横风作用下桥上更高速度列车行车安全性分析
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作者单位:

1.东南沿海铁路福建有限责任公司,福建 福州 350013 ;2.华东交通大学交通运输工程学院,江西 南昌 330013

作者简介:

王雄标(1985—),男,高级工程师,研究方向为铁路工程建设技术。E-mail:289633949@qq.com。

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中图分类号:

U270.1+1

基金项目:

江西省自然科学基金项目(20224BAB204065)


Analysis of Train Safety Under Crosswind Effects at Higher Speeds on Bridges
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Affiliation:

1.Dongnan Coastal Railway Fujian Co.,Ltd., Fuzhou 350013 , China ; 2.School of Transportation Engineering,East China Jiaotong University, Nanchang 330013 , China

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    摘要:

    为揭示横风作用下桥上更高速度列车行车安全机理,基于流体力学与车辆动力学理论,采用CFD流体力学软件建立高速列车-桥梁气动模型,计算列车及桥梁气动载荷;利用多体动力学软件UM和有限元分析软件Ansys进行联合仿真,建立高速列车-轨道-桥梁系统动力学模型;将气动载荷作为外部激励,输入该模型中,实现横风作用下高速铁路桥上更高速度列车行车姿态的仿真计算,进而分析风速、车速对其行车安全的影响。研究结果表明:横风作用下,车体横向位移、轮轴横向力、轮轨垂向力、脱轨系数、轮重减载率、桥梁跨中横向位移较无风时均显著增大;当风速小于 12 m/s、车速 350~400 km/h时列车行车安全指标较小,桥梁跨中横向位移幅值变化较缓;当风速大于15 m/s、车速350~420 km/h时列车各项安全指标急剧增大,尤其是时速400 km以上时,轮轴横向相互作用明显,桥梁跨中横向位移增幅呈倍数增长。本研究结果可为控制横风作用下高速列车桥上行车安全提供理论依据和基础数据。

    Abstract:

    In order to reveal the safety mechanism of higher speed trains on the bridge under crosswind, a highspeed train-bridge aerodynamic model was established using CFD software to calculate the aerodynamic loads on the train and bridge based on fluid dynamics and vehicle dynamics theories. Using the co-simulation technology of multibody dynamics software UM and finite element analysis software Ansys, a high-speed train-trackbridge system dynamic model was developed. The aerodynamic loads on the train and bridge were applied as external excitations and input into the train-track-bridge system dynamics model to simulate the entire operational process of high-speed trains on bridges under crosswind conditions. The study analyzed the impact of wind speed and train speed on the operational safety of higher-speed trains. The results show that under crosswind conditions, the lateral displacement of the train body, lateral wheelset force, vertical wheel-rail force, derailment coefficient, wheel load reduction rate, and lateral displacement at the mid-span of the bridge all increase significantly compared to no-wind conditions. When the wind speed is slower than12 m/s and the train speed is 350~400 km/ h, the safety indicators for train operation remain relatively low, and the lateral displacement at the bridge midspan shows moderate variation. When the wind speed is fast er than 15 m/s and the train speed is between 350~ 420 km/h, the safety indicators of the train increase sharply, especially for trains traveling at speeds above 400 km/h, where the lateral interaction between the wheel and rail becomes more pronounced, resulting in an exponential increase in the lateral displacement at the bridge mid-span. The above research results can provide a theoretical basis and basic data for ensuring the running safety of high-speed trains on bridges under the influence of crosswinds.

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引用本文

王雄标,刘军华,颜建鹏,等. 横风作用下桥上更高速度列车行车安全性分析[J]. 华东交通大学学报,2025,42 (5):83-92.

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  • 收稿日期:2024-12-16
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  • 在线发布日期: 2025-11-25
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