Command Control and Simulation >
A Sandwich Structure Design of Sonar Dome and Acoustic Performance
Received date: 2019-08-20
Revised date: 2019-09-17
Online published: 2022-05-10
At present, most of the sonar domes used in domestic ships are made of FRP. Although they have good sound transmission performance, they are subject to turbulence at medium and high speeds, which will generate a lot of self-noise, reduce the performance of sonar, and even affect the normal operation of sonar. In this paper, a thick metal plate acoustic metamaterial using periodic micro-perforation treatment is proposed as a sandwich layer material, and a three-layer sandwich structure is constructed, which can be used as a construction material for the sonar dome. Through the analysis of the COMSOL simulation model, it is verified that the steel plate treated by micro-perforation with certain distribution law has higher sound transmission coefficient than the uniform steel plate, and is basically not affected by the thickness of the steel plate. And the three-layer sandwich structure has good sound transmission properties. The thick steel plate also has high rigidity and strength, which can effectively reduce the self-noise of the dome. This study can provide a reference for the design of the new dome.
ZHU Wei-jie , CUI Han-guo , HE Shi-ping . A Sandwich Structure Design of Sonar Dome and Acoustic Performance[J]. Command Control and Simulation, 2020 , 42(3) : 131 -135 . DOI: 10.3969/j.issn.1673-3819.2020.03.024
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