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Dynamics of cold aisle air distribution in a raised floor data center

机译:高架地板数据中心中冷通道气流分布的动态

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Server manufacturers test compute equipment under ideal conditions such as quiescent surroundings, with no adverse pressure gradients at the inlet, which, hardly exist in a real data center. The dynamics of cold air delivery to the server can significantly impact server cooling and performance, especially at higher rack densities. Presently, very little is known on the physics of cold air distribution in a rack in a high density data center environment. The experimental work reported in this paper provides an insight into the raised floor cold air delivery system currently adopted for rack cooling in a hot aisle/cold aisle data center. Air flow measurements using Particle Image Velocimetry (PIV) are performed in the cold aisle at the inlet of a single rack. Two cases of perforated tile air delivery rates are investigated. The first case with no discharge from the tile represents the ideal case under which the servers are typically tested by manufacturers. The second case represents a realistic high density data center environment, wherein 0.755 m3/s (∼1600 CFM) of air is discharged through the perforated tile. The analysis of the flow dynamics at the perforated tile surface, rack inlet and cold aisle boundaries is reported for both cases. A distinct change in the cold aisle air velocities and flow pattern at the interrogation boundaries is observed for both the cases.
机译:服务器制造商在理想的条件下(例如静态环境)对计算设备进行测试,并且入口处没有不利的压力梯度,而在实际的数据中心中几乎没有这种压力梯度。向服务器输送冷空气的动态可能会严重影响服务器的散热和性能,尤其是在机架密度较高的情况下。当前,对于高密度数据中心环境中机架中的冷空气分配的物理学知之甚少。本文报道的实验工作提供了对当前在热通道/冷通道数据中心中用于机架冷却的活动地板冷空气输送系统的见解。使用颗粒图像测速(PIV)的气流测量是在单个机架入口的冷通道中进行的。研究了两种穿孔的瓷砖空气输送速率的情况。瓷砖没有放电的第一种情况是理想的情况,在这种情况下,服务器通常由制造商进行测试。第二种情况表示现实的高密度数据中心环境,其中0.755 m 3 / s(〜1600 CFM)的空气通过多孔砖排出。两种情况都报告了对多孔砖表面,机架入口和冷通道边界处的流动动力学的分析。在两种情况下,在询问边界处的冷通道空气速度和流动模式都有明显变化。

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