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SONIC CRYSTAL ACOUSTIC BARRIERS BASED ON SCATTERERS WITH ADDED ACOUSTICAL PROPERTIES

机译:基于具有附加声特性的散射体的声晶体声屏障

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Scatterers with added acoustical properties are used in this work to improve the attenuation capabilities of Sonic Crystal Acoustic Barriers (SCAB). Perforated rigid cylinders add an additional independent periodicity to the SCAB introducing attenuation peaks in the range of low frequencies above the Band Gap of the structure. Band Structures calculated by Finite Element Methods are in good agreement with the experimental results showing the attenuation bands of SCAB made of perforated scatterers. Rock wool scatterers are also used to produce a certain level of attenuation along a wide range of frequencies exploiting the absorbent properties of this material. We present experimental evidences for the improvement in the attenuation properties of the SCAB in the range of low frequencies when we combine perforated cylinders with absorbent materials.
机译:在这项工作中使用了具有附加声学特性的散射体,以提高声波晶体声屏障(SCAB)的衰减能力。穿孔的刚性圆柱为SCAB增加了一个额外的独立周期性,从而在结构的带隙之上的低频范围内引入了衰减峰值。用有限元方法计算的能带结构与实验结果吻合良好,实验结果显示了由多孔散射体制成的SCAB的衰减带。岩棉散射体还用于利用这种材料的吸收特性,在很宽的频率范围内产生一定程度的衰减。我们提供了实验证据,证明当我们将穿孔圆柱体与吸收性材料结合使用时,SCAB在低频范围内的衰减特性得到了改善。

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