导电气道中空气和粒子输运的数值模拟

G. Ferron, D. Edwards
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引用次数: 14

摘要

摘要综述了空气和粒子在对称分支气道中输运的数值模拟结果。这些结果揭示了(1)定常与非定常流动模式,(2)二维几何与三维几何,以及(3)自然与强制用户定义的入口和出口边界条件下模拟流动和粒子输运行为的差异。结果表明,固有非定常气道运输的“定常流”近似可能导致在流动逆转过程中出现的独特气流型的分辨率损失。假设二维几何会导致空气动力应力的严重低估,特别是在湍流的情况下。此外,指定入口和出口边界条件可导致观测在自然呼吸过程中不会发生的气体和气溶胶输送效应。结果表明,后一种影响可以通过延长……
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Simulation of Air and Particle Transport in the Conducting Airways
ABSTRACT The results of numerical simulations of air and particle transport through symmetrically branching airways are summarized. These results shed light upon differences in simulated flow and particle transport behavior for (1) steady versus unsteady flow patterns, (2) two- versus three-dimensional geometries, and (3) natural versus forced user-defined entrance and exit boundary conditions. It is shown that the "steadyflow" approximation of inherently unsteady airway transport can lead to a loss of resolution of unique airflow patterns that appear to arise during the process of flow reversal. Assuming a two-dimensional geometry can result in a substantial underprediction of aerodynamic stresses, especially in the case of turbulent flows. Also, assigning entrance and exit boundary conditions can lead to the observation of gas and aerosol transport effects that do not occur during the course of natural breathing processes. It is shown that these latter effects may potentially be eliminated by extending ...
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