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气流通过人体喉部静态模型时的流动可视化及声学效应。

Flow visualization and acoustic consequences of the air moving through a static model of the human larynx.

作者信息

Kucinschi Bogdan R, Scherer Ronald C, DeWitt Kenneth J, Ng Terry T M

机构信息

Department of Otolaryngology, Head and Neck Surgery, University of Cincinnati Medical Center, Cincinnati, OH 45267-0528, USA.

出版信息

J Biomech Eng. 2006 Jun;128(3):380-90. doi: 10.1115/1.2187042.

Abstract

Flow visualization with smoke particles illuminated by a laser sheet was used to obtain a qualitative description of the air flow structures through a dynamically similar 7.5x symmetric static scale model of the human larynx (divergence angle of 10 deg, minimal diameter of 0.04 cm real life). The acoustic level downstream of the vocal folds was measured by using a condenser microphone. False vocal folds (FVFs) were included. In general, the glottal flow was laminar and bistable. The glottal jet curvature increased with flow rate and decreased with the presence of the FVFs. The glottal exit flow for the lowest flow rate showed a curved jet which remained laminar for all geometries. For the higher flow rates, the jet flow patterns exiting the glottis showed a laminar jet core, transitioning to vortical structures, and leading spatially to turbulent dissipation. This structure was shortened and tightened with an increase in flow rate. The narrow FVF gap lengthened the flow structure and reduced jet curvature via acceleration of the flow. These results suggest that laryngeal flow resistance and the complex jet flow structure exiting the glottis are highly affected by flow rate and the presence of the false vocal folds. Acoustic consequences are discussed in terms of the quadrupole- and dipole-type sound sources due to ordered flow structures.

摘要

利用激光片照亮烟雾颗粒进行流动可视化,以获得通过人喉动态相似的7.5倍对称静态比例模型(发散角为10度,实际最小直径为0.04厘米)的气流结构的定性描述。使用电容式麦克风测量声带下游的声级。假声带(FVFs)也包括在内。一般来说,声门气流是层流且双稳态的。声门射流曲率随流速增加而增大,随假声带的存在而减小。最低流速下的声门出口气流显示出弯曲射流,对于所有几何形状,该射流均保持层流。对于较高流速,离开声门的射流流动模式显示出层流射流核心,过渡到涡旋结构,并在空间上导致湍流耗散。随着流速增加,这种结构会缩短并收紧。狭窄的假声带间隙通过加速气流延长了流动结构并减小了射流曲率。这些结果表明,喉流阻力和声门出口处复杂的射流流动结构受流速和假声带的存在的影响很大。根据有序流动结构产生的四极子型和偶极子型声源讨论了声学后果。

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