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Modelling of vibration and noise behaviour of embedded tram tracks using a wavenumber domain method

机译:嵌入式电车轨道的振动和噪声行为建模使用Wavenumber域方法

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Tracks with rails embedded in a layer of rubber are commonly used for tramways. The vibration and sound radiation behaviour of these tracks differs from that of conventional railway tracks. This is studied here using coupled wavenumber finite element and boundary element models. A detailed analysis is carried out for an embedded rail with a narrow embedding material and comparisons are made with field measurements. The rail, embedding material and surrounding concrete are modelled with finite elements, whereas the support conditions due to the underlying ground are modelled with structural boundary elements coupled to the base of the track model. The sound radiation is calculated using a wavenumber acoustic boundary element model in which it is assumed that there is only one-way coupling with the structure. At low frequencies, vibration of the concrete slab also contributes to the noise radiation. Consequently, the radiated sound is increased compared with that produced by the rail alone at low frequencies but it is reduced above 300 Hz, where the rail and concrete vibrate out of phase with one another; at frequencies above 500 Hz the concrete has negligible effect. The track decay rate has a broad minimum between 500 and 1000 Hz; the noise radiation therefore has a peak in this important frequency region. However, the decay rate increases strongly above 1000 Hz due to the influence of the embedding material. The track considered has a grass in-fill between and outside the rails and allowing for the absorptive effect of the grass leads to a small reduction in the sound radiation. In addition, the attenuation effect of the fairings around the bogie region is estimated taking account of the absorptive effect of the grass surface. The embedded rail models are coupled with a model of a tram wheel and used to predict the rolling noise during the passage of a tram, showing good agreement with field measurements. Finally, various alternative embedded rail designs are compared, including different shapes of the embedding material and different rail profiles. Differences of up to 3 dB are found between the various designs. (c) 2020 Elsevier Ltd. All rights reserved.
机译:嵌入在一层橡胶中的轨道轨道通常用于电车轨道。这些轨道的振动和声辐射行为与传统的铁路轨道的振动和声辐射行为不同。这里使用耦合波数有限元和边界元件模型研究了这一点。对嵌入式轨道进行详细分析,具有窄的嵌入材料,并使用现场测量进行比较。轨道,嵌入材料和周围混凝土采用有限元素建模,而引起的底层的支撑条件用耦合到轨道模型的基部的结构边界元素进行建模。使用波数声边界元模型计算声辐射,其中假设仅存在与结构的单向耦合。在低频下,混凝土板的振动也有助于噪声辐射。因此,与在低频下单独产生的轨道相比,辐射声辐射的声音增加,但它在300 Hz上方减少,其中轨道和混凝土彼此相振动。在500 Hz以上的频率下,混凝土效果可忽略不计。轨道衰减率在500到1000 Hz之间的大小范围内。因此,噪声辐射在该重要频率区域中具有峰值。然而,由于嵌入材料的影响,衰减率越高超过1000Hz。考虑的轨道在轨道和外部外部有草,并且允许草的吸收效果导致声辐射的小降低。此外,考虑到草表面的吸收作用,估计了转向架区域周围的公平的衰减效果。嵌入式轨道模型与电车轮的型号相结合,并用于预测电车通道期间的滚动噪音,显示出与现场测量的良好一致性。最后,比较各种替代的嵌入式轨道设计,包括嵌入材料和不同的轨道轮廓的不同形状。在各种设计之间发现了高达3 dB的差异。 (c)2020 elestvier有限公司保留所有权利。

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