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Effect of Thickness and Perforation Size on the Acoustic Absorption Performance of a Micro-Perforated Panel

机译:厚度和穿孔大小对微孔板的声学吸收性能的影响

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In current times, noise pollution is especially apparent in urban areas due to rapid development in transportation, industrialization, and urbanization. The worsening noise pollution is detrimental to human health and behaviour as it can contribute to disorders and psychological disturbance. Thus, noise regulation is crucial and must be addressed with immediate effect. Micro-perforated panels (MPP) can be a potential solution to mitigate noise on a commercial scale. Researchers have addressed the mechanics behind the enhancement of acoustic absorption through micro-perforation and some suggestions have been made, such as the effect of structural variation on sound absorption performance. Hence, this research aims at optimizing the sound absorption performance of an MPP by determining the connection between thickness and perforation size with sound absorption coefficient. Three cases were considered: (i) varying perforation size, (ii) varying thickness, and (iii) varying perforation size and thickness simultaneously. Based on the Maa prediction model, the sound absorption performance for all three cases have been simulated through the MATLAB software. Results show that the increase in both thickness and perforation size together increases the peak value of sound absorption coefficient (SAC). It also shifts the peak towards the higher frequency region and narrows the bandwidth. The findings of this study indicate the potential of thick MPPs as commercial sound absorbers by adjusting the size of perforations. Thicker and sturdier MPPs with optimal acoustic resistance and reactance can act as reliable sound absorbers for sound insulation purposes.
机译:由于运输,工业化和城市化的快速发展,城市地区噪音污染尤为明显。恶化的噪音污染对人类健康和行为有害,因为它可以有助于疾病和心理干扰。因此,噪声调节至关重要,必须立即解决。微穿孔面板(MPP)可以是减轻商业规模噪声的潜在解决方案。研究人员已经解决了通过微穿孔提高声学吸收的力学,并且已经提出了一些建议,例如结构变异对吸音性能的影响。因此,本研究旨在通过测定具有声音吸收系数的厚度和穿孔尺寸之间的连接来优化MPP的吸音性能。考虑了三种情况:(i)不同的穿孔尺寸,(ii)不同的厚度和(iii)同时不同的穿孔尺寸和厚度。基于MAA预测模型,通过MATLAB软件模拟了所有三种情况的吸声性能。结果表明,厚度和穿孔大小的增加将加上吸音系数(囊)的峰值。它还将峰值朝向较高频率区域转换并缩小带宽。该研究的发现表明,通过调节穿孔的尺寸,表示厚的MPPS作为商业吸音器的潜力。具有最佳声电阻和电抗的较厚和坚固的MPP可以充当可靠的吸音器,用于隔音目的。

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