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Design of a single-phase immersion cooling system through experimental and numerical analysis

机译:通过实验和数值分析设计单相浸没冷却系统

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摘要

Cooling electronics systems more effectively could enable computer systems to utilize power more efficiently. Immersion cooling is a potential method to cool computers and other electronics by submerging them into a thermal conductive dielectric liquid or coolant. In this study, an innovative cooling structure and procedure of a single-phase immersion cooling system using heat sink and forced circulation is presented. The straight finned heat sink is attached on the CPU surface, and the entire mainboard is submerged in an engineered fluid, 3 M Novec 7100, which is able to dissipate heat and is used in immersion cooling applications. An experimental test is utilized to verify a simulation model built using the computer simulation software. Three circulating speeds of the liquid coolant along with the use of two different materials for the heat sink are chosen to explore the cooling effects of a single-phase immersion cooling system. The heat distribution of the designed model at various flow rates of liquid coolant and materials was observed through the cross-sectional viewpoint and 3D isothermal surface model. The results of the simulations show that the faster flowing speed of liquid coolant would remove more heat, and cause lower temperature of CPU. However, the flow of coolant was encumbered due to slower circulating speed. It also caused the higher temperature values and unbalanced heat distribution. The highest temperatures were measured, and the unbalanced heat distribution of the model was observed. It is noted that the material of the heat sink do not significantly affect the results. These outcomes are able to provide the system designer with useful information to increase power densification and guarantee the safe operation of the related computer, server and communication systems.
机译:冷却电子系统更有效地可以使计算机系统能够更有效地利用电量。浸入式冷却是通过将它们浸入热导电介电液体或冷却剂来冷却计算机和其他电子设备的潜在方法。在本研究中,提出了一种使用散热器和强制循环的单相浸没冷却系统的创新的冷却结构和过程。直翅散热器附着在CPU表面上,整个主板浸没在工程液中,3米Novec 7100,能够散热并用于浸入式冷却应用。利用实验测试来验证使用计算机仿真软件构建的仿真模型。选择液体冷却剂的三个循环速度以及使用两种不同材料用于散热器,以探讨单相浸没冷却系统的冷却效果。通过横截面观察点和3D等温表面模型观察到各种流动速率和材料的设计模型的热分布。模拟结果表明,液体冷却剂的更快流动速度将去除更多的热量,并导致CPU的较低温度。然而,由于循环速度较慢,冷却剂的流量受到困扰。它还导致更高的温度值和不平衡的热分布。测量最高温度,观察到模型的不平衡热分布。应注意,散热器的材料不会显着影响结果。这些结果能够提供系统设计器,以提高电力致密化并保证相关计算机,服务器和通信系统的安全操作。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第10期|120203.1-120203.12|共12页
  • 作者单位

    Department of Energy and Refrigerating Air-Conditioning Engineering National Taipei University of Technology 1 Section 3 Zhongxiao East Road Taipei 10608 Taiwan R O C;

    Department of Energy and Refrigerating Air-Conditioning Engineering National Taipei University of Technology 1 Section 3 Zhongxiao East Road Taipei 10608 Taiwan R O C;

    Department of Energy and Refrigerating Air-Conditioning Engineering National Taipei University of Technology 1 Section 3 Zhongxiao East Road Taipei 10608 Taiwan R O C;

    VICI Holdings No. 2-7 Sec. 2 Ren'ai Rd. Zhongzheng Dist. Taipei City 100 Taiwan (R.O.C.);

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Immersion cooling; Single-phase; Heat sink; Synthetic oil; Circulation; Computer simulation software; Heat distribution;

    机译:浸没冷却;单阶段;散热器;合成油;循环;计算机仿真软件;热分配;

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