Acoustic transmission analysis on cavity resonance sound in a cylindrical cavity system: Application to a Korean bell

  • Jeong, Won-tae
  • Kang, Yeonjune
  • Kim, Seockhyun
Citations

SCOPUS

5

초록

This paper presents an analytical model for acoustic transmission characteristics of a cylindrical cavity system representing the acoustic resonance conditions of a Korean bell. The cylindrical cavity system consists of an internal cavity, a gap, an auxiliary cavity, and a rigid base. Since the internal cavity is connected to the external field through a gap, determination of the acoustic transmission characteristics becomes a coupling problem between the internal cavity and external field. The acoustic field of the internal cavity is considered by expanding the solution method of the mixed boundary problem, and the external field is addressed by modifying the radiation impedance model of a finite cylinder. The analytical model is validated by comparison with both experiment and a boundary element method. Using the analytical model, the resonance conditions are determined to maximize the resonance effect. Thus, the resonance frequencies of the bell cavity system are investigated according to the gap size and auxiliary cavity depth. By adjusting gap size or auxiliary cavity depth, the cavity resonance frequency is tuned to resonate partial tones of the bell sound. Finally, the optimal combination of gap size and auxiliary cavity depth is determined. © 2012 Acoustical Society of America.

제목
Acoustic transmission analysis on cavity resonance sound in a cylindrical cavity system: Application to a Korean bell
저자
Jeong, Won-taeKang, YeonjuneKim, Seockhyun
DOI
10.1121/1.3675552
발행일
2012
유형
Article
저널명
Journal of the Acoustical Society of America
131
2
페이지
1547 ~ 1557