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对舌位和软腭闭合对摩擦音[s]产生的影响的数值研究。

Numerical investigation of effects of tongue articulation and velopharyngeal closure on the production of sibilant [s].

机构信息

Computational Fluid Dynamics Laboratory, Department of Computational Science, Graduate School of System Informatics, Kobe University, 1-1 Rokkodai, Nada-ku, Kobe, 657-8501, Japan.

Complex Phenomena Unified Simulation Research Team, RIKEN, Advanced Institute for Computational Science, Kobe, 650-0047, Japan.

出版信息

Sci Rep. 2022 Sep 13;12(1):15361. doi: 10.1038/s41598-022-18784-7.

Abstract

A numerical simulation of sibilant /s/ production with the realistically moving vocal tract was conducted to investigate the flow and acoustic characteristics during the articulation process of velopharyngeal closure and tongue movement. The articulation process was simulated from the end of /u/ to the middle of /s/ in the Japanese word /usui/, including the tongue elevation and the velopharyngeal valve closure. The time-dependent vocal tract geometry was reconstructed from the computed tomography scan. The moving immersed boundary method with the hierarchical structure grid was adopted to approach the complex geometry of the human speech organs. The acoustic characteristics during the co-articulation process were observed and consistent with the acoustic measurement for the subject of the scan. The further simulations with the different closing speeds of the velopharyngeal closure showed that the far-field sound during the co-articulation process was amplified with the slower closing case, and the velum closure speed was inverse proportional to the sound amplitude with the slope value of - 35.3 dB s/m. This indicates possible phonation of indistinguishable aeroacoustics sound between /u/ and /s/ with slower velopharyngeal closure.

摘要

采用真实运动声道的声门塞闭和舌运动协同发音的模拟 /s/ 辅音的数值模拟,研究协同发音过程中的流场和声学特性。该协同发音过程从日语单词“usui”中/u/的结束部分到/s/的中间部分进行模拟,包括舌位抬高和咽腔闭合。基于计算断层扫描重建时变声道几何形状。采用具有层次结构网格的移动浸入边界法逼近人类言语器官的复杂几何形状。在协同发音过程中观察到声学特性,并与扫描对象的声学测量结果一致。进一步用不同的咽腔闭合速度进行的模拟表明,在协同发音过程中,远场声音随着闭合速度的降低而放大,而软腭闭合速度与声音幅度成反比,斜率值为-35.3dB/s/m。这表明在较慢的咽腔闭合时,/u/和/s/之间可能存在无法区分的空气动力声学声音的发声。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a10/9470661/a71ffc9da379/41598_2022_18784_Fig1_HTML.jpg

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