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在摩擦音嘶声产生中的个体特征的空气声学分析。

Aeroacoustic analysis on individual characteristics in sibilant fricative production.

机构信息

Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka 560-8531, Japan.

Osaka University Dental Hospital, 1-8 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

J Acoust Soc Am. 2019 Aug;146(2):1239. doi: 10.1121/1.5122793.

Abstract

The cause of individual acoustic characteristics of sibilant fricatives /s/ and /ʃ/ was analyzed by extracting vocal tract geometries and conducting aeroacoustic experiments and simulations on each geometry. The vocal tract geometries of five Japanese subjects while sustaining /s/ and /ʃ/ were collected by magnetic resonance imaging. Flow and sound generation in the vocal tracts was predicted by large eddy simulations of compressible flow. The characteristic dimensions of the vocal tracts were extracted and simplified vocal tract models were constructed to clarify the relationship between the geometries and the acoustic characteristics. The acoustic characteristics of sounds generated by the simplified models agreed well with the sounds predicted by the simulation, indicating that the proposed model is able to express the individual characteristics in the production of sibilant fricatives. A comparison of the models showed that the volume and length of a space downstream from the constriction are key factors controlling the acoustic characteristics of each subject.

摘要

通过提取声道几何形状并对每个几何形状进行空气动力学实验和模拟,分析了产生清擦音/s/和/ʃ/个体声学特征的原因。通过磁共振成像采集了五名日本受试者发/s/和/ʃ/时的声道几何形状。通过可压缩流的大涡模拟预测了声道内的流动和声的产生。提取了声道的特征尺寸,并构建了简化的声道模型,以阐明几何形状和声学特征之间的关系。简化模型产生的声音的声学特征与模拟预测的声音吻合较好,表明所提出的模型能够表达清擦音产生中的个体特征。对模型的比较表明,收缩后下游空间的体积和长度是控制每个受试者声学特征的关键因素。

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