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局域共振型声学超材料及其噪声控制
引用本文:吕海峰,王普浩,叶俊杰.局域共振型声学超材料及其噪声控制[J].航空动力学报,2020,35(7):1369-1375.
作者姓名:吕海峰  王普浩  叶俊杰
作者单位:中北大学机械工程学院,太原030051,中北大学机械工程学院,太原030051,中北大学机械工程学院,太原030051,中北大学机械工程学院,太原030051,中北大学机械工程学院,太原030051,中北大学机械工程学院,太原030051
基金项目:国家自然科学基金(51305409); 山西省应用基础研究项目(201701D221124);山西省重点研发计划项目(201903D221025),
摘    要:为实现宽频噪声的控制,提出一种兼有Helmholtz共振和弹簧质量系统共振的声学超材料及其控制方法。将双局域共振系统等效为两个弹簧质量系统的串联,理论计算结果表明双局域共振声学超材料能够产生两个局域共振带隙,有限元仿真验证了所建立数学模型的正确性。在对比分析共振腔腔体体积和薄膜张力对系统传递损失影响的基础上,选择通过气压调整薄膜张力实现系统传递损失的控制。实验结果表明:当驱动气压从0增加至2 kPa时,系统传递损失第一个峰值基本保持不变,第二个峰值向高频偏移150 Hz。所设计的局域共振型声学超材料在带隙范围内对低频噪声具有良好的控制效果,为宽频噪声自适应控制提供了一种方法。

关 键 词:局域共振  声学超材料  频率控制  传递损失  张力调节
收稿时间:2019/12/15 0:00:00

Noise control of a local-resonant acoustic metamaterials,
L Haifeng,WANG Puhao,YE Junjie,ZHANG Wenhui,ZHANG Xiaoguang,LI Jing.Noise control of a local-resonant acoustic metamaterials,[J].Journal of Aerospace Power,2020,35(7):1369-1375.
Authors:L Haifeng  WANG Puhao  YE Junjie  ZHANG Wenhui  ZHANG Xiaoguang  LI Jing
Institution:School of Mechanical Engineering,,North University of China,Taiyuan 030051,China
Abstract:In order to control the wide-band noise, An acoustic metamaterial with both Helmholtz resonance and spring mass system resonance and its control method were proposed.. The double local resonance system was equivalent to the series connection of two spring mass systems. Theoretical results showed that two local resonance band gaps can be generated in the double resonance acoustic metamaterials. The correctness of the mathematical model was verified by the Finite Element Method. Based on the comparison of the influences of resonant volume and membrane tension on the transmission loss of the system, the pneumatic modulation was selected to control the tension of the membrane and then the transmission loss. The measurement indicated that, when the driving air pressure increased from 0 to 2 kPa, the first transmission loss peak of the system kept almost constant while the second transmission loss peak shifted 150 Hz to the high frequency. The designed local resonance acoustic metamaterials have good control effect on low-frequency noise in the band gap range, thus providing a method for adaptive control of broadband noise.
Keywords:local resonance  acoustic metamaterials  frequency control    transmission loss  tension adjusting
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