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首页> 外文期刊>Journal of Electronic Packaging >Measurement of the Thermal Performance of a Custom-Build Single-Phase Immersion Cooled Server at Various High and Low Temperatures for Prolonged Time
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Measurement of the Thermal Performance of a Custom-Build Single-Phase Immersion Cooled Server at Various High and Low Temperatures for Prolonged Time

机译:长时间量身定制的单相浸入式冷却服务器在各种高温和低温下的热性能测量

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摘要

The next radical change in the thermal management of data centers is to shift from conventional cooling methods like air-cooling to direct liquid cooling to enable high thermal mass and corresponding superior cooling. There has been in the past few years a limited adoption of direct liquid cooling in data centers because of its simplicity and high heat dissipation capacity. Single-phase engineered fluid immersion cooling has several other benefits like better server performance, even temperature profile, and higher rack densities and the ability to cool all components in a server without the need for electrical isolation. The reliability aspect of such cooling technology has not been well addressed in the open literature. This paper presents the performance of a fully single-phase dielectric fluid immersed server over wide temperature ranges in an environmental chamber. The server was placed in an environmental chamber and applied extreme temperatures ranging from —20 ℃ to 10 ℃ at 100% relative humidity and from 20 to 55 ℃ at constant 50% relative humidity for extended durations. This work is a first attempt of measuring the performance of a server and other components like pump including flow rate drop, starting trouble, and other potential issues under extreme climatic conditions for a completely liquid-submerged system. Pumping power consumption is directly proportional to the operating cost of a data center. The experiment was carried out until the core temperature reached the maximum junction temperature. This experiment helps to determine the threshold capacity and the robustness of the server for its applications in extreme climatic conditions.
机译:数据中心热管理的下一个重大变化是从传统的冷却方法(如空冷)转变为直接液体冷却,以实现高热质量和相应的卓越冷却。过去几年来,由于数据中心的简单性和高散热能力,在数据中心中直接采用液体冷却的方法受到了限制。单相工程浸入式冷却还具有其他一些优点,例如更好的服务器性能,均匀的温度曲线和更高的机架密度,以及无需电气隔离即可冷却服务器中所有组件的能力。在公开文献中还没有很好地解决这种冷却技术的可靠性方面。本文介绍了在环境室内宽温度范围内完全单相电介质浸入式服务器的性能。将服务器放置在环境室内,并在100%相对湿度下施加从20℃到10℃的极端温度,并在50%恒定相对湿度下施加从20到55℃的极端温度,以延长使用寿命。这项工作是在极端气候条件下测量服务器和其他组件(如泵)的性能(包括流量下降,启动故障以及其他潜在问题)的首次尝试,该系统完全浸没在水中。泵浦功耗与数据中心的运营成本成正比。进行实验直到核心温度达到最高结温。该实验有助于确定阈值容量和服务器在极端气候条件下的耐用性。

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