Deverge M, Pelorson X, Vilain C, Lagrée P Y, Chentouf F, Willems J, Hirschberg A
Fluid Dynamics Laboratory, Technical University of Eindhoven, Postbus 513, 5600-MB Eindhoven, The Netherlands.
J Acoust Soc Am. 2003 Dec;114(6 Pt 1):3354-62. doi: 10.1121/1.1625933.
Measurements of pressure in oscillating rigid replicas of vocal folds are presented. The pressure upstream of the replica is used as input to various theoretical approximations to predict the pressure within the glottis. As the vocal folds collide the classical quasisteady boundary layer theory fails. It appears however that for physiologically reasonable shapes of the replicas, viscous effects are more important than the influence of the flow unsteadiness due to the wall movement. A simple model based on a quasisteady Bernoulli equation corrected for viscous effect, combined with a simple boundary layer separation model does globally predict the observed pressure behavior.
本文给出了在振动声带刚性复制品中压力的测量结果。复制品上游的压力被用作各种理论近似的输入,以预测声门内的压力。当声带碰撞时,经典的准稳态边界层理论失效。然而,对于生理上合理形状的复制品,粘性效应似乎比由于壁运动引起的流动非稳态影响更为重要。基于考虑粘性效应校正的准稳态伯努利方程的简单模型,结合简单的边界层分离模型,总体上确实能够预测所观察到的压力行为。