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Finite Element Modelling of the Effect of Stiffness and Damping of Vocal Fold Layers on their Vibrations and Produced Sound

机译:有限元模型对声带层刚度和阻尼的效果造型对振动和产生声音的影响

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The study presents a two-dimensional (2D) finite element (FE) model of the fluid-structure-acoustic interaction during self-sustained oscillation of the human vocal folds (VF). The FE model combines the FE models of the VF, trachea and a simplified human vocal tract shaped for phonation of a Czech vowel [a:]. The developed FE model comprises large deformations of the VF tissue, VF contact, fluid-structure interaction (FSI), morphing of the fluid mesh according to the VF motion (Arbitrary Lagrangian-Eulerian approach), solution of unsteady viscous compressible airflow described by the Navier-Stokes equations and airflow separation during the glottis closure. The effect of stiffness and damping of lamina propria, which can be caused by certain VF pathologies, on VF vibrations and produced sound are analyzed. The numerical simulations showed that stiffer lamina propria results in a decrease of the maximum width of glottal opening and in a decrease of the fundamental vibration frequency. Stiffer lamina propria also leads to an increase of maximum of the subglottal pressure and it causes amplitude decrease and flattening of the first and second formant in the spectrum of acoustic pressures. Higher values of lamina propria damping result in the amplitude decrease and flattening of all formants.
机译:该研究呈现了一种二维(2D)有限元(Fe)的流体结构声学相互作用期间人声折叠(VF)的自持续振荡期间。 FE模型结合了VF,气管和简体人声道形状的FE模型,用于捷克元音的发声[A:]。开发的Fe模型包括VF组织的大变形,VF接触,流体结构相互作用(FSI),根据VF运动(任意拉格朗日 - 欧洲方法),流体网的形式的变形(任意拉格朗日 - 欧洲方法),由不稳定的粘性可压缩气流的解决方案在光泽封闭期间,Navier-Stokes方程和气流分离。分析了薄层丙的刚度和阻尼的影响,该丙瘟是由某些VF病理引起的VF振动和产生的声音引起的。数值模拟表明,变硬的薄层Propria导致最大宽度的最大宽度和基本振动频率的降低降低。静止的椎板丙蛋白也导致最大的子凝块压力的增加,并且在声学压力的光谱中导致第一和第二铅剂的幅度降低和平坦化。 LAPINA PRIPRIA阻尼的较高值导致所有选矿体的幅度降低和平整。

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