Wavenumber transform analysis for acoustic black hole design

被引:42
|
作者
Feurtado, Philip A. [1 ]
Conlon, Stephen C. [1 ]
机构
[1] Penn State Univ, Appl Res Lab, University Pk, PA 16802 USA
来源
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA | 2016年 / 140卷 / 01期
关键词
FLEXURAL WAVES; PLATES; TERMINATION; VIBRATIONS;
D O I
10.1121/1.4959023
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Acoustic black holes (ABHs) are effective, passive, lightweight vibration absorbers that have been developed and shown to effectively reduce the structural vibration and radiated sound of beam and plate structures. ABHs employ a local thickness change that reduces the speed of bending waves and increases the transverse vibration amplitude. The vibrational energy can then be effectively focused and dissipated by material losses or through conventional viscoelastic damping treatments. In this work, the measured vibratory response of embedded ABH plates was transformed into the wavenumber domain in order to investigate the use of wavenumber analysis for characterizing, designing, and optimizing practical ABH systems. The results showed that wavenumber transform analysis can be used to simultaneously visualize multiple aspects of ABH performance including changes in bending wave speed, transverse vibration amplitude, and energy dissipation. The analysis was also used to investigate the structural acoustic coupling of the ABH system and determine the radiation efficiency of the embedded ABH plates compared to a uniform plate. The results demonstrated that the ABH effect results in acoustic decoupling as well as vibration reduction. The wavenumber transform based methods and results will be useful for implementing ABHs into real world structures. (C) 2016 Acoustical Society of America.
引用
收藏
页码:718 / 727
页数:10
相关论文
共 50 条
  • [1] Thermodynamical analysis of acoustic Schwarzschild black hole
    Yasir, Muhammad
    Tiecheng, Xia
    Ditta, Allah
    Ali, Riasat
    Atamurotov, Farruh
    NEW ASTRONOMY, 2024, 105
  • [2] An acoustic black hole
    Drinkwater, Bruce W.
    NATURE PHYSICS, 2020, 16 (10) : 1010 - 1011
  • [3] An acoustic black hole
    Bruce W. Drinkwater
    Nature Physics, 2020, 16 : 1010 - 1011
  • [4] The numerical analysis of the acoustic streaming effect of a cavity acoustic black hole
    Huang, Meilian
    Liang, Xiao
    Su, Liang
    He, Xingyun
    Li, Danni
    Chu, Jiaming
    Wang, Shengsheng
    Liang, Haofeng
    Zhang, Yongyan
    FRONTIERS IN MATERIALS, 2022, 9
  • [5] Spatial Laplace transform for complex wavenumber recovery and its application to the analysis of attenuation in acoustic systems
    Geslain, A.
    Raetz, S.
    Hiraiwa, M.
    Ghanem, M. Abi
    Wallen, S. P.
    Khanolkar, A.
    Boechler, N.
    Laurent, J.
    Prada, C.
    Duclos, A.
    Leclaire, P.
    Groby, J. -P.
    JOURNAL OF APPLIED PHYSICS, 2016, 120 (13)
  • [6] Acoustic and vibration characteristics analysis of acoustic black hole stiffened plate structures
    Wen H.-B.
    Huang H.-W.
    Shi Z.-Q.
    Guo J.-H.
    Chuan Bo Li Xue/Journal of Ship Mechanics, 2024, 28 (03): : 442 - 449
  • [7] Wavenumber domain analyses of vibro-acoustic decoupling and noise attenuation in a plate-cavity system enclosed by an acoustic black hole plate
    Wang, Xiaodong
    Ji, Hongli
    Qiu, Jinhao
    Cheng, Li
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2019, 146 (01): : 72 - 84
  • [8] A normalized wave number variation parameter for acoustic black hole design
    Feurtado, P.A. (paf932@arl.psu.edu), 1600, Acoustical Society of America (136):
  • [9] Investigation of boundary-taper reflection for acoustic black hole design
    Feurtado, Philip
    Conlon, Stephen
    NOISE CONTROL ENGINEERING JOURNAL, 2015, 63 (05) : 460 - 466
  • [10] A normalized wave number variation parameter for acoustic black hole design
    Feurtado, Philip A.
    Conlon, Stephen C.
    Semperlotti, Fabio
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2014, 136 (02): : EL148 - EL152