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Investigation of boundary condition effects on flow rate distribution in a human upper respiratory tract

机译:研究边界条件对人体上呼吸道流速分布的影响

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Investigation of airflow behavior and distribution in the human respiratory tract has recently drawn the attention of researchers to study the particle movement and deposition in aerosol therapy and inhalation toxicology applications. Therefore, in this paper the steady-state flow behavior during inhalation in a human lung model has been numerically investigated. A three dimensional asymmetric and non-planar bifurcation model of trachea-bronchial airway was used in the present study. Computations were performed for two different boundary conditions: (a) the same flow rate for all the outlets and (b) the same static gauge pressure equal to zero for all the outlets. Reynolds numbers were chosen in the range of 1000 to 4000, corresponding to the breathing rates of 12-48 l/min. Detected reverse flow zones and the flow rate distribution were presented. Estimation of the flow rate distribution in the right (upper, middle and lower) lobes when using the second boundary condition was more accurate compared to the true distribution in the lungs. With increasing the inlet flow rate, flow rate distribution changed in cases where the second boundary condition was used but it was negligible. Reverse flow zones occurred more frequently when using the first boundary condition.
机译:对人类呼吸道中气流行为和分​​布的研究最近吸引了研究人员的注意力,以研究气溶胶疗法和吸入毒理学应用中的颗粒运动和沉积。因此,本文对人肺模型中吸入过程中的稳态流动行为进行了数值研究。在本研究中,使用了气管-支气管气道的三维非对称非平面分叉模型。针对两个不同的边界条件进行了计算:(a)所有出口的流速相同,(b)所有出口的静态静压力等于零。雷诺数选择在1000至4000的范围内,对应于12-48 l / min的呼吸速率。给出了检测到的逆流区域和流速分布。与肺部的真实分布相比,使用第二种边界条件估算右(上,中,下)叶的流速分布更为准确。随着入口流量的增加,在使用第二边界条件的情况下,流量分布发生了变化,但可以忽略不计。当使用第一个边界条件时,逆流区更频繁地出现。

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