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首页> 外文期刊>ASHRAE Transactions >Thermal Energy Storage for Emergency Cooling-Part 2
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Thermal Energy Storage for Emergency Cooling-Part 2

机译:应急冷却用热能存储-第2部分

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摘要

A disruption of electrical power causing the lack of cooling to temperature sensitive equipment (for example, internet data centers) can cause failure in a matter of several minutes or less. The availability of appropriately designed and built emergency cooling systems would prevent data loss andfailure of the equipment. The objective of this research is to develop useful and practical design methodologies for the design of emergency cooling systems. To accomplish this, ten candidate facility types were examined concerning their cooling load profile and design variables. Three of these - data center, manufacturing clean room, and specialized laboratory -were examined in greater detail in conjunction with five conceptual chilled water emergency cooling designs, including chilled water and ice-storage systems. The software Transient System Simulation (TRNSYS) was used to develop and examine the transient behavior of all the chilled water systems when applied to the three emergency cooling applications. From these designs and their associated cost analyses, a design methodology consisting of a general approach to cooling system type selection, component sizing, economic analysis, and design criteria was developed.
机译:电源中断导致对温度敏感设备(例如,互联网数据中心)的冷却不足,可能会在几分钟或更短的时间内导致故障。适当设计和建造的应急冷却系统的可用性将防止数据丢失和设备故障。这项研究的目的是开发用于应急冷却系统设计的实用实用设计方法。为此,检查了十种候选设施类型的冷却负荷曲线和设计变量。结合五个概念性冷水应急冷却设计,包括冷水和储冰系统,对其中的三个(数据中心,制造洁净室和专门实验室)进行了更详细的检查。当将瞬态系统仿真软件(TRNSYS)应用于三种紧急冷却应用时,可用于开发和检查所有冷冻水系统的瞬态行为。从这些设计及其相关的成本分析中,开发了一种设计方法,该方法包括用于冷却系统类型选择,组件选型,经济分析和设计标准的通用方法。

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  • 来源
    《ASHRAE Transactions 》 |2013年第2期| 76-88| 共13页
  • 作者单位

    US Air Force in Vandenberg AFB, CA;

    Ceram Environmental, Overland Park, KS;

    Mechanical and Nuclear bngineering Department of Kansas State University, Manhattan, KS;

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  • 正文语种 eng
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