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Hydrocarbon blends and blends of HFC-134-HC600a as drop in refrigerants for small capacity commercial refrigeration appliance an experimental study

机译:HFC-134-HC600A的烃混合物和混合物作为小容量商业制冷设备的制冷剂下降进行实验研究

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The awareness to protect the environment from the harmful effects of CFCs has motivated the refrigeration scientists and engineers to study alternative refrigerants to replace the CFCs even in the existing units. This paper presents athermodynamic study of hydrocarbon blends (Propane/Isobutane) and blends of HFC-134a-HC-600a as a possible "drop-in" (some electrical component to be changed to make the appliance safe) substitute to CFC-12. Thermodynamic properties of these mixturesneeded for the analysis have been computed using "Refprop". An extensive experimental work has been carried out to evaluate the performance of the proposed blends for small capacity commercial refrigeration appliances such as bottle coolers. The quantityof refrigerant charge has been determined experimentally for the minimum energy consumption for the best composition. The results show that the hydrocarbon blend with 50 percent by mass of isobutane and HFC-134a-HC-600a mixture are potential drop-incandidates. The hydrocarbon blend consumes about 12% less energy in comparison to HFC-134a-HC-600a. However, these refrigerants are flammable which require some changes in electrical components to make the appliance safe.
机译:保护环境从氟氯化碳的有害影响的意识使得制冷科学家和工程师研究替代制冷剂即使在现有单位也取代氟氯化碳。本文介绍了烃共混物(丙烷/异丁烷)的流动性研究,以及HFC-134A-HC-600A的共混物作为可能的“掉入”(一些电气分量以使设备安全)替代CFC-12。使用“REFPROP”已经计算了这些混合物用于分析的热力学性质。已经进行了广泛的实验工作,以评估瓶子冷却器等小容量商业制冷设备的拟议混合物的性能。制冷剂电荷的数量已经通过实验确定了最佳组合物的最小能耗。结果表明,烃共混物50质量%的异丁烷和HFC-134A-HC-600A混合物是潜在的下降酸盐。与HFC-134A-HC-600A相比,烃共混物消耗约12%的能量。然而,这些制冷剂是易燃的,这需要电气部件的一些变化以使设备安全。

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