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Study on a gradient structure acoustic metamaterial for underwater sound sensing enhancements

机译:用于增强水下声感的梯度结构声学超材料的研究

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Exploitation in improving the performance of underwater acoustic detection is endless. Acoustic metamaterials (AMMs), which have been rapidly emerging in recent years, can improve underwater acoustic detection performance through extraordinary acoustic wave manipulation to adapt to the ever-increasing new demands and challenges of water acoustic detection, such as the growing sophisticated, long-range, and high efficiency. In this paper, a gradient subwavelength structure is proposed inspired by similar structure AMMs in air; Simulations and experiments are carried out to study its feasibility and basic mechanism in underwater application. This type of AMM can trap a specific frequency of acoustic waves at a particular location, while achieving the amplification of acoustic signals. This work opens up new prospects for the development of acoustic sensors based on metamaterials underwater.
机译:在改善水下声学检测性能方面的探索是无止境的。近年来,声学超材料(AMM)迅速兴起,它可以通过非凡的声波操纵来改善水下声学检测性能,以适应水声检测不断增长的新需求和挑战,例如日益增长的复杂,长寿命的声学技术。范围大,效率高。本文在空气中类似结构的AMM的启发下,提出了一种梯度亚波长结构。通过仿真和实验研究了其在水下应用的可行性和基本机理。这种类型的AMM可以在特定位置捕获特定频率的声波,同时实现声信号的放大。这项工作为基于水下超材料的声传感器的开发开辟了新的前景。

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