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A computational study of asymmetric glottal jet deflection during phonation

机译:发声时非对称声门射流偏转的计算研究

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摘要

Two-dimensional numerical simulations are used to explore the mechanism for asymmetric deflection of the glottal jet during phonation. The model employs the full Navier–Stokes equations for the flow but a simple laryngeal geometry and vocal-fold motion. The study focuses on the effect of Reynolds number and glottal opening angle with a particular emphasis on examining the importance of the so-called “Coanda effect” in jet deflection. The study indicates that the glottal opening angle has no substantial effect on glottal jet deflection. Deflection in the glottal jet is always preceded by large-scale asymmetry in the downstream portion of the glottal jet. A detailed analysis of the velocity and vorticity fields shows that these downstream asymmetric vortex structures induce a flow at the glottal exit which is the primary driver for glottal jet deflection.
机译:二维数值模拟用于探讨声波喷射过程中声门射流的不对称偏转机理。该模型采用完整的Navier-Stokes方程进行流动,但采用简单的喉部几何形状和人声运动。该研究的重点是雷诺数和声门张角的影响,尤其着重于研究所谓的“柯恩达效应”在射流偏转中的重要性。研究表明,声门打开角度对声门射流偏转没有实质性影响。声门喷流的偏转总是在声门喷流的下游部分出现大规模不对称之前。对速度场和涡度场的详细分析表明,这些下游的不对称涡流结构在声门出口处引起流动,这是声门射流偏转的主要驱动力。

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