Finite element modeling of acoustic resonators with thermal and viscous boundary layers

Author:

Inoue Naohisa1,Sakuma Tetsuya1

Affiliation:

1. Graduate School of Frontier Sciences, The University of Tokyo

Publisher

Acoustical Society of Japan

Subject

Acoustics and Ultrasonics

Reference8 articles.

1. 1) J. S. Bolton and N. Kim, ``Use of CFD to calculate the dynamic resistive end and correction for microperforated materials,'' Acoust. Aust., 38, 134-139 (2010).

2. 2) W. R. Kampinga, Y. H. Wijnant and A. de Boer, ``An efficient finite element model for viscothermal acoustics,'' Acta Acust. united Ac., 97, 618-631 (2011).

3. 3) K. Monjyugawa, M. Terao and H. Sekine, ``Numerical analyses and high precision experiments on acoustic resistances of slit resonators,'' Proc. Spring Meet. Acoust. Soc. Jpn., pp. 639-640 (2000) (in Japanese).

4. 4) S. Sakamoto, H. Mukai and H. Tachibana, ``Numerical study on sound absorption characteristics of resonance-type brick/block walls,'' J. Acoust. Soc. Jpn. (E), 21, 9-15 (2000).

5. 5) P. M. Morse and K. U. Ingard, Theoretical Acoustics (Princeton University Press, Princeton, N.J., 1968), Chap. 6.

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