使用可逆风扇系统的高架地板数据中心冷却的参数研究

Zhihang Song, J. Dong
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引用次数: 1

摘要

主动瓷砖冷却已经成为一种先进的热管理方法,为高架地板数据中心提供适量的冷却空气。然而,当数据中心过冷时,如何减少crac提供的冷却空气的浪费仍然是一个难题。鉴于这一问题,本文特别研究了可逆风机系统,包括管道系统组件和风机单元。这种配置能够将冷却空气向上输送到地板上的空间,也可以相反地将不必要的冷却空气吸入到地板下的静压室内,这是一种智能的解决方案。通过这种方式,风扇单元能够比主动瓦系统的传统风扇单元更灵活地控制穿孔瓦的气流。建立了计算流体力学(CFD)模型,分析了采用可逆风机系统的架空数据中心冷却性能,定义了可逆风机机组的转速、旋转方向和垂直位置等关键工况,并对机架入口局部温度、冷通道气流分布等气流/热性能进行了观察和比较。最后,结果表明,可逆风机系统能够有效和经济地管理气流和热分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parametric investigation of a raised-floor data center cooling using a reversible fan system
The active tile cooling has become one advanced thermal management approach for offering an appropriate amount of cooling air to raised-floor data centers. However, difficulty remains to alleviate the waste of the CRAC-supplied cooling air when the data center is over-cooled. In view of this concern, this paper especially investigated a reversible fan system, including a ductwork assembly and a fan unit. This configuration was capable of delivering cooling air upwards into the above-floor space as well as working oppositely to draw unnecessary cooling air backwards into the under-floor plenum to be a smart solution. In this way, the fan unit was able to control the airflow of the perforated tile more flexibly than the conventional fan unit of the active tile systems. The computational fluid dynamics (CFD) model was established to analyze the performance of a raised-floor data center cooling using the reversible fan system, and the key operating conditions (e.g., the rotational speed, rotational direction and the vertical position of the reversible fan unit) were defined and the airflow/thermal performances (e.g., local rack inlet temperature, and the air flow distribution in the cold aisle) were observed and compared carefully. Eventually, the results indicate that the reversible fan system is capable of managing the airflow and thermal distributions efficiently and economically.
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