首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Fluid flow and particle transport in mechanically ventilated airways. Part I. Fluid flow structures
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Fluid flow and particle transport in mechanically ventilated airways. Part I. Fluid flow structures

机译:机械通风的气道中的流体流动和颗粒传输。第一部分流体流动结构

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A large eddy simulation-based computational study of fluid flow and particle transport in upper tracheobronchial airways is carried out to investigate the effect of ventilation parameters on pulmonary fluid flow. Respiratory waveforms commonly used by commercial mechanical ventilators are used to study the effect of ventilation parameters and ventilation circuit on pulmonary fluid dynamics. A companion paper (Alzahrany et al. in Med Biol Eng Comput, 2014) reports our findings on the effect of the ventilation parameters and circuit on particle transport and aerosolized drug delivery. The endotracheal tube (ETT) was found to be an important geometric feature and resulted in a fluid jet that caused an increase in turbulence and created a recirculation zone with high wall shear stress in the main bronchi. Stronger turbulence was found in lower airways than would be found under normal breathing conditions due to the presence of the jet caused by the ETT. The pressure-controlled sinusoidal waveform induced the lowest wall shear stress on the airways wall.
机译:进行了基于涡流的大型计算研究,研究了气管支气管上呼吸道中的流体流动和颗粒传输,以研究通气参数对肺部流体流动的影响。商用机械呼吸机常用的呼吸波形用于研究通风参数和通风回路对肺液动力学的影响。伴随论文(Alzahrany等人,Med Biol Eng Comput,2014)报告了我们关于通风参数和回路对颗粒传输和雾化药物输送的影响的发现。气管内导管(ETT)被发现是重要的几何特征,并导致流体射流,导致湍流增加,并在主支气管中形成了具有高壁切应力的回流区。由于存在由ETT引起的喷射,因此在较低的气道中发现的湍流要比正常呼吸条件下的湍流强。压力控制的正弦波形在气道壁上引起最低的壁切应力。

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