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首页> 外文期刊>Science and Technology for the Built Environment >Comparison and generalization of R410A and R134a distribution in the microchannel heat exchanger with the vertical header
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Comparison and generalization of R410A and R134a distribution in the microchannel heat exchanger with the vertical header

机译:具有垂直集管的微通道换热器中R410A和R134a分布的比较和概括

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摘要

This article presents the experimental results of R410A and R134a distribution in the vertical header of a reversible outdoor microchannel heat exchanger. Two-phase refrigerant enters into the test header through multiple parallel microchannel tubes in the bottom pass and exits through multiple parallel microchannel tubes in the top pass, representing the flow in the outdoor microchannel heat exchanger of a reversible system under heat pump mode. The difference in fluid properties between R410A and R134a causes the difference in flow patterns and refrigerant distribution results. Non-dimensional analysis shows that the inertia of R410A is higher than that of R134a, with the following results: (1) at low qualities (churn flow), more liquid R410A reaches the top tubes, so R410A distribution is a little better than R134a; (2) at high qualities (semi-annular flow), more bottom tubes are bypassed by the liquid film of R410A, so R410A distribution is worse than R134a, even though more liquid reaches the top tubes for R410A. The distribution results of R410A and R134a are generalized with coefficient of variation, flow regime map, and a distribution function.
机译:本文介绍了R410A和R134a在可逆室外微通道热交换器的垂直集管中分布的实验结果。两相制冷剂在底部通道中通过多个平行的微通道管进入测试集管,在顶部通道中通过多个平行的微通道管离开,这代表了热泵模式下可逆系统的室外微通道热交换器中的流量。 R410A和R134a之间的流体特性差异会导致流型和制冷剂分配结果差异。无量纲分析表明,R410A的惯性高于R134a,其结果如下:(1)在低质量(搅动流量)下,更多的液体R410A到达顶部管,因此R410A的分布比R134a略好; (2)在高质量(半环形流动)下,R410A的液膜会绕过更多的底部管,因此,即使有更多的液体到达R410A的顶部管,R410A的分布也比R134a差。 R410A和R134a的分布结果通过变化系数,流态图和分布函数进行了概括。

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