基于FE-SEA混合法列车交会对桥梁振动噪声分析
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罗文俊(1979—),女,教授,博士,博士生导师,研究方向为铁路环境振动与噪声控制及轮轨动力学研究。E-mail:lwj06051979@163.com。

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U448.21+5;TB534

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国家自然科学基金项目(51768022,51978265)


Analysis of Bridge Vibration and Structure Noise Based on FE-SEA Hybrid Method for Train Rendezvous
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    摘要:

    基于有限元-统计能量(FE-SEA)混合法,建立钢-混结合梁桥模型,在列车运行速度为 200 km/h、列车交会条件下,预测桥梁各板块的振动响应及结构噪声。 结果表明,当列车交会时:各板块中点处的振动加速度级均有所增大,优势频段为 40~120 Hz, 峰值频率在 65 Hz;在全频段内,各板块声压级均增大,单向行驶和列车交会两种状态下的各板块声压级峰值频率在 500 Hz, 腹板和下翼缘的声压级变化规律较为相似;桥梁各板块能量级在全频段内均增大,腹板能量级最大,在频率为 100 Hz 时,腹板和下翼缘的振动能量级出现拐点,该频率对能量级的影响最大。

    Abstract:

    Based on the finite element-statistical energy (FE-SEA) hybrid method, this paper establishes a steelconcrete composite beam bridge model, and predicts the vibration response and structural noise of each plate of the bridge under the conditions of train running speed of 200 km/h and trains crossing. The results show that when trains cross:The vibration acceleration level at the midpoint of each plate increases, the dominant frequency band is 40~120 Hz, and the peak frequency is 65 Hz. In the whole frequency band, the sound pressure level of each plate increases; the peak frequency of the sound pressure level of each plate in the two states of one-way driving and train crossing is at 500 Hz, and the pattern of changes for sound pressure level of the web and the lower flange are similar. The energy level of each plate of the bridge increases in the whole frequency band, and the energy level of the web is the largest. When the frequency is 100 Hz, the vibration energy level of the web and the lower flange has an inflection point, indicating that this frequency has the greatest impact on the energy level.

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罗文俊,曹浩,张子正,江学辉,唐康文.基于FE-SEA混合法列车交会对桥梁振动噪声分析[J].华东交通大学学报,2021,38(2):1-7.

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  • 在线发布日期: 2021-06-18
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