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Performance optimization of a two-circuit cycle with parallel evaporators for a domestic refrigerator-freezer

机译:家用冰箱冰柜的并联蒸发器两回路循环的性能优化

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摘要

A two-circuit cycle with parallel evaporators (called a "parallel cycle") for a domestic refrigerator-freezer (RF) shows energy saving potential compared with a conventional cycle with a single loop or serial evaporators because of a low compression ratio in the fresh food compartment (R)-operation. The objective of this study is to investigate the effects of the refrigerant charge, R-capillary tube, and refrigerant recovery operation on the performance of a parallel cycle. In addition, design guidelines for the heat transfer area and air flow rate of an R-evaporator are proposed. When the parallel cycle was optimized in terms of the refrigerant charge and R-capillary tube diameter, the energy consumption was reduced by 7.8% over a bypass two-circuit cycle with the same RF platform. In addition, an additional energy saving of 1.8% was obtained by the optimization of the operating sequence and refrigerant recovery operation.
机译:与传统的单回路或串联蒸发器循环相比,家用冷藏冷冻机(RF)的具有平行蒸发器的两回路循环(称为“并行循环”)显示出节能的潜力,因为新鲜的压缩比低食物隔间(R)-操作。这项研究的目的是研究制冷剂加注,R毛细管和制冷剂回收操作对并联循环性能的影响。此外,还提出了R蒸发器的传热面积和空气流速的设计指南。当在制冷剂充量和R毛细管直径方面优化并联循环时,在具有相同RF平台的旁路两回路循环中,能耗降低了7.8%。此外,通过优化操作顺序和制冷剂回收操作,还可以节省1.8%的能源。

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