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Unique Airflow Visualization Techniques for the Design and Validation of Above-Plenum Data Center CFD Models

机译:独特的气流可视化技术,用于设计和验证中上数据中心CFD模型

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摘要

One cause for the substantial amount of energy used for data center cooling is poor airflow effects such as hot-aisle to cold-aisle air recirculation. To correct these and to investigate innovative designs that will notably increase efficiency requires a robust, well-verified computational fluid dynamics (CFD) model. Most above-plenum data center CFD models are only validated using temperature data. Although a temperature-only validation method can be useful, it does not confirm that the airflow patterns predicted by the CFD model are accurate. Since the airflow patterns above a raised-floor plenum should be confidently understood before they can be optimized, it is necessary to adopt a validation method that offers more than just a comparison of temperature data. This paper summarizes the unique validation process of a CFD model for a small data center test cell located in Cambridge, Massachusetts. The validation method features point velocity and temperature measurements and the use of small neutrally-buoyant bubbles to visualize the airflow patterns above a raised-floor plenum. The data center test cell was designed to emulate a standard hot-aisle and cold-aisle airflow configuration. The airflow visualization revealed that each perforated tile had a substantial non-uniform air velocity distribution leading to an unexpected three-dimensional flow pattern above the racks. When this surprising reality was properly accounted for in the CFD boundary conditions, good agreement was found with the observed airflow patterns. It is the purpose of this paper to show the difficulties and value of utilizing more robust validation techniques for data center CFD models.
机译:数据中心冷却使用大量能源的原因之一是气流影响不佳,例如热通道到冷通道的空气再循环。要纠正这些问题并研究可显着提高效率的创新设计,需要一个可靠且经过充分验证的计算流体动力学(CFD)模型。多数高于压力的数据中心CFD模型仅使用温度数据进行验证。尽管仅使用温度的验证方法可能有用,但它无法确认CFD模型预测的气流模式是否准确。由于在进行优化之前,应该自信地理解高架通风室上方的气流模式,因此有必要采用一种验证方法,该方法不仅可以提供温度数据的比较。本文总结了位于马萨诸塞州剑桥市的小型数据中心测试单元的CFD模型的独特验证过程。该验证方法具有点速度和温度测量功能,并使用小的中性浮力气泡来可视化高架增压室上方的气流模式。数据中心测试单元旨在模拟标准的热通道和冷通道气流配置。气流可视化显示,每个多孔砖的风速分布都非常不均匀,导致机架上方出现了意外的三维流动模式。当在CFD边界条件中适当考虑了这一令人惊讶的现实时,发现与观察到的气流模式具有很好的一致性。本文的目的是说明将更强大的验证技术用于数据中心CFD模型的困难和价值。

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  • 来源
    《ASHRAE Transactions》 |2011年第2011期|p.206-211|共6页
  • 作者

    Michael Lloyd; Leon Glicksman;

  • 作者单位

    was a M.S. student in the Building Technology Program, Massachusetts Institute of Technology (MIT), Cambridge, MA. He graduated in June of 2010;

    is a Professor of Mechanical Engineering and Building Technology at MIT, Cambridge, MA;

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  • 正文语种 eng
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