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Experimental investigation of the flow and heat transfer performance in micro-channel heat exchangers with cavities

机译:微通道热交换器流量和传热性能的实验研究

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摘要

Micro-channel heat exchangers are widely applied in many industrial fields. Compared with conventional scale channels, micro-channels are of larger surface-to-volume ratio and higher heat transfer rate with more miniaturized scale and lower weight. In this study, micro-channel heat exchangers with cavities in two different shapes were designed and fabricated, and experiment research were conducted to analyze the influence of the shape, expansion and contraction cross-sectional lengths of cavities on flow and heat transfer characteristics. The results indicate that compared with straight channel, adding cavities in micro-channels could achieve heat transfer enhancement and pressure drop reduction simultaneously. The detailed effects of the shape as well as the expansion and contraction cross-sectional lengths of cavities on the heat transfer and the pressure drop are also revealed.
机译:微通道热交换器广泛应用于许多工业领域。与传统的刻度通道相比,微通道具有较大的表面到体积比和更高的传热速率,具有更小型化的规模和更低的重量。在本研究中,设计和制造了具有两种不同形状的空腔的微通道热交换器,并进行了实验研究,分析了腔体的形状,膨胀和收缩横截面长度对流动​​和传热特性的影响。结果表明,与直通道相比,在微通道中添加空腔可以同时实现传热增强和压降。还揭示了形状的详细效果以及腔内腔体的膨胀和收缩横截面长度和压降。

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