Locally implicit time-domain finite element method for sound field analysis including permeable membrane sound absorbers
Author:
Affiliation:
1. Technical Research Institute, Hazama Ando Corporation
2. Environmental Acoustic Laboratory, Department of Architecture, Graduate School of Engineering, Kobe University
Publisher
Acoustical Society of Japan
Subject
Acoustics and Ultrasonics
Link
https://www.jstage.jst.go.jp/article/ast/41/4/41_E1946/_pdf
Reference16 articles.
1. 1) S. Sakamoto, H. Nagatomo, A. Ushiyama and H. Tachibana, ``Calculation of impulse responses and acoustic parameters in a hall by the finite-difference time-domain method,'' Acoust. Sci. & Tech., 29, 256-265 (2008).
2. 2) T. Okuzono, T. Otsuru, R. Tomiku and N. Okamoto, ``Fundamental accuracy of time domain finite element method for sound-field analysis of rooms,'' Appl. Acoust., 71, 940-946 (2010).
3. 3) R. Mehra, N. Raghuvanshi, L. Savioja, M. C. Lin and D. Manocha, ``An efficient GPU-based time domain solver for the acoustic wave equation,'' Appl. Acoust., 73, 83-94 (2012).
4. 4) T. Okuzono, T. Otsuru, R. Tomiku and N. Okamoto, ``Application of modified integration rule to time-domain finite-element acoustic simulation of rooms,'' J. Acoust. Soc. Am., 132, 804-813 (2012).
5. 5) S. P. Simonaho, T. Lähivaara and T. Huttunen, ``Modeling of acoustic wave propagation in time-domain using the discontinuous Galerkin method: A comparison with measurements,'' Appl. Acoust., 73, 173-183 (2012).
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