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Prototype energy models for data centers

机译:数据中心的原型能量模型

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摘要

Data centers in the United States consume about two percent of the nation's electricity. Because heat gains from IT equipment drive cooling demand, data centers offer unique opportunities for energy savings. However, no prototype energy model for data centers is available in the suite of existing U.S. Department of Energy's Commercial Prototype Building Models. This study presented the development of two new data center prototype models and their implementation in OpenStudio and EnergyPlus. The small-size data center model represents a computer room in a building served by computer room air conditioners (CRACs); while the large-sized model represents stand-alone data centers served by computer room air handlers (CRAHs) with a central chiller plant. For each data center model, two levels of IT equipment (ITE) load density were considered, to cover the wide range of IT power density of data centers: 40 and 100 W/ft(2) (430 and 1076 W/m(2)) for the computer room, and 100 and 500 W/ft(2) (1076 and 5382 W/m(2)) for the stand-alone data center. All other assumptions, such as building envelope, lighting, HVAC efficiencies and schedules, were based on the minimal requirements of ASHRAE Standard 90.1 at various vintages. We introduced a novel concept of supply and return air approach temperatures to capture the essential effects of non-uniform airflow and temperature distribution in data centers. The approach temperatures were pre-computed by computational fluid dynamics (CFD) simulations for various configurations of ITE loads and airflow containment management in data centers. A new feature was developed in EnergyPlus to implement the approach temperature method. A case study was conducted to demonstrate the use of the data center models. The two data center models cover all U.S. climate zones and can be used to evaluate energy saving measures for data centers, as well as to support development of data center energy efficiency codes and standards. (C) 2020 Elsevier B.V. All rights reserved.
机译:美国的数据中心消耗了全国电力的百分之两倍。由于IT设备的热量增加了冷却需求,因此数据中心为节能提供了独特的机会。然而,在现有的美国商业原型建筑模型的套件中没有用于数据中心的原型能源模型。本研究提出了两个新的数据中心原型模型的开发及其在OpenStudio和EnergyPlus中的实现。小型数据中心模型代表计算机室空调(CRACS)提供的建筑物中的电脑室;虽然大型模型代表了由计算机室空气处理员(CRAH)提供的独立数据中心,其中包含中央冷却器厂。对于每个数据中心模型,考虑了两个IT设备(ITE)负载密度,以覆盖数据中心的宽范围:40和100 W / FT(2)(430和1076 W / m(2 ))对于电脑室,和100和500 w / ft(2)(1076和5382 w / m(2))用于独立数据中心。所有其他假设,如建筑信封,照明,HVAC效率和计划,基于Ashrae标准90.1在各种年份的最小要求。我们介绍了一种新颖的供应概念和返回空气方法温度,以捕获数据中心的非均匀气流和温度分布的基本效果。通过计算流体动力学(CFD)模拟来预先计算方法温度,用于数据中心中的各种配置的ITE负载和气流密封管理。在EnergyPlus开发了一个新功能,以实现方法温度方法。进行案例研究以证明数据中心模型的使用。两个数据中心模型涵盖所有U.S.气候区,可用于评估数据中心的节能措施,并支持数据中心能效码和标准的发展。 (c)2020 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Energy and Buildings》 |2021年第1期|110603.1-110603.15|共15页
  • 作者单位

    Lawrence Berkeley Natl Lab Bldg Technol & Urban Syst Div One Cyclotron Rd Berkeley CA 94720 USA;

    Lawrence Berkeley Natl Lab Bldg Technol & Urban Syst Div One Cyclotron Rd Berkeley CA 94720 USA;

    Lawrence Berkeley Natl Lab Bldg Technol & Urban Syst Div One Cyclotron Rd Berkeley CA 94720 USA;

    Lawrence Berkeley Natl Lab Bldg Technol & Urban Syst Div One Cyclotron Rd Berkeley CA 94720 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Data center; EnergyPlus; Energy efficiency; Prototype energy model; Approach temperature; OpenStudio;

    机译:数据中心;energyplus;能量效率;原型能量模型;接近温度;OpenStudio;

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