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Qualitative Study of Cumulative Corrosion Damage of Information Technology Equipment in a Data Center Utilizing Air-Side Economizer Operating in Recommended and Expanded ASHRAE Envelope

机译:利用空气侧助长器经营的数据中心信息技术设备累积腐蚀损伤的定性研究,推荐和扩建ASHRAE信封

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摘要

Deployment of airside economizers (ASEs) in data centers is rapidly gaining acceptance to reduce cost of cooling energy by reducing hours of operation of computer room air conditioning (CRAC) units. Airside economization has associated risk of introducing gaseous and paniculate contamination into data centers, thus degrading the reliability of information technology (IT) equipment. The challenge is to determine reliability degradation of IT equipment if operated in environmental conditions outside American Society of Heating, Refrigeration, and Air-Conditioning Engineers (ASHRAE) recommended envelope with contamination severity levels higher than G1. This paper is a first attempt at addressing this challenge by studying the cumulative corrosion damage to IT equipment operated in an experimental modular data center (MDC) located in an industrial area with measured level of air contaminants in ISA severity level G2. This study serves several purposes including: correlating IT equipment reliability to levels of airborne corrosive contaminants and studying degree of reliability degradation when IT equipment is operated outside ASHRAE recommended envelope at a location with high levels of contaminants. Reliability degradation of servers exposed to outside air via an airside economizer was determined qualitatively by examining corrosion of components in these servers and comparing the results to corrosion of components in other similar servers that were stored in a space where airside economization was not used. In the 4 years of the modular data center's servers' operation, none of the servers failed. This observation highlights an opportunity to significantly save data center cooling energy by allowing IT equipment to operate outside the currently recommended and allowable ASHRAE envelopes and outside the ISA severity level G1.
机译:通过减少计算机空调(CRAC)单位的运行时间,数据中心中的空中透露者(ASES)的部署正在迅速获得降低冷却能量成本的接受。空中节约能力具有引入气态并将污染引入数据中心的风险,从而降低信息技术(IT)设备的可靠性。挑战是确定IT设备的可靠性退化,如果在美国加热,制冷和空调工程师(ASHRAE)建议的污染严重程度高于G1的污染严重程度上的环境条件下运营的可靠性退化。本文是通过研究位于工业区的实验模块化数据中心(MDC)中运营的IT设备的累积腐蚀损坏来解决这一挑战的首次尝试,该挑战是在ISA严重程度级别G2中测量的空气污染物的水平。本研究提供了多种目的,包括:将IT设备可靠性与空气腐蚀性污染物水平相关,并在含有高水平污染物的位置的推荐包络外部运行时,在ASHRAE的推荐包络处进行可靠性降级程度。通过检查这些服务器中的组分的腐蚀并将结果与​​储存在不使用空气空间经济化的空间中的其他类似服务器中的组分腐蚀的结果进行定性地确定暴露于外侧储存器的服务器暴露于外部空气的服务器的可靠性降低。在模块化数据中心的服务器操作的4年中,没有任何服务器都失败了。该观察突出了机会通过允许IT设备在当前推荐和允许的ASHRAE信封外部和ISA严重程度G1外部操作来显着节省数据中心冷却能量。

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  • 来源
    《Journal of Electronic Packaging》 |2017年第2期|020903.1-020903.11|共11页
  • 作者单位

    Mechanical and Aerospace Engineering Department University of Texas at Arlington Arlington TX 76019;

    Mechanical and Aerospace Engineering Department University of Texas at Arlington Arlington TX 76019;

    Mechanical and Aerospace Engineering Department University of Texas at Arlington Arlington TX 76019;

    Mechanical and Aerospace Engineering Department University of Texas at Arlington Arlington TX 76019;

    IBM Corporation 2455 South Road Poughkeepsie NY 12601;

    Mestex a Division of Mestek Inc. 4830 Transport Drive Dallas TX 75247;

    Mestex a Division of Mestek Inc. 4830 Transport Drive Dallas TX 75247;

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  • 正文语种 eng
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