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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Modeling Transport and Deposition Efficiency of Oblate and Prolate Nano- and Micro-particles in a Virtual Model of the Human Airway
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Modeling Transport and Deposition Efficiency of Oblate and Prolate Nano- and Micro-particles in a Virtual Model of the Human Airway

机译:在人类气道虚拟模型中模拟扁长和扁长的纳米和微粒的运输和沉积效率

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摘要

A model for the motion and deposition of oblate and prolate spheroids in the nano- and microscale was developed. The aim was to mimic the environment of the human lung, but the model is general and can be applied for different flows and geometries for small nonspherical particle Stokes and Reynolds numbers. A study of the motion and orientation of a single oblate and prolate particle has been done yielding that Brownian motion disturbs the Jeffery orbits for small particles. Prolate microparticles still display distinguishable orbits while oblate particles of the same size do not. A statistical study was done comparing the deposition efficiencies of oblate and prolate spheroids of different size and aspect ratio observing that smaller particles have higher deposition rate for lower aspect ratio while larger particles have higher deposition rates for large aspect ratio.
机译:建立了在纳米和微米尺度上扁球形和扁球形的运动和沉积的模型。目的是模仿人的肺部环境,但是该模型是通用的,可以适用于非球形小斯托克斯和雷诺数的不同流量和几何形状。已经对单个扁长和扁长的粒子的运动和方向进行了研究,得出布朗运动干扰了小粒子的杰弗里轨道。扁长的微粒仍显示可区分的轨道,而相同大小的扁长的微粒则没有。进行了统计研究,比较了不同尺寸和长宽比的扁球形和长球形椭球体的沉积效率,观察到较小的颗粒对于较低的纵横比具有较高的沉积速率,而较大的颗粒对于较大的纵横比具有较高的沉积速率。

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