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Optimization of data center room layout to minimize rack inlet air temperature.

机译:优化数据中心机房布局,以最大程度降低机架进气温度。

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摘要

In a typical raised floor data center with alternating hot and cold aisles, air enters the front of each rack over the entire height of the rack. Since the heat loads of data processing equipment continues to increase at a rapid rate, it is a challenge to maintain the temperature within the requirements as stated for all the racks within the data center. A facility manager has discretion in deciding the data center room layout, but a wrong decision will eventually lead to equipment failure. There are many complex decisions to be made early in the design as the data center evolves. Challenges occur such as optimizing the raised floor plenum, floor tile placement, minimizing the data center local hot spots etc. These adjustments in configuration affects rack inlet air temperatures which is one of the important key to effective thermal management.; In the presented research, a raised floor data center with 4.5 KW racks is considered. There are four rows of racks with alternating hot and cold aisle arrangement. Each row has six racks installed. Two CRAC units supply chilled air to the data center through the pressurized plenum. Effect of plenum depth, floor tile placement or cold aisle location and ceiling height on the rack inlet air temperature is discussed. Plots will be presented over the defined range. Now using more than one design variable, a "multi-variable" approach to optimize data center room layout is proposed. Significant improvement is shown over the thermal performance of baseline data center model. The baseline model is also optimized using the traditional approach. Multi-variable approach is also shown to have a considerable improvement over the traditional design optimization approach. Finally, the results of multi-variable design optimization are used to present guidelines for the optimal data center performance.
机译:在具有交替的热通道和冷通道的典型高架地板数据中心中,空气在整个机架高度上进入每个机架的前部。由于数据处理设备的热负荷持续快速增长,因此将温度保持在数据中心内所有机架规定的要求之内是一个挑战。设施经理可以自行决定数据中心房间的布局,但是错误的决定最终会导致设备故障。随着数据中心的发展,在设计初期需要做出许多复杂的决定。诸如优化高架地板气室,地板砖放置,最小化数据中心局部热点等挑战出现。这些配置上的调整会影响机架入口空气温度,这是有效热管理的重要关键之一。在本研究中,考虑了带有4.5 KW机架的活动地板数据中心。有四排机架,热通道和冷通道交替布置。每行安装了六个机架。两个CRAC单元通过增压气室向数据中心供应冷空气。讨论了气室深度,地板砖放置或冷通道位置以及天花板高度对机架进气温度的影响。将在定义的范围内显示图。现在,使用多个设计变量,提出了一种“多变量”方法来优化数据中心房间的布局。基线数据中心模型的热性能显示出显着改善。基线模型也使用传统方法进行了优化。与传统的设计优化方法相比,多变量方法也显示出了很大的改进。最后,将多变量设计优化的结果用于提出最佳数据中心性能的指南。

著录项

  • 作者

    Bhopte, Siddharth.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2005
  • 页码 58 p.
  • 总页数 58
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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