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Acoustic performance of a semi-closed noise barrier installed on a high-speed railway bridge: Measurement and analysis considering actual service conditions

机译:安装在高速铁路桥上的半闭声屏障的声学性能:考虑实际服务条件的测量和分析

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摘要

Noise barriers are regarded as the most efficient way to mitigate high-speed railway (HSR) noise. To enhance their performance, the present paper introduces a novel type of noise barrier, namely a semi-closed noise barrier (SCNB). The service conditions of the SCNB are much more complicated than those of a traditional vertical barrier because of train draft pressure and vibration waves transmitted from the bridge deck. Although these issues could worsen the acoustic performance of the SCNB, they are yet to be studied in depth. In this study, the acoustic performance of the SCNB considering actual service conditions was investigated based on field measurements and numerical simulations. Special attention was focused on the noise reduction effect and the noise propagation pathways. The results show that the studied SCNB can perform better than the existing 3.15-m-high vertical noise barriers considering actual service conditions, with an additional attenuation of close to 6 dB(A). The structural noise associated with the SCNB vibrations contributes little to the overall noise, and the transmitted noise is the main acoustic source. A 1.0-mm-wide and 2.0-m-long slit between neighboring element panels can appear in the SCNB because of the train draft pressure and vibration waves transmitted from the bridge deck. The developed prediction method is fully adequate for checking the acoustic performance of the SCNB considering its actual service state. Results of the numerical analyses are quantitatively stated for the purpose of durability evaluation of the SCNB on acoustic performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:噪声屏障被视为减轻高速铁路(HSR)噪声的最有效方法。为了提高其性能,本文介绍了一种新颖的噪声屏障类型,即半封闭式噪声屏障(SCNB)。由于火车牵引压力和从桥式甲板传播的振动波,SCNB的服务条件比传统垂直屏障更复杂。虽然这些问题可能会恶化SCNB的声学性能,但它们尚未深入研究。在这项研究中,考虑到实际服务条件的SCNB的声学性能是基于现场测量和数值模拟。特别关注降噪效果和噪声传播途径。结果表明,考虑到实际服务条件,研究的SCNB可以比现有的3.15-M高垂直噪声屏障更好,额外衰减接近6 dB(a)。与SCNB振动相关联的结构噪声有助于整体噪声,并且传输的噪声是主声源。由于火车牵引压力和从桥式甲板传输的列车牵引压力和振动波,可以在SCNB之间出现1.0毫米宽和2.0米长的狭缝。显影预测方法完全足以检查SCNB的声学性能,考虑其实际服务状态。数值分析的结果定量说明了SCNB对声学性能的耐久性评估。 (c)2019年elestvier有限公司保留所有权利。

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