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首页> 外文期刊>IEEE Transactions on Components and Packaging Technologies >Prediction of Cold Aisle End Airflow Boundary Conditions Using Regression Modeling
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Prediction of Cold Aisle End Airflow Boundary Conditions Using Regression Modeling

机译:基于回归模型的冷通道末端气流边界条件预测

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This paper is a continuation of the development of software tools that estimate, in real time or in near-real time, the cooling performance of a cluster of racks bounding a common cold aisle in a raised-floor data center environment. A fundamental assumption within the algorithm of these tools is that the computation of airflow patterns inside the cold aisle can be decoupled from the room environment. The effect of the room environment impacts the solution in the estimation of the cooling performance primarily through the airflow boundary conditions prescribed at the ends of the cold aisle. Consequently, the accuracy of the cooling-performance tool is directly linked to the accuracy of the end airflow prediction for any room environment. The end airflow is a complex function of many factors including the location and airflow rate of each rack, the perforated-tile airflow rate, and room environment conditions. As shown here, the dominant room-environment parameter is the difference between ambient and supply air temperatures. This paper describes the model developed to estimate the end airflow rate. End airflow values are calculated from several hundred computational fluid dynamics (CFD) scenarios covering a broad range of rack airflow (and power) distributions, tile flow rates, and room environments. An end airflow model is developed based on a regression analysis from the CFD data, which facilitates the real-time prediction of the end airflow for any practical cluster layout and room environment. The difference between accepted and predicted end airflow values is typically less than 25% of the accepted value or per-tile airflow rate.
机译:本文是软件工具开发的延续,该软件工具可以实时或近乎实时地估算在活动地板数据中心环境中以公用冷通道为边界的机架集群的散热性能。这些工具的算法中的一个基本假设是,冷通道内气流模式的计算可以与室内环境分离。室内环境的影响主要通过冷通道末端规定的气流边界条件来影响制冷性能评估中的解决方案。因此,对于任何房间环境,冷却性能工具的准确性都与最终气流预测的准确性直接相关。最终气流是许多因素的复杂函数,包括每个机架的位置和气流速率,穿孔砖气流速率以及房间环境条件。如此处所示,主要的房间环境参数是环境温度和送风温度之差。本文介绍了用于估算最终气流速率的模型。最终气流值是根据数百种计算流体动力学(CFD)方案计算得出的,这些方案涵盖了广泛的机架气流(和功率)分布,瓷砖流速和房间环境。根据CFD数据的回归分析开发了最终气流模型,该模型有助于对任何实际群集布局和房间环境的最终气流进行实时预测。可接受的最终气流值和预测的最终气流值之间的差异通常小于可接受值或每块气流速率的25%。

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