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基于三维屈曲结构的柔性水下声学传感器的设计与仿真

Design and Simulation of Flexible Underwater Acoustic Sensor Based on 3D Buckling Structure.

作者信息

Liu Guochang, Cao Wenping, Zhang Guojun, Wang Zhihao, Tan Haoyu, Miao Jinwei, Li Zhaodong, Zhang Wendong, Wang Renxin

机构信息

State Key Laboratory of Dynamic Measurement Technology, North University of China, Taiyuan 030051, China.

出版信息

Micromachines (Basel). 2021 Dec 10;12(12):1536. doi: 10.3390/mi12121536.

Abstract

The exploration of marine resources has become an essential part of the development of marine strategies of various countries. MEMS vector hydrophone has great application value in the exploration of marine resources. However, existing MEMS vector hydrophones have a narrow frequency bandwidth and are based on rigid substrates, which are not easy to be bent in the array of underwater robots. This paper introduces a new type of flexible buckling crossbeam-cilium flexible MEMS vector hydrophone, arranged on a curved surface by a flexible substrate. A hydrophone model in the fluid domain was established by COMSOL Multiphysics software. A flexible hydrophone with a bandwidth of 20~4992 Hz, a sensitivity of -193.7 dB, excellent "8" character directivity, and a depth of concave point of 41.5 dB was obtained through structured data optimization. This study plays a guiding role in the manufacture and application of flexible hydrophones and sheds light on a new way of marine exploration.

摘要

海洋资源勘探已成为各国海洋战略发展的重要组成部分。MEMS 矢量水听器在海洋资源勘探中具有巨大的应用价值。然而,现有的 MEMS 矢量水听器频率带宽较窄,且基于刚性基板,在水下机器人阵列中不易弯曲。本文介绍了一种新型的柔性屈曲横梁 - 纤毛柔性 MEMS 矢量水听器,它由柔性基板布置在曲面上。利用 COMSOL Multiphysics 软件在流体域中建立了水听器模型。通过结构化数据优化,得到了带宽为 20~4992 Hz、灵敏度为 -193.7 dB、具有优异的“8”字指向性且凹点深度为 41.5 dB 的柔性水听器。该研究对柔性水听器的制造和应用具有指导作用,并为海洋勘探开辟了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/483f/8707735/05f551544925/micromachines-12-01536-g001.jpg

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