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Experimental Study of a Set of Integrated Cross-Media Heat Exchangers (iCMHXs) for Liquid Cooling in Desktop Computers

机译:桌面电脑液体冷却一组集成跨介质热交换器(ICMHXS)的实验研究

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The present study is an experimental investigation of a set of five additively-manufactured compact, lightweight, low-cost, air-to-water cross-media heat exchangers suitable for liquid cooling applications in desktop computers, among other applications. The heat transfer between the two fluids is facilitated by solid metallic wires arranged in a staggered tube-bank configuration, in direct contact with both fluids separated by polymer walls. Since the liquid flows externally over the wires instead of flowing inside the tubes in conventional tube-bank fin heat exchangers, smaller wires can be used in iCMHXs, resulting in lighter and more efficient units. The additively-manufactured iCMHX units are post-processed using a conformal polyurethane sealant. The units are experimentally studied in two case studies based on their postprocessing techniques. The experimental studies include instrumentation calibration as well as uncertainty analysis. The first case study considers three geometrically identical iCMHX units sharing the same post-processing method. The overall iCMHX performances characterized by the thermal and hydrodynamic parameters, such as thermal resistance and pressure drop for both waterside and airside, are compared. Their experimental results are also compared to 2D CFD predictions. To provide probable reasoning behind the differences in the comparisons, a second case study is then carried out by experimentally investigating two iCMHX units but with variable post-processing approaches such as by using a thinned sealant and by using a single layer of sealant.
机译:本研究是一套五种含有五种造成的紧凑,轻质,低成本,空到水跨介质热交换器的实验研究,适用于桌面计算机中的液体冷却应用,以及其他应用。通过以交错的管芯构造布置的固体金属线促进两个流体之间的热传递,其与由聚合物壁分开的两个流体直接接触。由于液体在导线外部流动而不是在传统的管芯翅片热交换器中在管内流动,因此可以在ICMHX中使用较小的导线,从而导致更轻更有效的单位。使用共形聚氨酯密封剂进行加工后制造的ICMHX单元。根据其后处理技术,在两种案例研究中进行了实验研究。实验研究包括仪表校准以及不确定性分析。第一种案例研究考虑了三个几何相同的ICMHX单位,共享相同的后处理方法。比较了通过热和流体动力学参数的整体ICMHX性能,例如用于水侧和空间的热阻和压降。它们的实验结果也与2D CFD预测相比。为了在比较的差异背后提供可能的推理,然后通过通过实验研究两个ICMHX单元进行第二种情况研究,而是通过使用变薄的密封剂等可变后处理方法来进行,并且通过使用单个密封剂。

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