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Aerodynamic sound of a body in arbitrary, deformable motion, with application to phonation

机译:以任意,可变形的方式运动的空气动力学声音,并应用于发声

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摘要

The method of tailored Green's functions advocated by Doak [Acoustic radiation from a turbulent fluid containing foreign bodies, Proceedings of the Royal Society A 254 (1960) 129-145] for the solution of aeroacoustic problems is used to analyse the contribution of the mucosal wave to self-sustained modulation of air flow through the glottis during the production of voiced speech. The amplitude and phase of the aerodynamic surface force that maintains vocal fold vibration are governed by flow separation from the region of minimum cross-sectional area of the glottis, which moves back and forth along its effective length accompanying the mucosal wave peak. The correct phasing is achieved by asymmetric motion of this peak during the opening and closing phases of the glottis. Limit cycle calculations using experimental data of Berry et al. [High-speed digital imaging of the medial surface of the vocal folds, Journal of the Acoustical Society of America110 (2001) 2539-2547] obtained using an excised canine hemilarynx indicate that the mechanism is robust enough to sustain oscillations over a wide range of voicing conditions.
机译:Doak提出的量身定制的格林函数方法[来自含有异物的湍流的声辐射,英国皇家学会学报A 254(1960)129-145]用于解决空气声学问题,用于分析粘膜波的作用在产生有声语音时对通过声门的气流的持续调节。维持声带振动的空气动力学表面力的振幅和相位由声门的最小横截面积区域的流动分离控制,声门的最小横截面区域沿着伴随粘膜波峰的有效长度来回移动。正确的相位是通过声门打开和闭合阶段该峰的不对称运动来实现的。使用Berry等人的实验数据进行极限循环计算。 [声带内侧表面的高速数字成像,美国声学学会杂志110(2001)2539-2547]使用切除的犬喉部获得,表明该机制足够鲁棒,可以在很大范围内维持振荡。发声条件。

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