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Comparative analysis of widely used air containment systems in commercial data centers for maximum cooling performance.

机译:对商业数据中心中广泛使用的空气遏制系统进行比较分析,以实现最大的冷却性能。

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摘要

Many data centers implement containment systems to improve cooling system performance. Literature review shows that Hot Aisle Containment System (HACS) have higher supply air temperature set point than Cold Aisle Containment Systems (CACS) [1]. CACS in data centers have claims to support higher density loads when compared to HACS systems. Data center owners suggest that containment of a group of racks can be a very effective technique to improve cooling performance. On the other hand, others suggest that fewer area for containment is better than no containment in data centers that favours the partially contained architectures of HACS and CACS.The optimum containment architecture in terms of cooling and saving power is becoming imperative for every data center nowadays.;In this study, a data center from published literature is modeled in a commercially available computational fluid dynamics (CFD) tool and simulation results of this model are validated with the published paper. The data center is a hot aisle/cold aisle raised floor data center. Cooling is provided with one computer room air conditioning (CRAC) unit to the data center room. The raised floor data center is implemented with various containment architectures ranging from partial containment to full containment of racks. There are eight configurations that are compared in terms of fan power and Inlet supply temperature for the servers. The objective of this study is to compare the cooling performances for these eight cases and determine the reasons behind them and also come up with new guidelines for the data center owners.
机译:许多数据中心都实施了围堵系统,以提高冷却系统的性能。文献综述显示,热通道气流遏制系统(HACS)的供气温度设定点高于冷通道气流遏制系统(CACS)[1]。与HACS系统相比,数据中心的CACS声称可以支持更高的密度负载。数据中心所有者建议围堵一组机架是提高冷却性能的非常有效的技术。另一方面,其他人则建议在数据中心中容纳更少的区域总比没有容纳要好,这有利于采用HACS和CACS的部分容纳架构。如今,就冷却和节能而言,最佳的容纳架构已成为每个数据中心的当务之急在这项研究中,使用市售的计算流体动力学(CFD)工具对来自已发表文献的数据中心进行建模,并使用已发表的论文验证了该模型的仿真结果。数据中心是热通道/冷通道活动地板数据中心。一台机房空调(CRAC)单元为数据中心机房提供冷却。高架地板数据中心采用各种容纳架构来实现,从部分容纳到完全容纳机架。根据服务器的风扇功率和入口电源温度比较了八种配置。这项研究的目的是比较这八种情况的制冷性能,并确定其背后的原因,并为数据中心所有者提出新的指南。

著录项

  • 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.Engr.
  • 年度 2013
  • 页码 71 p.
  • 总页数 71
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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