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Analysis of sound radiation from the coupling effect of vibrating noise and moving-vehicle noise on bridges

机译:从桥梁振动声和车辆噪声的耦合效应分析声辐射

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An acoustic finite element model of a bridge is developed to evaluate the noise generated by the traffic-induced vibration of the bridge. The dynamic response of a multi-girder bridge, modeled by a three-dimensional (3-D) frame element model, is analyzed with a 3-axle (8 degrees of freedom (DOF)) truck model and a 5-axle (13 DOF) tractor-trailer. The flat plate element is used to analyze the acoustic pressure due to the fluid-structure interactions between the vibrating surface and contiguous acoustic fluid medium. The radiation fields of noise with a specified distribution of vibrating velocity and pressure on the structural surface are also computed using the Kirchhoff-Helmholtz integral. Among the diverse parameters affecting the dynamic response of a bridge, vehicle velocity, vehicle weight, and spatial distribution of the road surface roughness are found to be the main factors that increase the level of vibration noise. In an attempt to illustrate the influence of the structural vibration noise of a bridge to total noise level around the bridge, the random function is used to generate the vehicle noise source including the engine noise and the rolling noise between the road and tire. The results show that the low-frequency noise produced by the vibrating bridge members amplifies the high-frequency vehicle noise by 4-7 dB. In addition, the amplification rate of noise increases with traveling speed and vehicle weight.
机译:建立桥梁的声学有限元模型,以评估由交通诱导的桥梁振动产生的噪声。用3轴(8自由度(DOF))卡车模型和5轴(13)的三维(3-D)框架单元模型对多梁桥的动力响应进行了分析DOF)拖挂车。平板元件用于分析由于振动表面和连续的声流体介质之间的流体-结构相互作用而产生的声压。还使用Kirchhoff-Helmholtz积分来计算结构表面上具有指定振动速度和压力分布的噪声的辐射场。在影响桥梁动力响应的各种参数中,车速,车辆重量和路面粗糙度的空间分布是增加振动噪声水平的主要因素。为了说明桥梁的结构振动噪声对桥梁周围总噪声水平的影响,随机函数用于生成车辆噪声源,包括发动机噪声和道路与轮胎之间的滚动噪声。结果表明,由振动桥构件产生的低频噪声将高频车辆噪声放大了4-7 dB。另外,噪声的放大率随着行驶速度和车辆重量的增加而增加。

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