儿童上呼吸道的气溶胶沉积。

F H C de Jongh, M J G Rinkel, H W M Hoeijmakers
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引用次数: 0

摘要

对于小孩子来说,通常只有少量吸入的气溶胶颗粒到达肺部,因为大部分都沉积在上呼吸道。在这项研究中,基于计算机断层扫描(CT)数据,对一个9个月大的婴儿的上呼吸道进行建模,作为计算流体动力学包(CFX)的输入。通过对两个测试用例的评估,验证了该软件包对气溶胶沉降计算的有效性,这两个测试用例也可以解析解决。在水平放置的直管中,由于使用非结构化网格产生的小速度,数值发现的沉降分数与小颗粒尺寸(小于3微米)的精确解存在偏差。虽然这些速度与主流速度相比很小,但它们与这种颗粒的最终沉降速度相当。弯曲管惯性冲击的试验也证明了同样的问题。考虑到这一点,我们计算了3.7微米颗粒在儿童上呼吸道模型(SAINT-model)中的气溶胶沉积。结果与文献中的实验结果进行了比较。对于小潮量和小流量,计算结果与实验测量结果吻合。然而,在高流速和小颗粒尺寸下,发现了较大的偏差。最可能的原因是机头入口的不完全建模和湍流引起的惯性效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aerosol deposition in the upper airways of a child.

In a small child, normally only a small amount of inhaled aerosol particles reaches the lungs because the majority deposits in the upper airways. In this study, the upper airways of a 9- month-old child, based on computed tomography (CT) data, are modeled to serve as input for a computational fluid dynamics package (CFX). Verification of the validity of aerosol deposition calculations by this package is accomplished by evaluating two test cases, which also can be solved analytically. The numerically found sedimentation fraction in a horizontally placed straight pipe shows deviations from the exact solution for small particle sizes (less than 3 micron) due to small velocities generated by the use of an unstructured mesh. Although these velocities are small compared to the mainstream velocity, they are comparable with the terminal settling velocity of such a particle. Also the test case for inertial impaction in a bend pipe demonstrated the same problem. With this in mind, the aerosol deposition of 3.7-micron particles in the upper airway model of the child (SAINT-model) was calculated. Results were compared with experimentally found results in the literature. For small tidal volumes and flow rates, the computational results matched the experimentally measured results. However, large deviations were found for higher flow rates and small particle sizes. Most probably the incompletely modeled entrance at the nose and inertial effects due to turbulence might be responsible.

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