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Performance prediction of a refrigerating machine using R-407C: the effect of the circulating composition on system performance

机译:使用R-407C的制冷机性能预测:循环成分对系统性能的影响

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This article presents a steady-state model of a vapour compression refrigerating machine using a ternary refrigerant mixture R-407C. When using a zeotropic mixture in a refrigerant cycle, the circulating composition does not agree with the composition of the original charged mixture. It is mainly due to the temperature glide and the vapour-liquid slip ratio. As a result of the composition shift and its magnitude, the system performance changes depending on the system design, especially the presence of liquid receiving vessels. In this paper, a method that predicts the circulating composition has been associated to a refrigerating machine model. The results obtained with this model show an enrichment in the most volatile components of about 1% for the circulating composition, which is sufficient to decrease the system performance by about 3%. Factors affecting the overall performance have been investigated. The results show a very strong performance dependence on the refrigerant charge. The COP can decrease by 25% when the refrigerant charge is insufficient. An initial charged composition variation of 2% involves variations of the cooling capacity of about 5%. Furthermore, our model was employed to compare the performance for both R-22 and R-407C. The cooling capacity for R-22 is slightly greater in comparison to R-407C and the COP is almost constant.
机译:本文介绍了使用三元制冷剂混合物R-407C的蒸汽压缩制冷机的稳态模型。当在制冷剂循环中使用共沸混合物时,循环组成与原始装料混合物的组成不一致。这主要归因于温度滑移和蒸气-液体滑移率。由于组成的变化及其幅度,系统性能会根据系统设计(尤其是液体接收容器的存在)而变化。在本文中,一种预测循环成分的方法已与制冷机模型相关联。用该模型获得的结果表明,循环组合物的最易挥发成分富集了约1%,这足以使系统性能降低约3%。已经研究了影响整体性能的因素。结果表明,制冷剂充注量对性能的依赖性非常强。当制冷剂充注不足时,COP可以降低25%。 2%的初始带电成分变化涉及约5%的冷却能力变化。此外,我们的模型用于比较R-22和R-407C的性能。与R-407C相比,R-22的制冷量略大,COP几乎恒定。

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