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Numerical Prediction of Aerodynamic Noise Radiated from High Speed Train Pantograph

机译:高速列车映射辐射的空气动力噪声的数值预测

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As the train speeds increase,aerodynamic noise of the train becomes one of the main problems.The pantograph,because of its high location,installed between the transmission lines and the vehicle,the aerodynamic noise generated by it cannot be reduced by using sound barrier or other traditional ways,so that the research of the noise source becomes more and more important.In this paper,the flow field and the aerodynamic noise of the pantogragh is numerical simulated and analyzed using Fluent.The flow field is calculated by the Large Eddy Simulation(LES) method,the FW-H acoustic analogy based on the Lighthill acoustic theory is selected as the acoustic model.The computational results show when a train runs at 200km/h,how this typical dipole source produced by pantogragh is distributed in the frequency domain and have a view about the spatial distribution of sound field.
机译:随着火车速度的增加,火车的空气动力学噪声成为主要问题之一。由于其在传输线和车辆之间安装的高位置,因此由于其高位置而言,通过使用声屏或使用它产生的空气动力学噪声不能降低其他传统方式,使得噪声源的研究变得越来越重要。在本文中,PantoGragh的流场和空气动力学噪声是使用流利的分析和分析的数值模拟和分析。通过大涡模拟来计算流场(LES)方法,选择基于Lighthill声学理论的FW-H声学类别作为声学模型。计算结果表明,当火车以200km / h运行时,通过PantoGragh产生的这种典型的偶极源如何分布在频率上域并有关于声场的空间分布的视图。

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