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Height Effect on Heat-Transfer Characteristics of Aluminum-Foam Heat Sinks

机译:高度对铝泡沫散热器传热特性的影响

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This study investigates and demonstrates the two conflicting effects of the height on the cooling performance of aluminum-foam heat sinks, under the impinging-jet flow condition. In addition, the nonlocal thermal equilibrium phenomena are also investigated. When the H/D (the height to diameter ratio) of the aluminum-foam heat sinks is reduced from 0.92 to 0.15, the Nusselt number of aluminum-foam heat sinks is found to first increase and then decrease. The increase in the Nusselt number is caused by the increased percentage of the cooling air reaching the top surface of the waste-heat generation block, resulting from the reduced flow resistance. The decrease in the Nusselt number is mainly caused by the reduction in the heat-transfer area between the cooling air and the solid phase of the aluminum-foam heat sink. As the porosity and pore density decrease, the Nusselt number increases and the convective heat transfer is enhanced. The correlation between the Nusselt and Reynolds numbers for each of the 15 samples studied in this work is reported. For samples with a H/D>0.31, the temperature difference between the solid and gas phases of aluminum-foam heat sinks decreases with the increase of the distance from the heated surface. The non-local thermal equilibrium regime is observed to exist at low Reynolds number and small dimensionless height. On the other hand, for samples with a H/D≤0.31, the temperature difference first increases and then decreases with the increase of the distance from the heated surface; the maximum temperature difference is located at z/H=0.25 and is independent of the Reynolds number.
机译:这项研究调查并论证了在冲击射流条件下,高度对铝泡沫散热片冷却性能的两个相互矛盾的影响。此外,还研究了非局部热平衡现象。当铝泡沫散热器的H / D(高度与直径之比)从0.92降低到0.15时,发现铝泡沫散热器的Nusselt数量先增加然后减少。努塞尔数的增加是由于流阻减小导致到达废热发生块顶面的冷却空气百分比增加所致。努塞尔数的减少主要是由于冷却空气与铝泡沫散热器的固相之间的传热面积减少所致。随着孔隙率和孔隙密度的降低,Nusselt数增加,对流换热得到增强。报告了这项工作中研究的15个样本中每个样本的Nusselt和雷诺数之间的相关性。对于H / D> 0.31的样品,铝泡沫散热片的固相和气相之间的温差随着与加热表面距离的增加而减小。观察到非局部热平衡状态存在于低雷诺数和小的无因次高度上。另一方面,对于H /D≤0.31的样品,温度差首先随着与加热表面的距离的增加而增大,然后减小。最大温差位于z / H = 0.25,与雷诺数无关。

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