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Studying the fan-assisted cooling using the Taguchi approach in open and closed data centers

机译:使用Taguchi方法在开放式和封闭式数据中心中研究风扇辅助冷却

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This research examined the application of fan-assisted cooling within open and contained raised-floor data centers with the intention of assessing the effectiveness of the system's cooling method. A computational fluid dynamics (CFD) approach that incorporated both airflow and thermal analysis was employed to examine the detailed effectiveness of fan-assisted air-cooling in a data center that exhibited the behavior of under-cabinet leakage. The CFD technique was also used to assess the impact that three distinct aspects had on the performance of the fan-assisted air-cooling system: cold aisle containment, straightened air flow and fan-to-tile distance. In addition, the mixed-level Taguchi statistical approach was applied to understand how variations in these parameters directly and interactively modified the heat transfer in the surroundings of the inlets of the server racks. The results of the research reveal that fan-assisted perforations, taking the combination of the key factors (the main and interact effects) into account, would represent a viable means through which the cooling systems employed in both open and closed aisle data centers can be enhanced. The well-constructed CFD-based Taguchi methodology might yield a good level of validity for use in substantial and timely optimization procedures to further improve the cooling effectiveness and efficiencies of data centers.
机译:这项研究检查了风扇辅助冷却在开放式和包含地板数据中心内的应用,目的是评估系统冷却方法的有效性。采用结合了气流和热分析的计算流体动力学(CFD)方法来检查数据中心中表现出橱柜下泄漏行为的风扇辅助空气冷却的详细有效性。 CFD技术还用于评估三个不同方面对风扇辅助的空气冷却系统的性能的影响:冷通道气流遏制,气流拉直和风扇至砖间的距离。另外,采用了混合级Taguchi统计方法来了解这些参数的变化如何直接和交互地修改服务器机架入口周围环境中的热传递。研究结果表明,考虑到关键因素(主要和相互作用)的结合,风扇辅助穿孔将成为一种可行的方式,通过这种方式,可以在开放式和封闭式过道数据中心中使用冷却系统。增强。构造良好的基于​​CFD的Taguchi方法可能会产生良好的有效性,可用于大量及时的优化程序中,以进一步提高数据中心的冷却效率和效率。

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