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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >An acoustic metasurface with simultaneous phase modulation and energy attenuation
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An acoustic metasurface with simultaneous phase modulation and energy attenuation

机译:具有同时相位调制和能量衰减的声学元曲面

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We introduced a rigid structure into the acoustic metasurface design, the proposed labyrinth structure is based on the equivalent medium theory and different media are replaced by curly labyrinth. Layered media theory and equivalent medium theory are combined to design the arbitrary acoustic metasurface structure. An acoustic metasurface studied in this paper realized simultaneous phase modulation and energy attenuation in the air, the effective phase modulation range covered from 30 degrees to 90 degrees and the energy attenuation is over 40%. According to layered media theory which could modulate the acoustic wave direction, the metasurface with same function can also be applied to underwater case. Corresponding simulation results are calculated by FEA. Finally, by introducing the curly labyrinth theory, the underwater acoustic metasurface with simultaneous phase modulation and energy attenuation is designed and verified. This paper has potential applications in rigid underwater acoustic metasurface designs with low frequency, adjustable direction and sound energy attenuation.
机译:我们将刚性结构介绍到声学元表面设计中,所提出的迷宫结构基于等效的介质理论,不同媒体被卷曲迷宫所取代。分层媒体理论和等效介质理论被组合为设计任意声学元表面结构。本文研究了一个声学元表面,实现了空气中同时相位调制和能量衰减,从30度至90度覆盖的有效相位调制范围,能量衰减超过40%。根据可以调节声波方向的分层媒体理论,具有相同功能的元表面也可以应用于水下壳体。相应的仿真结果由FEA计算。最后,通过引入卷曲迷宫理论,设计并验证了具有同时相位调制和能量衰减的水下声学元曲面。本文在刚性水下声学元面设计中具有低频,可调方向和声能衰减的潜在应用。

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