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CFD based design and optimization of louver blade angles to enhance better air flow distribution and improve thermal efficiency of it equipment in data centers

机译:基于CFD的百叶窗叶片角度设计和优化,以改善气流分布并提高数据中心IT设备的热效率

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摘要

A data center is a depository which stores, processes and distribute large amounts of data and information using computer systems and associated components for power supplies, cooling systems. Modular data center is a portable method of deploying traditional large data center capacity into a small portable unit. According to the Uptime Institute, the amount of heat generated inside IT equipment has been increasing significantly. Data centers are using nearly 60% of their power in employing expensive cooling techniques. In addition, the cost of cooling has necessitated a need to reduce or eliminate mechanical cooling. As such, Air Economization, Direct and Indirect evaporative cooling techniques are effective methods for extending free cooling. These cooling techniques can only be efficient when coupled with proper air flow management inside the data center. The air handling unit is responsible to distribute the conditioned air inside the data center. The air from cooling unit is passed into the IT Pod through a set of angled slats or fixed strips hung at regular intervals called Louvers.;Louvers are very essential and basic components of any HVAC systems. It is often overlooked or not given due importance while designing. Poor air flow management can cause air recirculation in the cold aisle creating a low pressure region. The fans inside the servers have to draw air and cool the IT after overcoming this negative pressure differential which in turn makes the fan to draw less amount of air than specified. This causes insufficient cooling of the IT equipment and thereby increasing the amount of heat generated inside the servers.;These Louver blades are adjustable, placed inside duct entries to regulate the flow of air. The air flow distribution inside the data center should be optimum with minimum air recirculation. The amount of air flow inside the data center is regulated by the free area of a Louver. The orientation of Louver blades gives the air flow pattern in the data center. These two factors are very crucial while designing and selecting a Louver as they have a significant impact on its performance. The focus of this study is to characterize the air flow pattern with the appropriate Louver orientation and thus provide sufficient amount of air passed into the IT pod with minimum air recirculation. The air from the cooling unit can only be fully utilized when it is followed by proper air flow management inside the data center. This reduces the heat generated in the IT equipment and thereby increases its efficiency and reliability which saves significant amount of energy and cost involved in the cooling applications.;The study was done in collaboration with industrial partner and results have been verified and adopted.
机译:数据中心是使用计算机系统以及电源,冷却系统的相关组件来存储,处理和分发大量数据和信息的存储库。模块化数据中心是一种将传统的大型数据中心容量部署到小型便携式单元中的便携式方法。根据Uptime Institute的调查,IT设备内部产生的热量已经大大增加。数据中心在采用昂贵的冷却技术时消耗了将近60%的电量。另外,冷却成本需要减少或消除机械冷却。这样,空气节约,直接和间接蒸发冷却技术是扩展自由冷却的有效方法。这些冷却技术只有在与数据中心内部适当的空气流管理相结合时才有效。空气处理单元负责在数据中心内部分配经过调节的空气。冷却装置中的空气通过一组以规则间隔悬挂的成角度的板条或固定板条(称为百叶窗)进入IT吊舱。百叶窗是任何HVAC系统中非常重要的基本组成部分。在设计时通常会忽略或不给予应有的重视。不良的气流管理会导致冷通道中的空气再循环,从而形成低压区域。在克服此负压差之后,服务器内部的风扇必须抽气并为IT降温,这反过来会使风扇吸取的空气量少于规定的数量。这会导致IT设备的散热不足,从而增加服务器内部产生的热量。这些百叶窗叶片是可调的,放置在风道入口处以调节气流。数据中心内部的气流分布应达到最佳,同时空气再循环最少。数据中心内部的气流量由百叶窗的自由区域调节。百叶窗叶片的方向给出了数据中心的气流模式。在设计和选择百叶窗时,这两个因素至关重要,因为它们会对百叶窗的性能产生重大影响。这项研究的重点是表征具有适当百叶窗方向的气流模式,从而以最少的空气再循环量提供足够的空气进入IT机舱。只有在数据中心内部进行适当的气流管理之后,才能充分利用冷却单元中的空气。这减少了IT设备中产生的热量,从而提高了效率和可靠性,从而节省了制冷应用中涉及的大量能源和成本。;该研究是与行业合作伙伴合作完成的,结果已得到验证和采用。

著录项

  • 作者

    Ray, Avinash Kumar.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Mechanical engineering.
  • 学位 M.S.M.E.
  • 年度 2016
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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