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Performance analysis of a simulated container data center subject to airflow resistance

机译:模拟容器数据中心的性能分析受气流阻力的影响

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In this paper, the influence of pressure resistance in the data rack on the cooling performance of a simulated container data center is experimentally investigated. It is found that the pressure resistance may impose a significant influence on the airflow distribution. The perforated resistance with specific porosity (F) of 32% calculated by the porous jump model is identified to appropriately mimic the porous zone of real servers. The flow reversal may occur at the top part of the rack when the pressure resistance is low, and this phenomenon is verified by a dry ice experiment. Results show that the flow reversal causes severe hot spots at the top part of racks. By imposing the perforated resistance, the hot spots in the central and top part of the simulated racks can be effectively removed. However, hot spots at the entrance of the simulated rack still persist and even enlarge. The cooling performance may deteriorate pronouncedly after introducing the gap spacing between racks, and the deterioration reaches a plateau after the gap spacing is increased to 38 mm. It is indicated that the aisle containment at the entrance and exit of the cold aisle shows pronounced improvement on the cooling performance in a container data center.
机译:本文研究了数据架中耐压性对模拟容器数据中心的冷却性能的影响是通过实验研究的。发现耐压性可能对气流分布施加显着影响。通过多孔跳跃模型计算的32%的特定孔隙率(F)的穿孔抗性被鉴定为适当地模仿真实服务器的多孔区域。当耐压性低时,流动反转可能发生在机架的顶部,并且通过干冰实验验证这种现象。结果表明,流量反转导致机架顶部的严重热点。通过施加穿孔电阻,可以有效地去除模拟架的中央和顶部的热点。然而,模拟机架入口处的热点仍然存在甚至放大。在引入齿条之间的间隙间隔之后,冷却性能可能会劣化,并且在间隙间隔增加到38mm之后,劣化达到平台。表示冷通道的入口和出口处的过道遏制显示了对容器数据中心的冷却性能的明显改善。

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