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CFD transient simulation of the cough clearance process using an Eulerian wall film model

机译:使用欧拉壁膜模型对咳嗽清除过程的CFD瞬态模拟

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摘要

In this study, a cough cycle is reproduced using a computational methodology. The Eulerian wall film approach is proposed to simulate airway mucus flow during a cough. The reproduced airway domain is based on realistic geometry from the literature and captures the deformation of flexible tissue. To quantify the overall performance of this complex phenomenon, cough efficiency (CE) was calculated, which provided an easily reproducible measurement parameter for the cough clearance process. Moreover, the effect of mucus layer thickness was examined. The relationship between the CE and the mucus viscosity was quantified using reductions from 20 to 80%. Finally, predictions of CE values based on healthy person inputs were compared with values obtained from patients with different respiratory diseases, including chronic obstructive pulmonary disease (COPD) and respiratory muscle weakness (RMW). It was observed that CE was reduced by 50% in patients with COPD compared with that of a healthy person. On average, CE was reduced in patients with RMW to 10% of the average value of a healthy person.
机译:在这项研究中,咳嗽周期是使用一种计算方法重现的。提出了一种欧拉壁膜方法来模拟咳嗽过程中气道粘液的流动。复制的气道域基于文献中的真实几何形状,并捕获了柔性组织的变形。为了量化这种复杂现象的总体表现,计算了咳嗽效率(CE),它为咳嗽清除过程提供了易于重现的测量参数。此外,检查了粘液层厚度的影响。 CE和粘液粘度之间的关系通过降低20%至80%来定量。最后,将基于健康人输入的CE值预测与从患有不同呼吸系统疾病(包括慢性阻塞性肺疾病(COPD)和呼吸肌无力(RMW))的患者获得的值进行比较。观察到,与健康人相比,COPD患者的CE降低了50%。平均而言,RMW患者的CE降低到健康人平均值的10%。

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