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模拟规则和不规则声门闭合类型的实验流程研究

Experimental flow study of modeled regular and irregular glottal closure types.

作者信息

Kirmse Clemens, Triep Michael, Brücker C, Döllinger Michael, Stingl Michael

机构信息

Institute of Mechanics and Fluid Dynamics, Technische Universität, Bergakademie Freiberg, Lampadiusstr. 4, 09596 Freiberg, Germany.

出版信息

Logoped Phoniatr Vocol. 2010 Apr;35(1):45-50. doi: 10.3109/14015431003667652.

Abstract

The present study shows the results of visualization experiments of the jet formation through a dynamic model of the human vocal folds. The model consists of two counter-rotating, 3D-shaped driven cams covered with a stretched silicone membrane. The 3D contours of the cams are a result of an optimized mapping of observed characteristic clinical vocal fold motions. The experiments are performed by using cams which produce the convex, triangular, rectangular, and concave or sand-glass regular glottis closure types. Two irregular cases are investigated: one of the convex cams is statically closed or opened. These cases cause an oscillating jet which attaches to the ventricular folds and appears to change the part of the aero-acoustic sound spectrum induced by vortices.

摘要

本研究展示了通过人类声带动态模型进行射流形成可视化实验的结果。该模型由两个反向旋转的三维形状驱动凸轮组成,表面覆盖有拉伸的硅胶膜。凸轮的三维轮廓是对观察到的典型临床声带运动进行优化映射的结果。实验使用产生凸形、三角形、矩形以及凹形或沙漏形等规则声门闭合类型的凸轮进行。研究了两种不规则情况:其中一个凸形凸轮静态闭合或打开。这些情况会导致产生振荡射流,该射流附着在室襞上,似乎会改变由涡旋引起的空气声学频谱部分。

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