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Sonic Crystals for Highway Noise Reduction

机译:高速公路降噪的声音晶体

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Sonic crystals are noise barriers which have come to picture since the last two decades for their sound attenuation properties. They consist of sound scatterers arranged periodically inside a host material. The scatterers have high impedance and are put in a fluid of low impedance. Sound attenuation takes place due to multiple scattering of sound waves by the rigid sound scatterers, within particular frequency bands known as Band Gaps. In this paper, a finite element study has been performed on a 2-D sonic crystal having circular scatterers arranged in square pattern. The scatterers are assumed to be sound hard, which imposes that the normal velocity and normal acceleration at their boundary are zero and the arrangement is periodic which is because of the cyclic symmetry of the structure. Relevant boundary conditions have been incorporated into the design which aims in determining the Band Gaps and the corresponding transmission losses through the sonic crystal. Results of eigenfrequency and frequency response analysis of the scatterers are done using a commercial finite element software, COMSOL Multiphysics are presented in this paper.
机译:由于过去二十年来,声音晶体是噪音障碍,这是他们的声音衰减属性。它们由周期性地在主体材料内周期性排列的声音散射体组成。散射体具有高阻抗,并放入低阻抗的流体。声音衰减由于刚性声波散射器的多个声波散射,在特定的频段内称为带空隙。在本文中,已经在具有以方形图案中布置的圆形散射体的2-D索声晶体进行有限元研究。假设散射仪声音很硬,这施加了边界处的正常速度和正常加速度为零,并且该布置是周期性的,这是由于结构的循环对称性。已将相关的边界条件纳入设计中,该设计旨在通过Sonic晶体确定带间隙和相应的传输损耗。使用商业有限元软件进行散射体的特征频率和频率响应分析的结果,本文提出了COMSOL多发性。

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