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首页> 外文期刊>IEEE Transactions on Components and Packaging Technologies >Detailed CFD Modeling of EMC Screen for Radio Base Stations: A Benchmark Study
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Detailed CFD Modeling of EMC Screen for Radio Base Stations: A Benchmark Study

机译:无线电基站EMC屏幕的详细CFD建模:基准研究

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The objective of this paper is to investigate the performance of five well-known turbulence models, in order to find a model that predicts the details of the flow patterns through an electromagnetic compatibility (EMC) screen. The turbulence models investigated in the present study are five different eddy-viscosity models; the standard k-epsiv model, the renormalization group (RNG) k-epsiv model, the realizable k-epsiv model, the standard k-omega model, as well as the shear stress transport k-omega model. A steady-state 3-D detailed model, which serves as the most accurate representation of the model, was used in order to evaluate the details of the airflow paths and pressure field. The flow was assumed to be isothermal, turbulent and incompressible. A general model that covers a considerable range of velocities and geometries was validated experimentally by wind tunnel measurements. The result shows that for most of the k-epsiv models used with correct y+ and mesh strategy, the pressure drop and the velocity field deviation is small compared to experimental data. The k-omega models overpredict the overall pressure drop. When using the RNG k-epsiv model, the total static pressure drop predicted differs around 5%-10% and the average velocity deviation at several locations before and after the screen is around 5%.
机译:本文的目的是研究五个众所周知的湍流模型的性能,以便找到一个可通过电磁兼容性(EMC)屏幕预测流动模式细节的模型。在本研究中研究的湍流模型是五种不同的涡流-粘度模型。标准k-epsiv模型,重新归一化组(RNG)k-epsiv模型,可实现的k-epsiv模型,标准k-omega模型以及剪切应力传递k-omega模型。为了评估气流路径和压力场的细节,使用了稳态3-D详细模型(该模型最精确地表示该模型)。假定流动是等温的,湍流的和不可压缩的。通过风洞测量实验验证了涵盖相当大范围的速度和几何形状的通用模型。结果表明,对于大多数使用正确y +和网格策略的k-epsiv模型,与实验数据相比,压降和速度场偏差较小。 k-omega模型高估了总体压降。当使用RNG k-epsiv模型时,预测的总静态压降相差5%-10%左右,屏幕前后几个位置的平均速度偏差约为5%。

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