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Investigation of the flow physics in the human pharynx/larynx region

机译:人类咽/喉区域的流动物理学研究

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This experimental study was carried out to investigate the flow field in the human extra-thoracic airway using the particle image velocimetry technique. The purpose of this study is to understand the physics of the turbulent flow in the pharynx/larynx region. The flow rate was 9 l/min, and the corresponding Reynolds number, based on the inlet condition, was 670. Two thousand images were acquired at each location at a framing rate of 2 Hz. The mean turbulence intensity, turbulent kinetic energy and Reynolds stress fields were calculated. Moreover, the proper orthogonal decomposition method and quadrant analysis were also used for investigating the flow in the pharynx/larynx region. The results showed that the flow is strongly three dimensional and is characterised by re-circulation, jet-like and sink-like mean flows. The pharynx/larynx region is characterised by bursting events (e.g. ejection, sweep and interaction events) particularly in the epiglottal region. These events appear to be responsible for deforming and/or tearing apart the vortical structures. In addition, the major contribution to the Reynolds shear stress comes from the events that mainly burst with or against the flow direction which, in some cases, exceeded 100 % of the inlet velocity.
机译:进行了该实验研究,以使用粒子图像测速技术研究人胸外气道中的流场。这项研究的目的是了解咽/喉区域湍流的物理学。流速为9 l / min,根据入口条件,相应的雷诺数为670。在每个位置以2 Hz的帧速率采集了两千张图像。计算了平均湍流强度,湍动能和雷诺应力场。此外,还使用适当的正交分解方法和象限分析来研究咽/喉区域的血流。结果表明,该流动具有较强的三维性,具有再循环,射流状和汇状平均流的特征。咽/喉区域的特征在于爆发事件(例如,射出,横扫和相互作用事件),特别是在会厌区域。这些事件似乎是造成涡旋结构变形和/或撕裂的原因。此外,雷诺剪切应力的主要贡献来自主要沿与流动方向相反或与流动方向相反的方向破裂的事件,在某些情况下,这些事件超过了入口速度的100%。

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