Numerical and experimental methods to measure the acoustic performance of sonic crystal noise barrier

IF 1.4 Q3 ACOUSTICS BUILDING ACOUSTICS Pub Date : 2023-07-20 DOI:10.1177/1351010X231179003
K. Mohapatra, DP Jena
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Abstract

The array of periodic scatterers is known as sonic crystal at present and sonic crystal is the most cost-effective solution for a “noise barrier” because of its acoustic attenuation due to size, geometry, and periodic arrangement of scatterers. The simulation methods to estimate acoustic attenuation and the Bragg band of the periodic scatterers have been demonstrated in this paper. First, the periodic cylindrical and C-shaped scatterers have been studied along with the effect of thermo-viscous losses to establish the simulation method. Next, in the laboratory environment, the measurements have been carried out for periodic cylindrical and C-shaped scatterers and the experimental results are in good agreement with simulation results.
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声学晶体隔音屏障声学性能的数值和实验测量方法
周期性散射体阵列目前被称为声波晶体,声波晶体由于其尺寸、几何形状和周期性排列而产生的声衰减,是最具成本效益的“隔音屏障”解决方案。本文给出了估计周期性散射体的声衰减和布拉格带的仿真方法。首先,研究了周期性圆柱形散射体和c形散射体以及热粘损失的影响,建立了模拟方法。其次,在实验室环境下,对周期性圆柱形和c形散射体进行了测量,实验结果与仿真结果吻合较好。
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来源期刊
BUILDING ACOUSTICS
BUILDING ACOUSTICS ACOUSTICS-
CiteScore
4.10
自引率
11.80%
发文量
22
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