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Airflow, transport and regional deposition of aerosol particles during chronic bronchitis of human central airways

机译:人类中央呼吸道慢性支气管炎期间气溶胶颗粒的流动,运输和局部沉积

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摘要

In the present study, the effects of airway blockage in chronic bronchitis disease on the flow patterns and transport/deposition of micro-particles in a human symmetric triple bifurcation lung airway model, i.e., Weibel's generations G3-G6 was investigated. A computational fluid and particle dynamics model was implemented, validated and applied in order to evaluate the airflow and particle transport/deposition in central airways. Three breathing patterns, i.e., resting, light activity and moderate exercise, were considered. Using Lagrangian approach for particle tracking and random particle injection, an unsteady particle tracking method was performed to simulate the transport and deposition of micron-sized aerosol particles in human central airways. Assuming laminar, quasi-steady, three-dimensional air flow and spherical non-interacting particles in sequentially bifurcating rigid airways, airflow patterns and particle transport/deposition in healthy and chronic bronchitis (CB) affected airways were evaluated and compared. Comparison of deposition efficiency (DE) of aerosols in healthy and occluded airways showed that at the same flow rates DE values are typically larger in occluded airways. While in healthy airways, particles deposit mainly around the carinal ridges and flow dividers-due to direct inertial impaction, in CB affected airways they deposit mainly on the tubular surfaces of blocked airways because of gravitational sedimentation.
机译:在本研究中,研究了慢性支气管炎疾病中的气道阻塞对人对称三分叉肺气道模型(即Weibel的G3-G6代)中流动模式和微粒运输/沉积的影响。实施,验证和应用了计算流体和颗粒动力学模型,以评估中央气道中的气流和颗粒传输/沉积。考虑了三种呼吸模式,即休息,轻度活动和适度运动。使用拉格朗日方法进行粒子跟踪和随机粒子注入,执行了非稳定粒子跟踪方法来模拟微米级气溶胶粒子在人中央气道中的运输和沉积。假设在依次分叉的刚性气道中出现层流,准稳定的三维气流和球形非相互作用颗粒,评估并比较了健康和慢性支气管炎(CB)感染的气道中的气流模式和颗粒运输/沉积。比较健康气道和阻塞气道的气溶胶沉积效率(DE),发现在相同流速下,阻塞气道的DE值通常较大。在健康的气道中,由于直接的惯性撞击,颗粒主要沉积在主干脊和分流器周围,而在CB影响的气道中,由于重力沉降,它们主要沉积在阻塞气道的管状表面上。

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