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Experimental investigation of header shape and inlet configuration on flow maldistribution in microchannel

机译:联管箱形状和进气口配置对微通道流量分布不均匀的实验研究

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A detailed experimental investigation has been carried out to analyze the flow maldistribution in a microchannel heat sink by using deionized water as the coolant in an aluminum microchannel heat sink with 25 numbers of rectangular microchannels of hydraulic diameter 763 gm, for Reynolds number range of 200-650. The prime focus of this experimental study is to find the suitable combination of header shape and flow inlet configuration to minimize the flow maldistribution effect. Experiments have been carried out with three types of header shapes rectangular, trapezoidal and triangular and two types of inlet configurations viz. vertical flow inlet configuration and inline flow inlet configuration. It is found that vertical flow inlet configuration gives less maldistribution than inline flow inlet configuration. Trapezoidal and triangular headers give less flow maldistribution at low flow rate while rectangular header gives less flow maldistribution at higher flow rates. As the flow rate increases maldistribution decreases. In general, it is found that flow distribution in the microchannel significantly depends on flow inlet configuration, header shape and flow rate. (C) 2016 Elsevier Inc. All rights reserved.
机译:已经进行了详细的实验研究,以使用去离子水作为冷却剂在25个水力直径为763 gm的矩形微通道的铝微通道散热器中使用去离子水作为冷却剂来分析微通道散热器中的流量分配不均,雷诺数范围为200- 650。该实验研究的主要重点是找到集管形状和进水口配置的适当组合,以最大程度地减少流量分配不均的影响。已经使用矩形,梯形和三角形的三种集管形状和两种类型的入口配置进行了实验。垂直流入口配置和直列流入口配置。发现垂直流入口构造比管线流入口构造具有更少的分布不均。梯形和三角形集管在低流量时流量分布不均较小,而矩形集管在高流量时流量分布不均较小。随着流量增加,分布不均减少。通常,发现微通道中的流量分布在很大程度上取决于流量入口的配置,集管的形状和流量。 (C)2016 Elsevier Inc.保留所有权利。

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