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水下声涡旋传播特征分析

The Propagation Characteristics Analysis of Underwater Acoustic Vortices

  • 摘要: 声涡旋独特的轨道角动量使其在粒子操控和声学通信领域展现出广阔的应用前景,但在海洋波导中,由于信道复杂多变,水下声涡旋的传播特征尚不清晰,限制了声涡旋在水声通信等领域的应用。文章针对不同水下环境开展声涡旋传播特性初步研究,理论分析与仿真结果显示:1) 其他参数不变时,声涡旋相位干涉条纹间距只与频率和传播距离的比值有关,比值越大,间距越小; 2) 当考虑海面反射时,随传播距离增大声涡旋逐渐消失,拓扑荷数越大,海面反射对涡旋的影响越大;3) 深海声道轴附近的声涡旋能够在一定距离内稳定传播。本文结果为基于声涡旋轨道角动量的水下通信与探测等应用提供了理论基础。

     

    Abstract: The unique orbital angular momentum (OAM) of acoustic vortices presents promising applications in particle manipulation and acoustic communication. However, in ocean waveguides, the complex and variable channels make the propagation characteristics of underwater acoustic vortices unclear, limiting their application in underwater acoustic communication and related fields. This paper conducts preliminary research on the propagation characteristics of acoustic vortices in different underwater environments. Theoretical analysis and simulation results indicate that: 1) With other parameters unchanged, the spacing of interference fringes of acoustic vortex phases is only related to the ratio of frequency to propagation distance; the larger the ratio, the smaller the spacing. 2) When considering sea surface reflections, the acoustic vortex gradually disappears as the propagation distance increases, and the larger the topological charge, the greater the impact of sea surface reflections on the vortex. 3) Acoustic vortices near the axis of deep-sea sound channels can propagate stably over certain distances. The findings provide a theoretical foundation for applications in underwater communication and detection based on the orbital angular momentum of acoustic vortices.

     

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