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Air Flow Velocity Field Validation and Turbulence Studies on a Single Rack Model in Data Centers

机译:数据中心单个机架模型的气流速度场验证和湍流研究

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Due to the rapid growth in IT demands over the past few decades, the market for data centers also increases dramatically. However, thermal management remains a big issue in the design of large-scale data centers. Although best practices are deployed to utilize perforated tiles together with the hot and cold aisles configuration to improve the thermal management, thermal hotspots are inevitable in IT racks, which causes equipment failures and signal interruptions. Thermal hotspots in air-cooled data centers are due to many factors such as insufficient cold air supply from the raised-floor plenum, air recirculation from hot aisle into cold aisle, airflow non-uniformity at the perforated tiles, etc. One of the ways to mitigate such issues is to uniformly distribute the cold air by properly controlling the airflow rate through perforated tiles. In this study, a validation study of the tile airflow and the rack airflow rate ratio of 20% is carried out using an adopted tile model. Also, several turbulence models are thoroughly investigated, and recommendations are provided for the most accurate and less time-consuming turbulence model when applying to a single rack model.
机译:由于过去几十年来提高了它需求的快速增长,数据中心的市场也增加了大幅增加。然而,热管理仍然是大型数据中心设计中的一个大问题。虽然最佳实践是部署在热通道和冷通道配置,以提高热管理,以利用多孔砖在一起,热的热点是不可避免的在IT机架,这会导致设备故障和信号中断。空冷数据中心中的热热点是由于许多因素,例如从升降楼层的冷空气供应不足,空气再循环从热过道进入冷通道,穿孔瓦片的气流不均匀性等。这种方式之一为了缓解这些问题,通过穿过穿孔瓦片,通过适当地控制气流速率来均匀地分配冷空气。在该研究中,使用采用的瓦片模型进行瓷砖气流和齿条气流速率比为20%的验证研究。此外,彻底研究了几种湍流模型,并且在施加到单个机架模型时提供了用于最准确和更少耗时的湍流模型的推荐。

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