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Numerically Investigating the Effects of Cross Links in Scaled Microchannel Heat Sinks

机译:数值研究缩放微通道散热器中交叉链路的影响

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Thermal management for high performance of miniaturized electronic devices using microchannel heat sinks has recently become of interest to researchers and industry. Obtaining heat sink designs with uniform flow distribution is strongly desired. A number of experimental studies have been conducted to seek appropriate designs for microchannel heat sinks. However, pursuing this goal experimentally can be an expensive endeavor. The present work investigates the effect of cross-links on adiabatic two-phase flow in an array of parallel channels. It is carried out using the three-dimensional mixture model from the computational fluid dynamics (CFD) software, Fluent 6.3. A straight channel and two cross-linked channel models were simulated. The cross-links were located at 1/3 and 2/3's of the channel length, their width varied by one and two times the channel width. All test models had 45 parallel rectangular channels, with a hydraulic diameter of 1.59 mm. The results showed that the trend of flow distribution agrees with experimental results. A new design, with cross-links incorporated, was proposed and the results showed a significant improvement, up to 55%, on flow distribution, compared to the standard straight channel configuration without a penalty in the pressure drop. The effect of cross-links on flow distribution, flow structure, and pressure drop was also documented.
机译:使用微通道散热器的小型化电子设备的高性能热管理最近成为研究人员和行业的感兴趣。强烈需要获得具有均匀流动分布的散热器设计。已经进行了许多实验研究,以寻求微通道散热器的适当设计。然而,通过实验追求这一目标可能是一种昂贵的努力。本作者研究了交叉链路对并行通道阵列中的绝热两相流的影响。它使用从计算流体动力学(CFD)软件的三维混合模型进行,流畅的6.3。模拟了直通道和两个交联信道模型。交联位于通道长度的1/3和2/3的沟道长度,它们的宽度变化一倍和两倍的通道宽度。所有测试型号都有45个平行的矩形通道,液压直径为1.59毫米。结果表明,流动分布的趋势与实验结果一致。提出了一种新的设计,并提出了一种具有交联的交叉链接,结果显示出与标准直通通道配置相比,流量分布的显着改善,高达55%,而不是在压降中没有罚款。还记录了交联对流量分布,流动结构和压降的影响。

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