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Effect of refrigerant mal-distribution in fin-and-tube evaporators on system performance

机译:翅片管式蒸发器制冷剂分布不均对系统性能的影响

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摘要

Refrigerant mal-distribution in fin-and-tube evaporators for residential air-conditioning (RAC) is investigated numerically in this paper. A model of the system is developed in the object-oriented modeling language Modelica. Themodels of the compressor and expansion valve are static, whereas the condenser is a dynamic moving boundary model. The evaporator model is a dynamic distributed one-dimensional homogeneous equilibrium model, in order to capture the distribution phenomena. Fin-and-tube heat exchangers usually have a complex circuitry, however the evaporator will be simplified to be two straight tubes. The refrigerant mal-distribution is then induced to the evaporator by varying the vapor quality at the inlet to each feeder tube, the pressure drop through each feeder tube and the air-flow across each tube. Finally it is shown that air-flow mal-distribution can be compensated by an intelligent distributor, that ensures equal superheat in both tubes. The refrigerant is R410a.
机译:数值研究了家用空调翅片管蒸发器中制冷剂的不均匀分布。用面向对象的建模语言Modelica开发了系统的模型。压缩机和膨胀阀的模型是静态的,而冷凝器是动态的运动边界模型。蒸发器模型是动态分布的一维均质平衡模型,用于捕获分布现象。翅片管热交换器通常具有复杂的电路,但是蒸发器将简化为两个直管。然后,通过改变每个进料管进口处的蒸汽质量,通过每个进料管的压降以及通过每个管的气流,将致冷剂分配不均引入蒸发器。最终表明,可以通过智能分配器来补偿气流分布不均,从而确保两个管道中的过热均等。制冷剂为R410a。

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