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Computational and experimental investigation of low ODP and low GWP HCFC-123 and HC-290 refrigerant mixture alternate to CFC-12

机译:低ODP和低GWP的计算和实验研究HCFC-123和HC-290制冷剂混合物替代CFC-12

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摘要

At the advent of the Montreal protocol, R134a has been suggested as an alternate refrigerant to R12. R134a is a high global warming potential gas and needs to be controlled as per the Kyoto protocol. It is reported that there is no single refrigerant or mixture available to satisfy both the ozone depletion potential (ODP) and global warming potential (GWP) issues. In this scenario, the objective of this work was, to develop an eco-friendly refrigerant mixture with negligible ODP and GWP values that is nearly equivalent to R12 in its performance. R123 is a potential refrigerant with very low ODP and GWP values, but due to its high suction specific volume and high boiling point, it has not been considered as an alternate refrigerant to R12. In this work, to overcome the above said problems, R290 has been identified as suitable for combination with R123 in a refrigerant mixture. Using REFPROP for analysis, it was found that the performance parameters for a mixture containing 70% R123 and 30% R290 were near matching with R12. This has been further confirmed experimentally by conducting a base line test with R12 and tests with the new mixture. The flow characteristics of the mixture were compared with R12 and presented.
机译:随着蒙特利尔议定书的到来,R134a被建议作为R12的替代制冷剂。 R134a是高全球变暖潜能气体,需要根据《京都议定书》加以控制。据报道,没有单一的制冷剂或混合物可同时满足臭氧消耗潜能值(ODP)和全球变暖潜能值(GWP)的问题。在这种情况下,这项工作的目的是开发一种ODP和GWP值可忽略不计,几乎与R12相当的环保型制冷剂混合物。 R123是一种潜在的制冷剂,其ODP和GWP值非常低,但由于其吸入比容量高和沸点高,因此尚未被视为R12的替代制冷剂。在这项工作中,为了克服上述问题,已确定R290适合与制冷剂混合物中的R123结合。使用REFPROP进行分析,发现包含70%R123和30%R290的混合物的性能参数与R12几乎匹配。通过使用R12进行基线测试和使用新混合物进行测试,实验已进一步证实了这一点。将该混合物的流动特性与R12进行比较并给出。

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