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Low-frequency noise radiation from traffic-induced vibration of steel double-box girder bridge

机译:钢制双箱梁桥交通振动引起的低频噪声辐射

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Low-frequency noise radiated from bridge vibrations has been reported as an environmental noise problem in many countries. In order to investigate the mechanism of low-frequency noise radiated from bridge vibration, a steel bridge with a double-box is adopted for study. Modal parameters of the bridge, including natural frequency, damping ratio and mode shape, are identified from field tests by a combination of Eigensystem Realization Algorithm and Fast Fourier Transformation. Then the grillage model of the bridge is established and physics parameters of the model are updated by genetic algorithm according to identified natural frequencies. The dynamic response of the bridge by the action of a moving vehicle is calculated and assumed as the sound source of low-frequency noise. Then low-frequency noise due to bridge vibration is estimated according to sound wave propagation theories. The validity of the numerical method is verified through comparison with experimental results. Furthermore, noise reduction methods are proposed and corresponding effects are discussed. Results show that numerical simulation is feasible in assessing low-frequency noise due to traffic induced vibration of a bridge, which offers a possible way for environmental assessment as well as being a good reference for noise reduction design of bridges. The deck plate of the bridge is the primary source of low-frequency noise. Hence, increasing the stiffness of a deck plate is effective for noise control. Improving the road roughness can also reduce low-frequency noise.
机译:在许多国家,桥梁振动辐射出的低频噪声被报告为环境噪声问题。为了研究桥梁振动辐射产生的低频噪声的机理,本文采用双箱钢桥进行研究。通过本征系统实现算法和快速傅立叶变换的结合,从现场测试中可以识别出桥梁的模态参数,包括固有频率,阻尼比和振型。然后建立桥梁的格栅模型,并根据识别出的固有频率通过遗传算法更新模型的物理参数。计算桥梁在移动车辆的作用下的动态响应,并将其作为低频噪声的声源。然后根据声波传播理论估算由桥振动引起的低频噪声。通过与实验结果的比较证明了数值方法的有效性。此外,提出了降噪方法并讨论了相应的效果。结果表明,数值模拟在评估交通噪声引起的低频噪声方面是可行的,为环境评估提供了一种可能的方法,也为桥梁降噪设计提供了良好的参考。桥梁的甲板是低频噪声的主要来源。因此,增加盖板的刚度对于噪声控制是有效的。改善道路平整度还可以减少低频噪声。

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