Investigating the Action of Complex Highway Noise Barriers by Means of Sound Field Visualization

D. Oldham, C. A. Egan
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Abstract

The performance of a simple noise barrier is determined by its height relative to the heights of the noise source and receivers. There have been many attempts to overcome this limitation by modifications to the barrier top edge. These generally take the form of an absorbent top or the introduction of additional diffracting edges. However, relatively minor variations in geometry have sometimes been found to result in drastic changes to barrier performance. In this paper the Boundary Element Method is employed to calculate the sound field in the vicinity of complex barrier tops and sound field visualization techniques are used with these data to investigate how the sound field varies with frequency and dimensional changes. It is shown that for some top edge configurations local resonance effects have a significant effect on the attenuation afforded by the barrier.
基于声场可视化的复杂公路隔音屏障作用研究
一个简单的隔音屏障的性能取决于它的高度相对于噪声源和接收器的高度。为了克服这一限制,人们已经进行了许多尝试,通过修改屏障的顶部边缘。这些通常采取吸收顶部或引入额外的衍射边的形式。然而,相对较小的几何变化有时会导致屏障性能的剧烈变化。本文采用边界元法计算了复杂屏障顶部附近的声场,并利用声场可视化技术研究了复杂屏障顶部附近声场随频率和维数变化的变化规律。结果表明,对于某些顶缘构型,局域共振效应对势垒的衰减有显著影响。
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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