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The Impact of Barometric Pressure,Temperature, and Operating Temperature Difference on Air-Cooled Data Centers

机译:气压,温度和工作温差对风冷数据中心的影响

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摘要

This paper explores how barometric pressure, air temperature, and air temperature difference affect any sensible cooling process. In data centers, the equations presented apply to the heat rejection that occurs within air-cooled servers and air-handling units used to remove the heat from the building. In this paper the focus will be on the air handlers, however the same equations are applicable to the servers The purpose of this paper is solely to bring together in one place some relevant equations, tables, and graphs that will assist engineers that are designing or evaluating sensible heat rejection systems. To be clear, the equations presented in this paper are applicable only when there is no moisture condensed in the cooling process.1. A small change in air handler or server operating delta t (At) from 20℉ (11.1℃) to 22℉ (12.2℃) results in a reduction of 9.1% in required cooling airflow for the respective air handler or server.rn2. Most cities experience normal drops in barometric pressure during the year equivalent to a 500 to 1000 ft (152.4 to 304.8 m) increase in altitude, resulting in the need for cooling air to increase by 2% to 3.5%.
机译:本文探讨了大气压力,空气温度和空气温差如何影响任何合理的冷却过程。在数据中心中,所提供的方程式适用于在风冷服务器和用于从建筑物中散热的空气处理单元内发生的散热。在本文中,重点将放在空气处理机上,但是相同的方程式也适用于服务器。本文的目的只是将一些相关的方程式,表格和图表集中到一处,这将有助于设计或制造工程师。评估合理的散热系统。需要明确的是,本文中给出的方程式仅在冷却过程中没有水分凝结时才适用。空气处理机或服务器的运行温度(At)从20℉(11.1℃)微小变化到22℉(12.2℃),导致各个空气处理机或服务器所需的冷却空气流量减少9.1%。一年中,大多数城市的气压正常下降,相当于海拔增加500至1000英尺(152.4至304.8 m),导致冷却空气需求增加2%至3.5%。

著录项

  • 来源
    《ASHRAE Transactions》 |2013年第1期|176-187|共12页
  • 作者

    Keith Dunnavant;

  • 作者单位

    Data Center Cooling Solutions with Munters Corporation, Buena Vista, VA;

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  • 原文格式 PDF
  • 正文语种 eng
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