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Eulerian multiphase CFD analysis of particle transport and deposition in the human

机译:人体中颗粒传输和沉积的欧拉多相CFD分析

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The authors' recent research in the application of three-dimensional, multiphase Computational Fluid Dynamics (CFD) analysis of particle transport and deposition in the human lung is summarized in this paper. A physically accurate representation of the trachea and upper bronchi generations are obtained using high-resolution computed tomography (HRCT) of a rubber cast of an adult human tracheobronchial tree. A computer model of this data is used as a bounding surface for a hybrid unstructured CFD mesh. The differential model employed in the analyses is the ensemble averaged n-fluid system, wherein continuity, momentum, and turbulence quantity conservation equations are solved for an arbitrary number of constituents, here one carrier phase (air) and multiple particulate fields representing different characteristic sizes. Models for non-equilibrium interfacial transfer are incorporated to account for particle drag, dispersion, and deposition. In the present work, steady state simulations were performed corresponding to a nominal adult human inhalation rate 770 of cm~3/s. It is found that the detailed geometric and physical modeling employed gives rise to qualitatively and quantitatively correct deposition rate predictions, for particle size ranges of pharmaceutical interest.
机译:本文总结了作者最近在三维,多相计算流体动力学(CFD)分析中在人肺中进行颗粒传输和沉积的研究。使用成人成年气管支气管树的橡胶铸件的高分辨率计算机断层扫描(HRCT),可获得气管和上支气管世代的物理精确表示。此数据的计算机模型用作混合非结构化CFD网格的边界表面。分析中使用的微分模型是整体平均n流体系统,其中求解了任意数量成分的连续性,动量和湍流守恒方程,此处一个载流相(空气)和代表不同特征尺寸的多个粒子场。并入了非平衡界面转移模型,以说明颗粒的阻力,分散和沉积。在目前的工作中,进行了稳态模拟,对应于成年人的名义吸入率770 cm〜3 / s。已经发现,对于药物关注的粒径范围,所采用的详细的几何和物理模型引起了定性和定量的正确沉积速率预测。

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