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Energy Audit of Data Centers and Server Rooms on an Academic Campus—A Case Study

机译:大学校园数据中心和服务器机房的能源审计—案例研究

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The main goal of the work reported here was to analyze the energy consumption profile needs and identify conservation opportunities in data centers and server rooms on a research-oriented major university campus. This study describes the energy audit of more than thirty small to medium size server rooms on the University of Maryland, College Park, Campus. Comprehensive energy audit investigations were carried out for each site to (1) determine existing infrastructure conditions and operational issues, and (2) identify growth opportunities and consolidation potential, as well as to (3) define low costo cost energy conservation measures to improve the power utilization effectiveness through the overall reduction in the energy usage. The validity of the energy conservation measures was tested through computational fluid dynamics analysis using 3D models, created using 6-sigma software from Future Facilities. Some of the energy conservation measures are quantitative, such as increasing the cooling unit return air set point temperature and number of cooling units in use, whilst other energy conservation measures are qualitative, such as optimizing the location of the vented floor tiles and modification of site layout to optimize air management. For three case study sites, the energy audit study reveals potential power utilization effectiveness improvement accompanied with annual energy savings of 93.7 MWh.
机译:此处报告的工作的主要目标是分析能耗概况的需求,并确定以研究为导向的主要大学校园中的数据中心和服务器机房的节能机会。这项研究描述了马里兰大学校园公园分校的30多个中小型服务器机房的能源审计。每个站点都进行了全面的能源审计调查,以(1)确定现有基础设施条件和运营问题,(2)确定增长机会和整合潜力,以及(3)定义低成本/无成本的节能措施,以实现以下目标:通过总体上减少能耗来提高电力利用效率。节能措施的有效性通过使用3D模型通过计算流体动力学分析进行了测试,该模型是使用Future Facilities的6-sigma软件创建的。一些节能措施是定量的,例如提高冷却装置的回风设定点温度和使用中的冷却装置的数量,而其他节能措施是定性的,例如优化通风地板砖的位置和修改场地布局以优化空气管理。对于三个案例研究场所,能源审计研究表明,潜在的电力利用效率有所提高,同时每年可节省93.7 MWh的能源。

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