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首页> 外文期刊>The Journal of the Acoustical Society of America >A 2.5-dimensional method for the prediction of structure-borne low-frequency noise from concrete rail transit bridges
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A 2.5-dimensional method for the prediction of structure-borne low-frequency noise from concrete rail transit bridges

机译:2.5维方法预测混凝土轨道交通桥梁的结构声低频噪声

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摘要

Predicting structure-borne noise from bridges subjected to moving trains using the three-dimensional (3D) boundary element method (BEM) is a time consuming process. This paper presents a two-and-a-half dimensional (2.5D) BEM-based procedure for simulating bridge-borne low-frequency noise with higher efficiency, yet no loss of accuracy. The two-dimensional (2D) BEM of a bridge with a constant cross section along the track direction is adopted to calculate the spatial modal acoustic transfer vectors (MATVs) of the bridge using the space-wave number transforms of its 3D modal shapes. The MATVs calculated using the 2.5D method are then validated by those computed using the 3D BEM. The bridge-borne noise is finally obtained through the MATVs and modal coordinate responses of the bridge, considering time-varying vehicle-track-bridge dynamic interaction. The presented procedure is applied to predict the sound pressure radiating from a U-shaped concrete bridge, and the computed results are compared with those obtained from field tests on Shanghai rail transit line 8. The numerical results match well with the measured results in both time and frequency domains at near-field points. Nevertheless, the computed results are smaller than the measured ones for far-field points, mainly due to the sound radiation from adjacent spans neglected in the current model.
机译:使用三维(3D)边界元方法(BEM)来预测行进列车的桥梁的结构噪声是一个耗时的过程。本文提出了一种基于二维半(2.5D)BEM的方法,可以以更高的效率模拟桥式低频噪声,但又不会损失精度。沿轨道方向具有恒定横截面的桥梁的二维(2D)BEM用于通过桥梁的3D模态形状的空间波数变换来计算桥梁的空间模态声传递矢量(MATV)。然后,将使用2.5D方法计算的MATV通过使用3D BEM计算的MATV进行验证。考虑到时变的车辆-轨道-桥梁动力相互作用,最终通过MATV和桥梁的模态坐标响应获得桥梁噪声。将该程序用于预测U形混凝土桥梁的声压,并将计算结果与上海轨道交通8号线的现场测试结果进行比较。和近场点的频域。但是,对于远场点,计算结果要小于实测结果,这主要是由于当前模型中忽略了来自相邻跨度的声辐射。

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