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Effects of temporally varying inlet conditions on flow and particle deposition in the small bronchial tubes

机译:随时间变化的进气条件对小支气管中血流和颗粒沉积的影响

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摘要

The laminar flow in the small bronchial tubes is quite complex because of the presence of vortex-dominated, secondary flows. Factors contributing to this complexity are the unsteady nature of the inhale-exhale breathing cycle and the geometrical characteristics of the bronchial tubes. To investigate unsteady effects on flows and particle transport, unsteady inhalation flows at a 30-respiration-per-minute frequency, corresponding to a moderate activity level, were simulated for a three-generation, asymmetric, planar bronchial tube model. Ten-micron diameter water droplets were introduced at the inlet at different times during inhalation to develop particle destination maps. The differences in the flow fields and destination maps obtained at the unsteady peak flow and the comparable steady-state inflow condition were minimal. However, particles released at equivalent instantaneous off-peak inflow conditions produced different destination maps. The differences were attributed to the temporal variations of the fluid velocities and history effects.
机译:由于存在以涡流为主的二次流,小支气管中的层流非常复杂。导致这种复杂性的因素是吸气-呼气呼吸循环的不稳定特性以及支气管的几何特征。为了研究对流量和颗粒传输的不稳定影响,针对三代非对称平面支气管模型,模拟了以每分钟30次呼吸的频率(相当于中等活动水平)的不稳定吸入流量。在吸入过程中的不同时间,在入口处将直径为10微米的水滴引入,以形成颗粒终点图。在非稳态峰值流量和相当的稳态流入条件下获得的流场和目的地图的差异最小。但是,在等效的瞬时非高峰流入条件下释放的颗粒会产生不同的目标图。差异归因于流体速度的时间变化和历史效应。

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