增压室空间
气流
过道
体积流量
分布均匀性
容器(类型理论)
瓦片
多孔性
通风(建筑)
机械工程
模拟
材料科学
机械
工程类
结构工程
物理
复合材料
作者
Wenxiao Chu,Chi‐Chuan Wang
出处
期刊:IEEE Transactions on Components, Packaging and Manufacturing Technology
[Institute of Electrical and Electronics Engineers]
日期:2019-05-10
卷期号:9 (11): 2177-2188
被引量:18
标识
DOI:10.1109/tcpmt.2019.2916017
摘要
In this paper, the cooling performance of a small container data center is numerically investigated. It is indicated that adjusting the plenum depth and placing baffles in the plenum can improve the airflow uniformity efficiently. On the other hand, the perforated tiles with low porosity of 25% also can significantly improve the air flowrate distribution by 88.9% with the severe pumping power penalty of 2.79 times. Hence, the layout of perforated tiles with nonuniform porosities is optimized with the fixed average porosity of 50%, which can obtain almost absolutely uniform flowrate distribution in the cold aisle. In addition, the cold aisle containment (CAC) strategy is implemented, resulting in the improved rack cooling index (RCI) and supply heat index (SHI) to approach to 100% and 0%, respectively. However, the intake flowrates still suffer from nonuniformity due to the bypass effect, thus a novel criterion named flowrate uniformity index (FUI) is proposed. Besides, the drawer-type layouts with the shifting distance (δ) varying from 0 to 200 mm are investigated, and the case with δ = 150 mm shows the best improvement in terms of the standard deviation of FUI (σ FUI ). Moreover, the σ FUI of the case with a three-layer drawer-type layout can be further improved by 45.8%.
科研通智能强力驱动
Strongly Powered by AbleSci AI