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垂直声门管长度对均匀声门内声门压力及发声阈压力的影响

Effects of Vertical Glottal Duct Length on Intraglottal Pressures and Phonation Threshold Pressure in the Uniform Glottis.

作者信息

Li Sheng, Scherer Ronald C, Fulcher Lewis P, Wang Xianbo, Qiu Lijun, Wan Mingxi, Wang Supin

机构信息

Department of Automation, College of Control Engineering, Xijing University, Xi'an, China.

Department of Communication Sciences and Disorders, Bowling Green State University, Bowling Green, Ohio.

出版信息

J Voice. 2018 Jan;32(1):8-22. doi: 10.1016/j.jvoice.2017.04.002. Epub 2017 Jun 7.

Abstract

According to Titze's 1988 derivations for phonation threshold pressure (PTP), there are a number of important variables that PTP depends upon. A primary one is the vertical glottal duct length T: PTP decreases if T is increased. Changing the length of T, however, may have a significant effect on other variables that PTP depends upon. This study examined the effects of lengthening the vertical uniform glottal duct on the transglottal and intraglottal pressures, and the derived transglottal pressure coefficients, for five glottal diameters (0.01, 0.02, 0.04, 0.08, and 0.16 cm) and three transglottal pressures (500, 1000, and 1500 Pa) for the uniform glottis by using the computational fluid dynamics code Fluent (for laminar, incompressible, two-dimensional flow). The results suggest the following: A longer vertical glottal duct length increases the intraglottal and transglottal pressures, and more so for smaller glottal diameters, and increases the transglottal pressure coefficient. In addition, unlike the transglottal pressure coefficient, the glottal entrance pressure coefficient is highly dependent on the vertical glottal duct length only for lower flows and Reynolds numbers, but is relatively independent of duct length, glottal diameter, and transglottal pressure above a flow value of approximately 50 cm/s, suggesting that the entrance pressure coefficient is a relatively local phenomenon. These results suggest that the vertical glottal duct length and its effects need to be taken into consideration for vocal fold modeling, aeroacoustics purposes, and the estimation of PTP.

摘要

根据蒂茨1988年对发声阈压(PTP)的推导,PTP取决于许多重要变量。一个主要变量是声门垂直管道长度T:如果T增加,PTP会降低。然而,改变T的长度可能会对PTP所依赖的其他变量产生显著影响。本研究使用计算流体动力学代码Fluent(用于层流、不可压缩二维流),研究了在五个声门直径(0.01、0.02、0.04、0.08和0.16厘米)和三个跨声门压力(500、1000和1500帕)条件下,延长均匀声门垂直管道对跨声门和声门内压力以及推导得出的跨声门压力系数的影响。结果表明:更长的声门垂直管道长度会增加声门内和跨声门压力,对于较小的声门直径增加得更多,并且会增加跨声门压力系数。此外,与跨声门压力系数不同,声门入口压力系数仅在较低流速和雷诺数时高度依赖于声门垂直管道长度,但在流速约为50厘米/秒以上时,相对独立于管道长度、声门直径和跨声门压力,这表明入口压力系数是一个相对局部的现象。这些结果表明,在声带建模、气动声学研究以及PTP估计中,需要考虑声门垂直管道长度及其影响。

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