首页> 外文会议>ASME biennial conference on engineering systems design and analysis >VALIDATION OF TURBULENT NATURAL CONVECTION IN A SQUARE CAVITY FOR APPLICATION OF CFD MODELING TO HEAT TRANSFER AND FLUID FLOW IN A DATA CENTER
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VALIDATION OF TURBULENT NATURAL CONVECTION IN A SQUARE CAVITY FOR APPLICATION OF CFD MODELING TO HEAT TRANSFER AND FLUID FLOW IN A DATA CENTER

机译:验证正方形腔中的湍流自然对流,以应用CFD模型在数据中心中的传热和流体流动

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Air flow management in a Data-center is a critical problem when designing HVAC (Heating, Ventilation and Air-Conditioning) system. Providing a sufficient cooling air volume at a designed temperature to all the informatics equipments, avoiding recirculation phenomenon, optimizing the installations in order to minimize the temperature difference between air exiting the CRAC (Computer Room Air Conditioning) and the air at the intake of the servers are parts of the multiples target that have to be reached in order to have the most efficient ventilation system. In most of today's data center, the IT (Information Technology) equipment dissipates between 12kW of heat for regular material, to up to 32kW for the recent high density server's rack. Such a power release has to be cooled by efficient cooling system. During this process the airflow temperature can increase by over 10K, and the air velocity can vary from 0.09m/s to more than 5m/s. Considering these large gradient of temperature and air speed several phenomenon must be taken into account, including turbulent natural convection. To achieve these goals, we will use a CFD software to predict the airflow behaviour inside the Data-center. Therefore, the code must be able to accurately model turbulent airflow and heat transfers. We used the software to simulate a 2D turbulent natural convection in a square cavity. The k-ε equations were solved to predict turbulent effects. The obtained results were compared to an experimental benchmark and are presented in the document. In the last part of the paper we present the results of a 2D simulation representing a working server in a computer room cooled by a CRAC (Computer Room Air Conditioning) unit. The airflow characteristics in the whole domain were determined using various dimensionless numbers in order to select the right physical and mathematical objects. Finally the results of a 3D simulation are presented and the cooling system performances are estimated.
机译:数据中心的空气流量管理是设计HVAC(加热,通风和空调)系统时的关键问题。在设计温度下为所有信息设备提供足够的冷却空气量,避免了再循环现象,优化安装装置,以最小化离开CRAC(计算机空调)和在供应器的摄入时的空气之间的空气之间的温差是必须达到的倍数目标的部分,以便具有最有效的通风系统。在今天的大多数数据中心,IT(信息技术)设备为常规材料的12kW的热量耗散,最近的高密度服务器机架高达32kW。这种动力释放必须通过有效的冷却系统冷却。在该过程中,气流温度可以增加超过10k,并且空气速度可从0.09m / s变化至超过5m / s。考虑到这些较大的温度和空气速度的梯度,必须考虑几种现象,包括湍流自然对流。为了实现这些目标,我们将使用CFD软件预测数据中心内的气流行为。因此,代码必须能够准确地模拟湍流气流和热传输。我们使用该软件在方腔中模拟2D湍流自然对流。解决了K-ε等式以预测湍流效应。将获得的结果与实验基准进行比较,并在文件中呈现。在本文的最后一部分中,我们介绍了代表由CRAC(计算机空调)单元冷却的计算机室中的工作服务器的2D模拟结果。使用各种无量纲数确定整个域中的气流特性,以选择正确的物理和数学对象。最后提出了3D模拟的结果,并且估计了冷却系统性能。

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