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Effect of Sidewalls on Sound Transmission Loss Through Sonic Crystal

机译:侧壁对通过声音晶体声音传输损耗的影响

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摘要

Sonic crystals are the periodic arrangements of scatterers embedded in a homogeneous material. Their ability to prevent sound wave to propagate in a particular range of frequency demonstrates their use as potential noise barriers. The sonic crystal considered in this work is an array of PVC cylinders (5 x 5) in air bounded by acrylic sheets. This paper studies the sound transmission loss in the sonic crystal by changing the location of the sidewalls. The optimized location of sidewalls of the sonic crystal to get wide band gap and high sound transmission loss has been investigated. To increase the transmission loss, a periodic structure having bi-periodicity, i.e., periodicity in two perpendicular directions is introduced. Both computational (Finite Element simulation) and experimental work has been performed to study the sound transmission loss and the band gaps. To bridge the gap between the two results, an improved finite element model has been proposed with an aim to replicate the experimental situation more closely. Generally, in experiments, insertion loss is calculated while numerically transmission loss is computed, and the two are compared. In this paper, a comparison between insertion loss and transmission loss has also been made numerically, which is compared with the experimental results.
机译:声波晶体是嵌入均质材料中的散射体的周期性布置。他们防止在特定频率范围内传播声波的能力表明它们的用途作为潜在的噪声屏障。在该工作中考虑的Sonic晶体是由丙烯酸片的空气中的PVC气缸(5×5)的阵列。本文通过改变侧壁的位置来研究声晶晶体中的声音传输损失。研究了Sonic Crystal的侧壁的优化位置,以获得宽带隙和高声音传输损耗。为了增加传输损耗,引入了具有双周期性的周期性结构,即两个垂直方向上的周期性。已经执行计算(有限元模拟)和实验工作,以研究声音传输损耗和带隙。为了弥合两种结果之间的差距,提出了一种改进的有限元模型,目的是更密切地复制实验情况。通常,在实验中,计算在计算数值传输损耗的同时计算插入损耗,并且比较两个。在本文中,在数值上也已经进行了在数值上进行了相比,与实验结果进行了数字化。

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