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400 km/h高速列车受电弓气动噪声分析

孙舒 张文敏 贾尚帅

实验流体力学2024,Vol.38Issue(3):91-98,8.
实验流体力学2024,Vol.38Issue(3):91-98,8.DOI:10.11729/syltlx20230029

400 km/h高速列车受电弓气动噪声分析

Analysis on the aerodynamic noise of the pantograph of high-speed train at 400 km/h

孙舒 1张文敏 2贾尚帅2

作者信息

  • 1. 华北理工大学 理学院,唐山 063210
  • 2. 中车唐山机车车辆有限公司 技术研究中心,唐山 063035
  • 折叠

摘要

Abstract

In order to clarify the aerodynamic noise characteristics of the high-speed train pantograph system and its relationship with the flow field,a subdomain model of the full size and a scale model of the pantograph were established,and large eddy simulation,acoustic perturbation equation and FW-H equation were used to predict the flow field and sound field under the condition of rising bow at 400 km/h.Based on the FW-H equation,the sound source distribution was inverted,and the energy distribution of the turbulent pressure and sound pressure in the pantograph base were analyzed using the reduced order model.The results show that with the incoming flow velocity of 400 km/h and the pantograph as the sound source,the total sound pressure level of P2,which is the standard measuring point in the far field can reach 88.1 dB(A),and there are obvious peaks around 283 Hz and 576 Hz.The Strouhal number corresponding to the peak frequency(characteristic length is 41 mm equivalent diameter of the square rod)is 0.10 and 0.21,respectively.The energy ratio of the first two modes of the turbulent pressure and sound pressure in the pantograph base are 4.5%and 3.3%,40.9%and 14.0%,respectively,with certain symmetry in the distribution.For the pantograph base,in the frequency band below 300 Hz,the pressure level of the full-size model is larger than that of the scale model,and in the frequency band below 1 000 Hz,the sound pressure level of the full-size model is larger than that of the scale model.When the whole pantograph is used as the sound source to radiate to the far-field standard point,the measured sound pressure level of the full-size model is larger than that of the scale model at all frequencies.

关键词

高速列车/受电弓/气动噪声/大涡模拟/声扰动方程/400 km/h

Key words

high-speed train/pantograph/aerodynamic noise/large eddy simulation/acoustic perturbation equation/400 kilometers per hour

分类

交通工程

引用本文复制引用

孙舒,张文敏,贾尚帅..400 km/h高速列车受电弓气动噪声分析[J].实验流体力学,2024,38(3):91-98,8.

实验流体力学

OA北大核心CSTPCD

1672-9897

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