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Influence of the ventricular folds on a voice source with specified vocal fold motion

机译:特定的人声折叠动作对心室褶皱对声源的影响

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摘要

The unsteady drag on the vocal folds is the major source of sound during voiced speech. The drag force is caused by vortex shedding from the vocal folds. The influence of the ventricular folds (i.e., the “false” vocal folds that protrude into the vocal tract a short distance downstream of the glottis) on the drag and the voice source are examined in this paper by means of a theoretical model involving vortex sheets in a two-dimensional geometry. The effect of the ventricular folds on the output acoustic pressure is found to be small when the movement of the vocal folds is prescribed. It is argued that the effect remains small when fluid-structure interactions account for vocal fold movement. These conclusions can be justified mathematically when the characteristic time scale for change in the velocity of the glottal jet is large compared to the time it takes for a vortex disturbance to be convected through the vocal fold and ventricular fold region.
机译:发声时,人声折迭的不稳定是声音的主要来源。阻力是由声带上的涡旋脱落引起的。本文通过涉及涡流片的理论模型研究了心室褶皱(即在声门下游短距离内伸入声道的“假”声带)对阻力和声源的影响。在二维几何中。当规定了声带的运动时,发现心室褶皱对输出声压的影响很小。有人认为,当流体-结构相互作用引起声带运动时,效果仍然很小。当声门喷流速度变化的特征时间尺度比通过声带和心室褶皱区对流涡流对流所花费的时间大时,可以用数学方法证明这些结论。

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