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Prediction of radiation ratio and sound transmission of complex extruded panel using wavenumber domain finite element and boundary element methods

机译:波数域有限元和边界元方法,预测复合挤出面板的辐射比和声音透射

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Recently, complex shaped aluminium panels have been adopted in many structures to make them lighter and stronger. The vibro-acoustic behaviour of these complex panels has been of interest for many years but conventional finite element and boundary element methods are not efficient to predict their performance at higher frequencies. Where the cross-sectional properties of the panels are constant in one direction, wavenumber domain numerical analysis can be applied and this becomes more suitable for panels with complex cross-sectional geometries. In this paper, a coupled wavenumber domain finite element and boundary element method is applied to predict the sound radiation from and sound transmission through a double-layered aluminium extruded panel, having a typical shape used in railway carriages. The predicted results are compared with measured ones carried out on a finite length panel and good agreement is found.
机译:最近,复杂形状的铝板已经采用了许多结构,使其更轻更强。这些复杂面板的振动声学行为多年来一直是感兴趣的,但传统的有限元和边界元件方法不有效地在较高频率下预测其性能。在面板的横截面特性在一个方向上恒定的情况下,可以应用波数域数值分析,这变得更适合于具有复杂横截面几何形状的面板。在本文中,施加耦合波数域有限元和边界元件方法以通过双层铝挤出面板预测声辐射和声音传输,其具有在铁路托架中使用的典型形状。将预测结果与在有限长度面板上进行的测量结果进行比较,并且发现了良好的协议。

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