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基于局域共振编码超表面的低频超宽带水声扩散隐身

朱家辉 李辰洋 时磊 周红涛 王艳锋

应用数学和力学2026,Vol.47Issue(2):123-135,13.
应用数学和力学2026,Vol.47Issue(2):123-135,13.DOI:10.21656/1000-0887.460058

基于局域共振编码超表面的低频超宽带水声扩散隐身

Low-Frequency Ultra-Wideband Underwater Acoustic Diffusion Stealth Based on Locally Resonant Encoded Metasurface

朱家辉 1李辰洋 1时磊 1周红涛 1王艳锋1

作者信息

  • 1. 天津大学 机械工程学院,天津 300350
  • 折叠

摘要

Abstract

Underwater acoustic stealth is of great significance for improving the survival and working capabili-ties of underwater devices.A method for underwater low-frequency ultra-wideband acoustic diffusion stealth based on the locally resonant coded metasurface was proposed.Firstly,an equivalent model of acoustic-vibra-tion coupling for locally resonant metasurface elements was established,revealing the mechanical mechanism of an inverted T-shaped fractal structure in modulating the phases of underwater reflected acoustic waves.Then,a collaborative optimization design of the broadband coded elements was carried out based on the genetic algo-rithm.Furthermore,based on the coding theory,the coding sequence of the metasurface with superior diffu-sion performance within the broadband range was optimized.Finally,numerical simulations and experimental tests were conducted for this metasurface.The results show that,the metasurface coding element with an in-verted T-shaped fractal structure can exhibit excellent ultra-wideband phase modulation performance at the deep sub-wavelength scale.The coded metasurface can achieve underwater diffusion stealth in the low broad-band frequency range of 300~1 500 Hz.The experimental results are basically consistent with the simulation re-sults.The research provides a new approach for underwater low-frequency ultra-wideband acoustic stealth.

关键词

声扩散隐身/低频宽带/水声超表面/声振耦合/逆向设计

Key words

acoustic diffusion stealth/low-frequency broadband/underwater acoustic metasurface/acoustic-vibration coupling/inverse design

分类

数理科学

引用本文复制引用

朱家辉,李辰洋,时磊,周红涛,王艳锋..基于局域共振编码超表面的低频超宽带水声扩散隐身[J].应用数学和力学,2026,47(2):123-135,13.

基金项目

国家自然科学基金(12021002) (12021002)

国家资助博士后研究人员计划(GZB20240526) (GZB20240526)

应用数学和力学

1000-0887

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