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1. 广西机电职业技术学院
2. 广西桂物金岸制冷空调技术有限责任公司
3. 南京师范大学能源与机械工程学院
纸质出版日期:2023,
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刘义军, 马志荣, 陈萌, 等. 地板下送风方式和几何参数对数据中心热性能的影响[J]. 制冷学报, 2023,44(1).
LIU YIJUN, MA ZHIRONG, CHEN MENG, et al. Influence of Floor Air Supply Methods and Impact of Geometric Parameters on the Thermal Performance of Data Centers. [J]. Journal of refrigeration, 2023, 44(1).
刘义军, 马志荣, 陈萌, 等. 地板下送风方式和几何参数对数据中心热性能的影响[J]. 制冷学报, 2023,44(1). DOI: 10.3969/j.issn.0253-4339.2023.01.071.
LIU YIJUN, MA ZHIRONG, CHEN MENG, et al. Influence of Floor Air Supply Methods and Impact of Geometric Parameters on the Thermal Performance of Data Centers. [J]. Journal of refrigeration, 2023, 44(1). DOI: 10.3969/j.issn.0253-4339.2023.01.071.
数据中心室内热环境取决于送风气流分布,而送风系统的几何结构会显著影响送风气流分布。本文对比了4种常用的送风方式,即冷/热通道开放式系统、热通道封闭式系统、机架下送风系统和冷通道封闭式系统。对于每种送风方式,研究了静压箱高度、穿孔率、挡板位置和挡板角度等几何因素对数据中心气流组织的影响。利用ANSYS Fluent建立了288个不同送风方式和配置的CRAC模型。利用SmartAisle?冷通道封闭系统的温度测量数据对模型进行了验证。对比了平均机架温度、平均热点温度以及热性能评价系数和回风温度指数。结果表明:在一定范围内增加静压箱高度或降低穿孔率均有助于提高热性能。分析室内截面温度云图和相关评价指标得出,在冷通道封闭情况下总体性能最佳。最后,在冷通道封闭系统模型中对比了采用\/型和/\型挡板时各因素的影响,得到采用\/型和/\型挡板时的最佳穿孔率均为20%,而最佳静压高度分别为0.5 m和0.6 m。总体而言,\/型挡板比/\型挡板温度分布更为均匀。
The indoor thermal environment of data centers is based on the supply airflow distribution
which is significantly affected by the geometric configuration of the air-supply system. This study compares four commonly used air supply layouts
namely the cold/hot-aisle airflow open-ended system
hot aisle containment system
cold aisle under racks system
and cold aisle containment system. For each air supply layout
geometric factors such as the plenum height
perforation rate
baffle position
and baffle angles were investigated. Using ANSYS Fluent
up to 288 models of CRAC with different air supply modes and configurations were built. The models were validated using the temperature measurement data at the SmartAisle? cold aisle containment system. The average rack and hot spot temperatures
thermal performance evaluation index
and return temperature index were used as the metrics for comparison. The results show that both increasing the plenum height and decreasing the perforation rate within a certain range contribute to thermal performance improvement. Considering the room temperature profile and evaluation metrics
the overall best performance is achieved in the cold aisle containment case. Finally
the effects of various factors when using \/-shaped and /\-shaped baffles were compared using the models of the cold aisle containment system. The results show that when using \/-shaped and /\-shaped baffles
the optimal perforation rate is 20%
while the optimal static pressure height is 0.5 m and 0.6 m
respectively. Overall
\/-shaped baffles achieve better temperature uniformity than /\-shaped baffles.
数据中心几何构型送风方式热性能评价系数
data centergeometric configurationair supply modethermal performance evaluation index
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