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A parametric investigation of the performance of multiple edge highway noise barriers and proposals for design guidance

机译:多边公路噪声屏障性能的参数研究和设计指导建议

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The Boundary Element Method has been employed for a parametric investigation of the performance afforded by highway noise barriers with multi-edge tops and different acoustic treatment. Configurations investigated included single additional edges located on either the source or receiver sides of the barrier and two additional edges located symmetrically on each side of the barrier. The effect of treating the internal faces with a sound absorbing material was also investigated. The parameters investigated included the source to barrier distance, the receiver to barrier distance, the barrier height, the length of the additional edge and the gap between the additional edges and the face of the barrier. The values of each parameter were selected to be those appropriate to a practical installation. The performance of each edge variation was investigated for both reflective and absorptive faces. The relative insertion loss afforded by a given multi-edge configuration was found to be a function of the location of the source, the barrier and the receiver and also the height of the barrier. However, the sensitivity of the relative insertion loss to variations in most parameters was not great. For both reflective and absorptive treatments, the relative insertion loss of most additional edges was found to be only slightly greater on increasing the length of the edge above 0.5 m. Although there was always an increase with increasing gap width over the range of widths investigated gap but the indications were that benefit to be obtained for gap widths in excess of 0.4 m may not be an economic proposition. For source locations close to the barrier and receiver locations in the far field, as would be appropriate for a highway noise barrier, although the relative insertion loss afforded by a reflective additional edge located on the source side of the barrier is generally low, significant attenuation can be obtained when an absorptive treatment with a high coefficient of absorption at frequencies around 1000 Hz is applied to the device. However, a reflective edge located on the source side of a barrier at very short source to barrier distances and/or high barriers was found to result in a negative value of relative insertion loss and an explanation based upon resonances in the gap between the additional edge and the barrier was postulated. The use of two additional edges located symmetrically either side of a barrier can be a very effective means of improving the performance of a highway noise barrier giving relative insertion loss values that are high and consistent over a large range of parameters for both reflective and absorptive surfaces. However, in the former case the performance can be severely reduced for combinations of short source to barrier distances and/or high barriers. (C) 2015 Elsevier Ltd. All rights reserved.
机译:边界元方法已被用于对具有多边缘顶部和不同声学处理的公路隔音屏障提供的性能进行参数研究。研究的配置包括位于障碍物源侧或接收器侧的单个附加边缘和对称位于障碍物每一侧的两个附加边缘。还研究了用吸声材料处理内表面的效果。研究的参数包括源到障碍物的距离,接收器到障碍物的距离,障碍物高度,附加边缘的长度以及附加边缘与障碍物表面之间的间隙。每个参数的值选择为适合实际安装的值。研究了反射和吸收面的每个边缘变化的性能。发现由给定的多边缘配置提供的相对插入损耗是源,屏障和接收器的位置以及屏障的高度的函数。但是,相对插入损耗对大多数参数变化的敏感性不是很高。对于反射处理和吸收处理,发现大多数附加边缘的相对插入损耗在将边缘的长度增加到0.5 m以上时仅稍大一些。尽管在所研究的间隙宽度范围内,间隙宽度总是随间隙宽度的增加而增加,但有迹象表明,间隙宽度超过0.4 m可获得的好处可能不是经济上的建议。对于靠近障碍物的源位置和远场中的接收器位置,这将适用于公路噪声屏障,尽管位于障碍物源侧的反射性附加边缘提供的相对插入损耗通常较低,但衰减明显当在设备上以1000 Hz左右的频率进行吸收系数高的吸收处理时,可以得到该信号。然而,发现位于距源极距障壁距离很短和/或较高的障壁的障壁源侧的反射边缘会导致相对插入损耗为负值,并基于附加边缘之间的共振产生了解释。并假定障碍。使用两个对称分布在障碍物两侧的附加边缘可能是一种非常有效的方法,可改善高速公路隔音屏障的性能,从而在相对较大的反射和吸收性表面参数范围内,相对插入损耗值较高​​且一致。但是,在前一种情况下,对于短的源到势垒距离和/或高势垒,可能会严重降低性能。 (C)2015 Elsevier Ltd.保留所有权利。

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