On the viscous-inviscid interaction of the flow passing through the glottis
Author:
Affiliation:
1. Department of Acoustic Design, Faculty of Design, Kyushu University
Publisher
Acoustical Society of Japan
Subject
Acoustics and Ultrasonics
Link
http://www.jstage.jst.go.jp/article/ast/29/2/29_2_167/_pdf
Reference14 articles.
1. On the Air Resistance and the Bernoulli Effect of the Human Larynx
2. Myoelastic-Aerodynamic Theory of Voice Production
3. Synthesis of Voiced Sounds From a Two-Mass Model of the Vocal Cords
4. 4) D. J. Broad, “The new theories of vocal fold vibration,” in Speech and Language: Advances in Basic Research and Practice, Vol. 2, N. J. Lass, Ed. (Academic Press, New York, 1979), pp. 203–256.
5. Theoretical and experimental study of quasisteady‐flow separation within the glottis during phonation. Application to a modified two‐mass model
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1. Source-filter interaction in phonation: A study using vocal-tract data of a soprano singer;Acoustical Science and Technology;2019-09-01
2. Effect of channel asymmetry on the behavior of flow passing through the glottis;Acoustical Science and Technology;2012
3. Voice production model integrating boundary-layer analysis of glottal flow and source-filter coupling;The Journal of the Acoustical Society of America;2011-03
4. Low-dimensional models of the glottal flow incorporating viscous-inviscid interaction;The Journal of the Acoustical Society of America;2009-01
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