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首页> 外文期刊>Journal of Electronic Packaging >Role of a Liquid Accumulator in a Passive Two-Phase Liquid Cooling System for Electronics: Experimental Analysis
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Role of a Liquid Accumulator in a Passive Two-Phase Liquid Cooling System for Electronics: Experimental Analysis

机译:液体蓄能器在电子被动两相液体冷却系统中的作用:实验分析

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摘要

Gravity-driven two-phase liquid cooling systems using flow boiling within microscale evaporators are becoming a game-changing solution for electronics cooling. The optimization of the system's filling ratio (FR) can however become a challenging problem for a system operating over a wide range of cooling capacities and temperature ranges. The benefits of a liquid accumulator (LA) to overcome this difficulty are evaluated in the present paper. An experimental thermosyphon cooling system was built to cool multiple electronic components up to a power dissipation of 1800 W. A double-ended cylinder with a volume of 150 cm ~( 3 ) is evaluated as the LA for two different system volumes (associated with two different condensers). Results demonstrated that the LA provided robust thermal performance as a function of FR for the entire range of heat loads tested. In addition, the present LA was more effective for a small volume system, 599 cm ~( 3 ) , than for a large volume system, 1169 cm ~( 3 ) , in which the relative size of the LA increased from 12.8% to 25% of the total system's volume.
机译:重力驱动的两相液体冷却系统使用微型蒸发器中的沸腾沸腾,已成为改变电子设备冷却方式的革命性解决方案。然而,对于在宽范围的冷却能力和温度范围内运行的系统,系统填充率(FR)的优化可能成为一个具有挑战性的问题。本文评估了蓄液器(LA)克服这一困难的好处。建立了一个实验性的热虹吸冷却系统,以冷却多个电子组件,使功率耗散至1800W。双端圆柱体的容积为150 cm〜(3)被评估为两个不同系统体积(与两个相关的系统体积)的LA不同的冷凝器)。结果表明,在整个测试的热负荷范围内,LA均具有作为FR的函数的强大热性能。此外,目前的LA对于小体积系统599 cm〜(3)比对大体积系统1169 cm〜(3)更为有效,在大体积系统中LA的相对尺寸从12.8%增加到25占系统总体积的百分比。

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