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Shock and vibration protection of submerged jet impingement cooling systems: Theory and experiment

机译:浸没式射流冲击冷却系统的冲击和振动防护:理论与实验

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摘要

In the recent years, advances in high power density electronics and computing systems have pushed towards more advanced thermal management technologies and higher-capacity cooling systems. Among different types of cooling systems, jet impingement technology has gained attention and been widely used in different industries for its adaptability, cooling uniformity, large heat capacity, and ease of its localization. However, these cooling systems may not function properly in dynamically harsh environment inherent in many applications such as land, sea and air transportation. In this research article, a novel double-chamber jet impingement cooling system is fabricated and its performance is studied in harsh environment. Using the authors' previous studies, isolators with optimum properties are selected to ruggedize the chassis containing the cooling chamber against shock and random vibration. Experiments are conducted on both hard-mounted and isolated chassis and the cooling performance of the system is assessed using the inlet, and impingement surface temperatures of the cooling chamber. The experimental results show the isolation system prevents any failure that otherwise would occur, and also does not compromise the thermal performance of the system. (C) 2014 Elsevier Ltd. All rights reserved.
机译:近年来,高功率密度电子和计算系统的进步推动了更先进的热管理技术和更高容量的冷却系统。在不同类型的冷却系统中,射流冲击技术因其适应性强,冷却均匀性,热容量大且易于本地化而受到关注,并已在不同行业中广泛使用。但是,这些冷却系统可能无法在许多应用(例如陆地,海洋和空中运输)固有的动态恶劣环境中正常运行。在这篇研究文章中,制造了一种新型的双室射流冲击冷却系统,并研究了其在恶劣环境下的性能。使用作者先前的研究,选择具有最佳性能的隔离器,以加固包含冷却室的底盘,以防冲击和随机振动。在硬安装和隔离的机箱上进行了实验,并使用进气口和冷却室的撞击表面温度评估了系统的冷却性能。实验结果表明,该隔离系统可以防止发生其他任何故障,并且不会影响系统的热性能。 (C)2014 Elsevier Ltd.保留所有权利。

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