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首页> 外文期刊>Journal of Electronic Packaging >Experimentally Validated Computational Fluid Dynamics Model for a Data Center With Cold Aisle Containment
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Experimentally Validated Computational Fluid Dynamics Model for a Data Center With Cold Aisle Containment

机译:具有冷通道气流遏制的数据中心的实验验证计算流体动力学模型

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This paper presents the results of an experimentally validated computational fluid dynamics (CFD) model for a data center with fully implemented fan curves on both the servers and the computer room air conditioner (CRAC). Both open and contained cold aisle systems are considered in this study. This work is divided into sections for the baseline system (prior to installing containment) calibration and the fully contained cold aisle system calibration and leakage characterization. In the open system, the fan curve of the CRAC unit is extracted from the manufacturer data, while the fan curve of the load banks is obtained through experimental measurements. The experimental results are found to be in good agreement with the average model predictions. In the fully contained cold aisle system, a detailed containment CFD model is developed based on experimental measurements. The model is validated by comparing the flow rate through the perforated floor tiles and the rack inlet temperatures with the experimental measurements. The CFD results are found to be in good agreement with the experimental data with an average relative error between the measured and computed flow rate of approximately 6.7%. Temperature measurements are used to calibrate the sources of leakage in the containment and rack mounting rails. The temperature measurements and the CFD results agree well with an average difference of less than 1℃. This study provides important modeling guidelines for data centers. In order to predict the performance of contained cold aisle systems flow distribution, it is crucial that physics based models of fan curves, server internal resistances, detailed rack models, and other design details are all accurate and experimentally verified.
机译:本文介绍了针对数据中心的经过实验验证的计算流体动力学(CFD)模型的结果,该模型在服务器和计算机机房空调(CRAC)上均具有完全实现的风扇曲线。这项研究考虑了开放式和封闭式冷通道系统。这项工作分为基线系统(在安装安全壳之前)校准以及完全封闭的冷通道系统校准和泄漏特性描述两部分。在开放式系统中,从制造商数据中提取CRAC单元的风扇曲线,而通过实验测量获得负载组的风扇曲线。实验结果与平均模型预测值非常吻合。在完全封闭的冷通道系统中,基于实验测量结果开发了详细的封闭CFD模型。通过将穿孔地板砖的流率和机架入口温度与实验测量值进行比较来验证该模型。发现CFD结果与实验数据非常吻合,测量和计算的流量之间的平均相对误差约为6.7%。温度测量用于校准安全壳和机架安装导轨中的泄漏源。温度测量结果和CFD结果与平均差小于1℃非常吻合。这项研究为数据中心提供了重要的建模指南。为了预测封闭式冷通道系统流量分布的性能,至关重要的是,必须对基于物理的风扇曲线模型,服务器内部电阻,详细的机架模型以及其他设计细节进行精确的实验验证。

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