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首页> 外文期刊>Journal of Sound and Vibration >A reduced-scale railway noise barrier's insertion loss and absorption coefficients: comparison of field measurements and predictions
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A reduced-scale railway noise barrier's insertion loss and absorption coefficients: comparison of field measurements and predictions

机译:缩小规模的铁路声屏障的插入损耗和吸收系数:实地测量和预测的比较

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摘要

In situ testing determined the insertion loss (IL) and absorption coefficients of a candidate absorptive noise barrier (soundwall) to abate railway noise for residents of Anaheim, CA. A 4000m barrier is proposed south of the tracks, but residential areas to the north have expressed concerns that barrier reflections will increase their noise exposure. To address these concerns, a 3.66m high by 14.6m long demonstration barrier was built in the parking lot of Edison Field, Anaheim, as part of a public open house, thereby allowing for acoustical measurements. Insertion loss (IL) was measured in third-octave bands assuming 1/2-scale construction. The IL for three, scaled railway noise sub-sources (rail/wheel interface, locomotive, and train horn) was measured at six, scaled distances. The highest total, A-weighted IL, after corrections for finite-barrier and point-source speaker effects was 22dB(A) for rail/wheel noise, 18dB(A) for locomotive noise, and 20dB(A) for train horn noise. These results can be compared favourably to IL predictions made using algorithms from the US Federal Rail Administration (FRA) noise assessment guidelines. For the actual barrier installation, shielded residential receivers located south of the project are expected to see their future noise exposures reduced from an unmitigated 78 CNEL to 65 CNEL. Absorption coefficients were measured using time delay spectrometry. At lower frequencies, measured absorption coefficients were notably less than the reverberation room results advertised in the manufacturer's literature, but generally conformed with impedance tube results. At higher frequencies the correspondence between measured absorption coefficients and reverberation room results was much improved. For the actual barrier installation, unshielded residential receivers to the north are expected to experience noise exposure increases of less than I dB(A). This factor of increase is consistent with a finding of no impact when assessed using FRA guidelines for allowable increases of noise exposure. (C) 2003 Elsevier Ltd. All rights reserved. [References: 13]
机译:原位测试确定了加利福尼亚州阿纳海姆市居民的候选吸收噪声屏障(音墙)的插入损耗(IL)和吸收系数,以减轻铁路噪声。提议在赛道以南建立一个4000m的屏障,但北部的居民区对屏障反射会增加其噪声暴露表示担忧。为了解决这些问题,在阿纳海姆市爱迪生球场的停车场内建造了一个高3.66m x 14.6m的示范屏障,作为公共房屋的一部分,从而可以进行声学测量。插入损耗(IL)是在1/2倍音阶的三倍频程中测量的。在六个比例距离上测量了三个比例缩放的铁路噪声子源(铁路/车轮接口,机车和火车喇叭)的IL。经过校正的有限屏障和点源扬声器效果后,最高的A加权IL分别为:铁路/车轮噪声为22dB(A),机车噪声为18dB(A)和火车喇叭噪声为20dB(A)。这些结果可以与使用美国联邦铁路管理局(FRA)噪声评估指南的算法做出的IL预测进行比较。对于实际的屏障安装,位于项目南部的带屏蔽的住宅接收器预期其未来的噪声暴露将从未减轻的78 CNEL降低到65 CNEL。使用时延光谱法测量吸收系数。在较低的频率下,测得的吸收系数明显小于制造商文献中公布的混响室结果,但通常与阻抗管结果一致。在较高的频率下,测得的吸收系数与混响室结果之间的对应关系得到了很大改善。对于实际的屏障安装,预计北部的非屏蔽住宅接收器的噪声暴露增加量将小于1 dB(A)。当使用FRA指南评估允许的噪声暴露增加时,此增加因素与没有影响的发现一致。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:13]

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