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Evaluating The Influence Of The Width Of Inlet Slot On The Prediction Of Indoor Airflow: Comparison With Experimental Data

机译:评估进气口宽度对室内气流预测的影响:与实验数据的比较

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The aim of this work is to investigate the influence of two values of inlet slot width on the velocity characteristics and turbulent intensity of the airflow inside a rectangular room. The experimental data used to check the numerical results concerns a rectangular room where the air is supplied horizontally on the upper left and is exhausted through an opening on the lower right on the opposite side. The performance of three turbulence models, standard k-ε, RNG k-ε, and k-ω, in predicting the three-dimensional airflow in that room has also been investigated. The results for Reynolds number of 5000 are presented for dimensionless horizontal velocities and turbulent kinetic energy for two planes of the room and two inlet arrangements, one opening as large as the room and another with half of the width of the room. The results have indicated that the main features of the flow were captured by the three turbulence models investigated. On the whole, the performance of the standard k-ε model was better than those of the other two turbulence models. In particular, the k-ω model performed better in the configuration with the largest air opening than in that with the smallest one, while the RNG k-ε model presented the opposite behavior. The comparative study between both geometries demonstrated that for slots much smaller than the width of the room, three-dimensional effects become important.
机译:这项工作的目的是研究两个入口狭缝宽度值对矩形室内气流速度特性和湍流强度的影响。用于检查数值结果的实验​​数据涉及一个矩形房间,在该房间中,空气在左上方水平供应,并通过相对侧右下方的开口排出。还研究了三种湍流模型(标准k-ε,RNGk-ε和k-ω)在预测该房间的三维气流方面的性能。给出了雷诺数为5000的结果,它是针对房间的两个平面和两个进气口布置的无量纲水平速度和湍动能的,其中一个开口的大小与房间的大小相同,而另一个开口的大小等于房间的一半。结果表明,所研究的三种湍流模型均捕获了流动的主要特征。总体而言,标准k-ε模型的性能优于其他两个湍流模型。特别是,k-ω模型在最大空气开口的配置中比在最小空气开口的配置中表现更好,而RNGk-ε模型表现出相反的行为。两种几何结构之间的比较研究表明,对于比房间宽度小得多的插槽,三维效果变得很重要。

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