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Evaluation and Optimization of a Two-Phase Liquid-Immersion Cooling System for Data Centers

机译:数据中心两相液浸冷热系统的评价与优化

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摘要

An efficient cooling system for data centers can boost the working efficiency of servers and promote energy savings. In this study, a laboratory experiment and computational fluid dynamics (CFD) simulation were performed to explore the performance of a two-phase cooling system. The coefficient of performance (COP) and partial power usage effectiveness (pPUE) of the proposed system was evaluated under various IT (Information Technology) loads. The relationship between the interval of the two submerged servers and their surface temperatures was evaluated by CFD analysis, and the minimum intervals that could maintain the temperature of the server surfaces below 85 °C were obtained. Experimental results show that as server power increases, COP increases pPUE decreases. In one experiment, the COP increased from 19.0 to 26.7, whereas pPUE decreased from 1.053 to 1.037. The exergy efficiency of this system ranges from 12.65% to 18.96%, and the tank side accounts for most of the exergy destruction. The minimum intervals between servers are 15 mm under 1000 W of power, 20 mm under 1500 W, and more than 30 mm under 2000 W and above. The observations and conclusions in this study can be valuable references for the study of cooling systems in data centers.
机译:有效的数据中心冷却系统可以提高服务器的工作效率,促进节能。在本研究中,进行了实验室实验和计算流体动力学(CFD)模拟以探索两相冷却系统的性能。在各种IT(信息技术)负载下评估所提出的系统的性能系数(COP)和部分功率使用效果(PPUE)。通过CFD分析评估了两个浸没式服务器的间隔与其表面温度之间的关系,并获得了可以维持在85℃以下的服务器表面温度的最小间隔。实验结果表明,随着服务器电源的增加,POP增加PPUE减小。在一个实验中,警察从19.0增加到26.7,而PPue从1.053降至1.037。该系统的高级效率范围为12.65%至18.96%,坦克侧占大多数漏洞的破坏。服务器之间的最小间隔在1000毫米的功率下为15毫米,在1500W以下20毫米,超过2000毫米以上,超过30毫米。本研究中的观察和结论可以是对数据中心中的冷却系统研究的有价值的参考。

著录项

  • 作者

    Cheng Liu; Hang Yu;

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  • 年度 2021
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  • 原文格式 PDF
  • 正文语种 eng
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