A comparative study on acoustic damping induced by half-wave, quarter-wave, and Helmholtz resonators

被引:74
|
作者
Sohn, Chae Hoon [1 ]
Park, Ju Hyun [1 ]
机构
[1] Sejong Univ, Dept Mech Engn, Seoul 143747, South Korea
关键词
Acoustic damping; Sound absorption; Optimal damping; Design criterion; Open-area ratio; Similarity; DESIGN;
D O I
10.1016/j.ast.2010.12.004
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The damping characteristics of three-type resonators, a half-wave, a quarter-wave, and a Helmholtz resonator are studied experimentally by adopting linear acoustic test. A quantitative acoustic property of sound absorption coefficient in a model enclosure with the resonators is measured and thereby, the acoustic-damping capacity of a resonator is characterized. For a comparative study on acoustic damping, the damping capacity of a half-wave resonator is compared with that of the other resonators. A half-wave and a quarter-wave resonators have the same damping mechanism, but a quarter-wave resonator has much larger damping capacity than a half-wave resonator with the same diameter of a single resonator. It is found that shorter length of a resonator has the advantage of longer one with respect to the damping capacity. The damping capacity of a Helmholtz resonator increases with cavity volume and does as the orifice length decreases. A Helmholtz resonator has the highest damping capacity of three-type resonators and a half-wave resonator has the lowest. Besides, a Helmholtz resonator requires the smallest number of resonators for optimal damping. The design criterion of each resonator on the optimal damping is provided by the normalized parameter of open-area ratio and the similarity behavior for the optimal damping is observed for various enclosure diameters. (C) 2010 Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:606 / 614
页数:9
相关论文
共 50 条
  • [31] Reconfigurable achromatic half-wave and quarter-wave retarder in near infrared using crystalline quartz plates
    Saha, Arijit
    Bhattacharya, Kallol
    Chakraborty, Ajoy Kumar
    OPTICAL ENGINEERING, 2011, 50 (03)
  • [32] Structural analysis of quarter-wave resonators in IMP
    Zhang Cong
    He Shou-Bo
    Wang Ruo-Xu
    Zhang Sheng-Hu
    He Yuan
    Zhao Hong-Wei
    CHINESE PHYSICS C, 2013, 37 (10)
  • [33] Structural analysis of quarter-wave resonators in IMP
    张聪
    贺守波
    王若旭
    张生虎
    何源
    赵红卫
    Chinese Physics C, 2013, 37 (10) : 80 - 84
  • [34] Structural analysis of quarter-wave resonators in IMP
    张聪
    贺守波
    王若旭
    张生虎
    何源
    赵红卫
    Chinese Physics C, 2013, (10) : 80 - 84
  • [35] Vanadium dioxide-assisted switching of a half-wave and quarter-wave plate to a dual-band absorber for the terahertz wave
    Jalal, Abdul
    Li, Nannan
    Li, Hui
    OPTICS CONTINUUM, 2024, 3 (07): : 1265 - 1272
  • [36] Transmission Control of Electromagnetic Waves by Using Quarter-Wave Plate and Half-Wave Plate All-Dielectric Metasurfaces Based on Elliptic Dielectric Resonators
    Yahyaoui, Ali
    Rmili, Hatem
    Achouri, Karim
    Sheikh, Muntasir
    Dobaie, Abdullah
    Affandi, Adnan
    Aguili, Taoufik
    INTERNATIONAL JOURNAL OF ANTENNAS AND PROPAGATION, 2017, 2017
  • [37] ACOUSTIC QUARTER-WAVE PLATES AT MICROWAVE FREQUENCIES
    AULD, BA
    QUATE, CF
    SHAW, HJ
    WINSLOW, DK
    APPLIED PHYSICS LETTERS, 1966, 9 (12) : 436 - &
  • [38] Graphene-based electrically controlled terahertz polarization switching between a quarter-wave plate and half-wave plate
    Qi, XiangQian
    Zou, JingLan
    Li, Chao
    Zhang, JianFa
    Guo, ChuCai
    Zhu, ZhiHong
    OPTICS EXPRESS, 2020, 28 (26) : 39430 - 39442
  • [39] Coupling factors of irregular microstrip quarter-wave resonators
    Belyaev, BA
    Serzhantov, AM
    12TH INTERNATIONAL CONFERENCE - MICROWAVE & TELECOMMUNICATION TECHNOLOGY, CONFERENCE PROCEEDINGS, 2002, : 412 - 414
  • [40] Damping of vibrations in superconducting quarter wave resonators
    Yang, Liu
    Zvyagintsev, Vladimir
    Laxdal, R. E.
    Waraich, Bhalwinder
    PHYSICAL REVIEW ACCELERATORS AND BEAMS, 2019, 22 (03):