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Effects of Different Coolants on the Cooling Performance of an Impingement Microchannel Cold Plate

机译:不同冷却剂对冲击微通道冷板冷却性能的影响

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Increasing power densities due to the rise of Artificial Intelligence (AI), high-performance computing (HPC) and machine learning can lead to the increasing cost and complexity of thermal management in electronics devices. With very high specific heat and latent heat compared to air cooling, liquid cooling can be an alternative solution and currently an emerging technology in data center cooling. This paper describes experimental characterization of a liquid cooling cold plate in terms of thermal resistance and pressure drop. The liquid cold plate design incorporates impingement into a microchannel structure. Coolant enters the cold plate at the inlet then impinges down to the base of the cold plate at the trapezoidal groove. A copper block with a top surface area of 1 inch $imes 1$ inch was used to mimic the computer chip surface. Various coolants were used in this study including deionized water (100 % water), a mixture of coolants (10, 20, 30 % ethylene glycol +90,80, 70% water) and dielectric coolant3M Novec 7000 HFE. A comparison in the thermal and hydraulic performance of these coolants was presented. Effects of flow rate and coolant inlet temperature on both thermal resistance and pressure drop were studied in detail.
机译:由于人工智能(AI)升高,高性能计算(HPC)和机器学习导致的电力密度可能导致电子设备中热管理的成本增加和复杂性。与空气冷却相比,具有非常高的比热和潜热,液体冷却可以是替代解决方案,目前在数据中心冷却中的新兴技术。本文介绍了在热阻和压降方面的液体冷却冷板的实验表征。液体冷板设计掺入微通道结构中的冲击。冷却剂进入入口处的冷板,然后将冷板撞击到梯形槽处的冷板的底部。使用顶面积为1英寸$ times 1 $英寸的铜块用于模拟计算机芯片表面。在该研究中使用各种冷却剂,包括去离子水(100%水),冷却剂的混合物(10,20,30%乙二醇+90,80,70%水)和电介质冷却剂3m Novec 7000 HFe。提出了这些冷却剂的热和水力性能的比较。详细研究了流速和冷却剂入口温度对热阻和压降的影响。

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