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Numerical investigation of the effect of cavity fl ow on high speed train pantograph aerodynamic noise

机译:腔流动效应对高速列车泛仪空气动力学噪声的数值研究

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Reducing train pantograph noise is particularly important. In this paper, the flow behaviour and noise contribution of simplified geometries representing high-speed train pantographs and the roof cavity at 1/10th scale are investigated. The Improved Delayed detached-Eddy Simulation (IDDES) turbulent model is used for the flow field simulation and the Ffowcs Williams & Hawkings aeroacoustic analogy is used for far-field noise prediction. The pantograph recess geometry is simplified to a rectangular cavity and two simplified DSA350 pantographs are included. The effect of the pantograph cavity is studied by comparing the flow behaviour and radiated noise from cases with and without the cavity, and also for different train running directions. When the pantographs are installed in a cavity, the shear layer, separated from the cavity leading edge, interacts with the pantographs, and generates large pressure fluctuations on the pantograph surfaces. In comparison with pantographs installed on a flat train roof, the flow around the pantographs with the cavity has different characteristics in terms of the velocity profile upstream of the pantographs. The study shows that the main noise source is from the panhead of the raised pantograph which produces strong tonal noise and this noise source is affected by the cavity flow.
机译:减少火车调控器噪音尤为重要。在本文中,研究了代表高速列车诱变仪的简化几何形状的流动性和噪声以及1/10尺度的屋顶腔。改进的延迟分离涡流模拟(IDDES)湍流模型用于流场仿真,FFOWS威廉姆斯和霍普斯航空声比较用于远场噪声预测。映射仪凹陷几何形状被简化到矩形腔,并且包括两个简化的DSA350 Pantograph。通过将流动行为和辐射的噪声与腔室的情况进行比较,以及不同的列车运行方向来研究诱变仪腔的效果。当对电弓安装在腔中时,从腔前缘分离的剪切层与受限仪相互作用,并在映射仪表面上产生大的压力波动。与安装在平面列车屋顶上的受电孔相比,具有腔的受限仪周围的流动在受电弓上游的速度曲线方面具有不同的特征。该研究表明,主噪声源来自凸起放电仪的凸起,其产生强调噪音,并且该噪声源受腔流量的影响。

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