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COMPARISON BETWEEN NUMERICAL AND EXPERIMENTAL TEMPERATURE DISTRIBUTIONS IN A SMALL DATA CENTER TEST CELL

机译:小型数据中心测试单元中数值和实验温度分布的比较

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Information Technology equipment is continuing to increase in power, leading to significant challenges from the room air conditioning perspective. Numerical models are the dominant techniques for designing new data centers and optimizing existing ones. It is thus critical to understand the inherent error in the model prediction of flow and temperature distributions in the data center, with emphasis on the vicinity of the server rack. This study uses a simulated server rack in a small room where detailed temperature (3D), flow, and power measurements were carried out for a single scenario under steady state conditions. A numerical model was constructed to represent the data center cell for this case. Model results were then compared with three dimensional experimentally obtained temperature maps and the discrepancy between the two was quantified as an error in temperature. The difference between test data and model results was found to be the highest in the exhaust air path from the rear of the simulated server rack to the inlet of the air conditioning unit. The dominant sources of error are likely to be in the use of the standard k-ε turbulence model, and the simplistic rack representation in which rack exhaust airflow is assumed uniform. Both modeling limitations tend to pronounce hot and cold spots and inhibit the mixing of hot and cold air streams within the data center. This is the first study on comparison between three dimensional temperature distributions obtained via modeling and from actual data collection.
机译:信息技术设备继续增加力量,导致房间空调视角的重大挑战。数值模型是设计新数据中心和优化现有的主导技术。因此,了解数据中心的流量和温度分布模型预测中的固有误差是至关重要的,重点是服务器机架附近。本研究在一个小型房间中使用模拟服务器架在稳态条件下为单个场景进行详细的温度(3D),流量和功率测量。构造数值模型以表示这种情况的数据中心单元。然后将模型结果与三维实验获得的温度图进行比较,并且两者之间的差异被定量为温度误差。发现测试数据和模型结果之间的差异是从模拟服务器机架的后部到空调单元的入口的排气路径中的最高。主导误差来源可能是在使用标准K-ε湍流模型中,以及齿条排气气流被假定均匀的简单齿条表示。建模限制往往会发音热和冷点,并抑制数据中心内的热和冷空气流的混合。这是第一研究通过建模和实际数据收集获得的三维温度分布的比较。

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