A Study on the Acoustic Energy Harvesting with Helmholtz Resonator and Piezoelectric Cantilevers

被引:41
|
作者
Noh, Seungjun [1 ]
Lee, Hoyoung [1 ]
Choi, Bumkyoo [1 ]
机构
[1] Sogang Univ, Dept Mech Engn, Seoul 121742, South Korea
关键词
Helmholtz resonator; Acoustic; Energy harvesting; Piezoelectric; Impedance matching; GENERATOR; FREQUENCY;
D O I
10.1007/s12541-013-0220-x
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Some kinds of thermofluid instruments are using Helmholtz resonators for absorbing noises radiated from them. Since the resonance frequency of a Helmholtz resonator depends on the ratio of the resonant volume to the neck size, operating frequency range can be easily tuned and thus the Helmholtz resonator is well-suited for noise control in a wide range of frequency. Besides the noise control application, Helmholtz resonators have been recently applied to acoustic energy harvesting. To date, most of studies on energy harvesting using Helmholtz resonators are employing piezoelectric materials located in the resonant volume and enhancing harvesting efficiency by tuning the resonance frequency and the structure of the added piezoelectric materials. In this study, a piezoelectric (PVDF composite) cantilever was integrated within a Helmholtz resonator Then, energy harvesting efficiency was maximized by matching and tuning mechanical resonance of the piezoelectric cantilever and acoustic resonance of the Helmholtz resonator Theoretical analysis including finite element simulation was also performed to confirm our experimental results. To maximize the harvest power, the electrical impedance matching was considered. This study can be applied to acoustic energy harvesting as well as acoustic noise control.
引用
收藏
页码:1629 / 1635
页数:7
相关论文
共 50 条
  • [41] Design And Simulation of MEMS Helmholtz Resonator for Acoustic Energy Harvester
    bin Johari, Muhammad Jabrullah
    Ab Rahim, Rosminazuin
    PROCEEDINGS OF 6TH INTERNATIONAL CONFERENCE ON COMPUTER AND COMMUNICATION ENGINEERING (ICCCE 2016), 2016, : 505 - 510
  • [42] Helmholtz Resonator for Lead Zirconate Titanate Acoustic Energy Harvester
    Matsuda, Tomohiro
    Tomii, Kazuki
    Hagiwara, Saori
    Miyake, Shuntaro
    Hasegawa, Yuichi
    Sato, Takamitsu
    Kaneko, Yuta
    Nishioka, Yasushiro
    13TH INTERNATIONAL CONFERENCE ON MICRO AND NANOTECHNOLOGY FOR POWER GENERATION AND ENERGY CONVERSION APPLICATIONS (POWERMEMS 2013), 2013, 476
  • [43] A panel acoustic energy harvester based on the integration of acoustic metasurface and Helmholtz resonator
    Cui, Xiaobin
    Shi, Jinjie
    Liu, Xiaozhou
    Lai, Yun
    APPLIED PHYSICS LETTERS, 2021, 119 (25)
  • [44] Nonlinear analysis of flexoelectric acoustic energy harvesters with Helmholtz resonator
    Cao, Z.
    Wang, K. F.
    Wang, B. L.
    APPLIED MATHEMATICAL MODELLING, 2024, 129 : 633 - 654
  • [45] Broadband acoustic energy harvesting metasurface with coupled Helmholtz resonators
    Liu, Guang-Sheng
    Peng, Yao-Yin
    Liu, Ming-Hao
    Zou, Xin-Ye
    Cheng, Jian-Chun
    APPLIED PHYSICS LETTERS, 2018, 113 (15)
  • [46] Analytical design of 2-DOF piezoelectric cantilevers for vibration energy harvesting
    Gibus, David
    Morel, Adrien
    Gasnier, Pierre
    Charleux, Ludovic
    Formosa, Fabien
    Badel, Adrien
    ENERGY CONVERSION AND MANAGEMENT, 2024, 317
  • [47] Modelling and Simulation of Piezoelectric Cantilevers in RF MEMS Devices for Energy Harvesting Applications
    Chopra, Kshitij
    Nigam, Kritika
    Pandey, Sujata
    2015 17TH UKSIM-AMSS INTERNATIONAL CONFERENCE ON COMPUTER MODELLING AND SIMULATION (UKSIM), 2015, : 414 - 419
  • [48] Vibtrational energy harvesting using photo-patternable piezoelectric nanocomposite cantilevers
    Prashanthi, K.
    Miriyala, N.
    Gaikwad, R. D.
    Moussa, W.
    Rao, V. Ramgopal
    Thundat, T.
    NANO ENERGY, 2013, 2 (05) : 923 - 932
  • [49] Gradient-index phononic crystal and Helmholtz resonator coupled structure for high-performance acoustic energy harvesting
    Kim, Sangtae
    Choi, Jaehoon
    Seung, Hong Min
    Jung, Inki
    Ryu, Ki Hoon
    Song, Hyun-Cheol
    Kang, Chong-Yun
    Kim, Miso
    Nano Energy, 2022, 101
  • [50] Cantilevers-on-membrane design for broadband MEMS piezoelectric vibration energy harvesting
    Jia, Yu
    Du, Sijun
    Seshia, Ashwin A.
    15TH INTERNATIONAL CONFERENCE ON MICRO AND NANOTECHNOLOGY FOR POWER GENERATION AND ENERGY CONVERSION APPLICATIONS (POWERMEMS 2015), 2015, 660