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Multi-directional Sound Reduction by Slitted Sonic Crystal

机译:通过狭缝声晶晶体多向声音减少

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Sonic crystals (SC) are the periodic arrangements of solid objects, i.e., cylinders, blocks, spheres, etc., in fluid media. SC are known for noise attenuation over a certain range of frequency. The direction of incident noise on the SC affects the sound transmission loss as well as the bandgap. In this work, SC are designed in such a way that changing the position of noise source will not affect the sound transmission loss and the bandgap as much as in the conventional SC. The effect of slitted scatterers is investigated on the bandgap and the sound transmission loss. The structure is subjected to a planar wave coming from the different directions and results are compared with each other. Finite element simulation is used to calculate the sound transmission loss and the bandgap in SC with and without rectangular slits. Results show that the slitted SC work more effectively with multi-directional noise source than the conventional SC.
机译:Sonic晶体(Sc)是在流体介质中的固体物体,即圆柱体,块,球体等的周期性布置。 已知在一定频率范围内的噪声衰减时众所周知。 SC上的入射噪声方向会影响声音传输损耗以及带隙。 在这项工作中,SC设计成使得改变噪声源的位置不会影响声音传输损耗和传统SC中的声音。 在带隙和声音传输损失上研究了狭缝散射饼饼饼干的效果。 该结构经受来自不同方向的平面波,并将结果彼此进行比较。 有限元模拟用于计算带有矩形狭缝的SC中的声音传输损耗和带隙。 结果表明,狭缝SC比传统SC更有效地使用多向噪声源。

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