OPTIMISATION OF RAILWAY NOISE BARRIER DESIGN USING FINITE ELEMENTS AND BOUNDARY ELEMENT MODELLING METHODS

ACOUSTICS 2021 Pub Date : 2021-10-11 DOI:10.25144/13771
C. Bustos, V. Jurdic, C. Sharp, D. Hiller
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Abstract

The prediction of environmental noise barrier insertion loss (IL) is commonly undertaken from widely available empirical methods derived from measurements and geometrical acoustic approximations. The accuracy of these methods is limited when analysing non-standard design parameters, such as geometry; characteristics and location of sound absorbing materials; or diffraction effects close to the barrier. This article presents a new methodology to optimise the design of a railway noise barrier using a simplified numerical method. The numerical method is based on a two-dimensional hybrid finite element and boundary element analysis. The numerical method has been calibrated and tested against measurements of high speed trains. The model assumes an infinitely long train with pre-defined sound sources (e.g. rolling source, body aerodynamic, etc.). The numerical model quantifies the effect of various parameters upon the barrier IL including material properties; area and location of sound absorbing materials; diffraction over the barrier top; and analysis of energy build-up between train and barrier. These parameters are not easily quantifiable using standard methods and hence the innovation aspect of the methodology. The outcome of this study can be used to optimise and improve confidence in the detailed design of complex noise barriers.
基于有限元和边界元建模方法的铁路噪声屏障优化设计
环境声屏障插入损失(IL)的预测通常是通过广泛可用的经验方法进行的,这些方法来自测量和几何声学近似。当分析非标准设计参数(如几何形状)时,这些方法的精度受到限制;吸声材料的特性及位置;或者靠近势垒的衍射效应。本文提出了一种用简化数值方法优化铁路噪声屏障设计的新方法。数值方法是基于二维混合有限元和边界元分析。该数值方法已根据高速列车的实测数据进行了标定和验证。该模型假设一列无限长列车具有预定义的声源(如滚动声源、车身气动声源等)。数值模型量化了各种参数对势垒IL的影响,包括材料性能;吸声材料的面积和位置;势垒顶部的衍射;以及列车与障碍物之间能量积聚的分析。这些参数不容易用标准方法量化,因此是方法论的创新方面。本研究的结果可用于优化和提高复杂隔音屏障详细设计的信心。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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