量%)是十个研究的制冷剂混合物中的至少一个化制冷剂混合物中的含油混合物。制冷剂混合物由烃组成,因此它们具有更好的矿物润滑油的混溶性。overall的热力学性能制冷剂混合物R1270 / R290(75/25质量%)最接近R22,因此它是适用于在住宅空调应用中使用的R22替代R22的合适的环保制冷剂。

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