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Measurement and Visualization of R410A Distribution in the Vertical Header of the Microchannel Heat Exchanger

机译:微通道热交换器垂直集管R410A分布的测量和可视化

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This paper presents the refrigerant adiabatic upward flow in the vertical header of microchannel heat exchanger and its effect on distribution. R410A is circulated into the header through the microchannel tubes (5 or 10 tubes) in the bottom pass and exits through tubes (5 or 10 tubes) in the top pass representing flow in the heat pump mode of reversible systems. Three circular headers were explored, each with the microchannel tubes inserted to half depth. The quality was typically varied from 0.2 to 0.8. Mass flow rate was from 1.5 to 4.5 kg/h per microchannel. The best distribution is found at high flow rate and low quality. Distribution is improved by doubling the number of microchannel tubes although elongation of the header has negative effect. Visualization reveals the effects of flow patterns in terms of homogeneity and liquid momentum. Refrigerant in the churn flow has better distribution than in the separated flow since the two-phase mixture is more homogeneous. The distribution is better at high mass flux in the header because the higher momentum liquid can be supplied to the top exit tubes.
机译:本文介绍了微通道换热器垂直集管的制冷剂绝热向上流动及其对分布的影响。 R410a通过底部通过的微通道管(5或10管)循环到头部,并在可逆系统的热泵模式中的流动中的顶部通过管(5或10个管)。探索了三个圆形标题,每个圆形标头都有微通道管插入半深度。质量通常为0.2至0.8。质量流量为每微型通道的1.5至4.5千克/小时。最佳分配以高流速和低质量。通过将微通道管的数量加倍,尽管标题的伸长具有负效应,因此改善了分布。可视化揭示了流动模式在均匀性和液体动量方面的影响。由于两相混合物更均匀,搅拌流中的制冷剂具有比分离的流动更好的分布。该分布在头部的高质量通量处更好,因为较高的动量液体可以提供给顶部出口管。

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