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Meteorological effects on the noise shielding by low parallel wall structures

机译:低平行墙体结构对噪声屏蔽的气象影响

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Numerical calculations, scale model experiments and real-life implementations have shown that the insertion of a closely spaced array of low parallel walls beside a road is potentially a valuable road traffic noise abatement technique. However, all previous studies have assumed a non-refracting and non-turbulent atmosphere. This study carries out a numerical assessment of the extent to which the noise reduction is preserved in the presence of a refracting and turbulent atmosphere. Several full-wave calculation techniques have been used to model the noise reduction provided by parallel walls subject to moderate and strong winds, and in case of temperature driven turbulence. While meteorological effects do not deteriorate the insertion loss of the parallel wall array in the low frequency range, higher sound frequencies are strongly negatively affected. The numerical results suggest that meteorological effects should be considered when assessing parallel walls as a road traffic noise mitigation measure.
机译:数值计算,规模模型实验和现实生活实施例表明,在道路旁边插入紧密间隔的低平行壁阵列是有价值的道路交通噪声减排技术。然而,以前的所有研究都假定了非折射和非湍流的气氛。本研究执行关于在折射和湍流气氛存在下保持降噪的程度的数值评估。已经使用了几种全波计算技术来模拟由受中等和强风的平行壁提供的噪声降低,并且在温度驱动的湍流的情况下。虽然气象效应不会劣化在低频范围内平行壁阵列的插入损耗,但较高的声频受到强烈的负面影响。数值结果表明,在评估平行墙作为道路交通噪声缓解措施时应考虑气象效应。

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