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Deposition of charged inhaled aerosols with transient airflow in sequential lung airway model

机译:序贯肺气道模型中瞬态气流对带电吸入气溶胶的沉积

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Transport and deposition of charged inhaled aerosols in double planar bifurcation representing generation three to five of human respiratory system has been studied under a light activity breathing condition. Both steady and oscillatory laminar inhalation airflow is considered. Particle trajectories are calculated using a Lagrangian reference frame, which is dominated by the fluid force driven by airflow, gravity force and electrostatic forces (both of space and image charge forces). The particle-mesh method is selected to calculate the space charge force. This numerical study investigates the deposition efficiency in the three-dimensional model under various particle sizes, charge values, and inlet particle distribution. Numerical results indicate that particles carrying an adequate level of charge can improve deposition efficiency in the airway model.
机译:在一个光度活动呼吸状态下,研究了代表三至五个人类呼吸系统代表三至五种的双平面分叉的带电吸入气溶胶的运输和沉积。考虑稳定和振动层吸入气流。使用拉格朗日参考框架计算粒子轨迹,该参考框架由气流,重力力和静电力驱动的流体力(空间和图像电力)驱动。选择粒子网格以计算空间电荷力。该数值研究在各种粒度,电荷值和入口粒度分布下研究了三维模型中的沉积效率。数值结果表明,携带足够电荷水平的颗粒可以提高气道模型中的沉积效率。

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