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发声起始的物理机制:发声气动弹性连续体模型的线性稳定性分析

Physical mechanisms of phonation onset: a linear stability analysis of an aeroelastic continuum model of phonation.

作者信息

Zhang Zhaoyan, Neubauer Juergen, Berry David A

机构信息

The Laryngeal Dynamics Laboratory, Division of Head and Neck Surgey, David Geffen School of Medicine at UCLA, 31-24 Rehabilitation Center, Los Angeles, California 90095-1794, USA.

出版信息

J Acoust Soc Am. 2007 Oct;122(4):2279-95. doi: 10.1121/1.2773949.

Abstract

In an investigation of phonation onset, a linear stability analysis was performed on a two-dimensional, aeroelastic, continuum model of phonation. The model consisted of a vocal fold-shaped constriction situated in a rigid pipe coupled to a potential flow which separated at the superior edge of the vocal fold. The vocal fold constriction was modeled as a plane-strain linear elastic layer. The dominant eigenvalues and eigenmodes of the fluid-structure-interaction system were investigated as a function of glottal airflow. To investigate specific aerodynamic mechanisms of phonation onset, individual components of the glottal airflow (e.g., flow-induced stiffness, inertia, and damping) were systematically added to the driving force. The investigations suggested that flow-induced stiffness was the primary mechanism of phonation onset, involving the synchronization of two structural eigenmodes. Only under conditions of negligible structural damping and a restricted set of vocal fold geometries did flow-induced damping become the primary mechanism of phonation onset. However, for moderate to high structural damping and a more generalized set of vocal fold geometries, flow-induced stiffness remained the primary mechanism of phonation onset.

摘要

在一项发声起始的研究中,对二维气动弹性连续体发声模型进行了线性稳定性分析。该模型由位于刚性管道中的声带形状收缩部分组成,该管道与在声带上边缘分离的势流相连。声带收缩部分被建模为平面应变线性弹性层。研究了流固耦合系统的主导特征值和特征模态作为声门气流的函数。为了研究发声起始的特定空气动力学机制,将声门气流的各个分量(例如,流动诱导的刚度、惯性和阻尼)系统地添加到驱动力中。研究表明,流动诱导的刚度是发声起始的主要机制,涉及两种结构特征模态的同步。只有在结构阻尼可忽略不计且声带几何形状受限的条件下,流动诱导的阻尼才成为发声起始的主要机制。然而,对于中等至高结构阻尼以及更广义的声带几何形状集,流动诱导的刚度仍然是发声起始的主要机制。

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