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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A Numerical Study of Water Loss Rate Distributions in MDCT-Based Human Airway Models
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A Numerical Study of Water Loss Rate Distributions in MDCT-Based Human Airway Models

机译:基于MDCT的人类气道模型中失水率分布的数值研究

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摘要

Both three-dimensional (3D) and one-dimensional (1D) computational fluid dynamics methods are applied to study regional water loss in three multi-detector row computed-tomography-based human airway models at the minute ventilations of 6, 15 and 30 L/min. The overall water losses predicted by both 3D and 1D models in the entire respiratory tract agree with available experimental measurements. However, 3D and 1D models reveal different regional water loss rate distributions due to the 3D secondary flows formed at bifurcations. The secondary flows cause local skewed temperature and humidity distributions on inspiration acting to elevate the local water loss rate; and the secondary flow at the carina tends to distribute more cold air to the lower lobes. As a result, the 3D model predicts that the water loss rate first increases with increasing airway generation, and then decreases as the air approaches saturation, while the 1D model predicts a monotonic decrease of water loss rate with increasing airway generation. Moreover, the 3D (or 1D) model predicts relatively higher water loss rates in lower (or upper) lobes. The regional water loss rate can be related to the non-dimensional wall shear stress (tau*) by the non-dimensional mass transfer coefficient (h(0)*) as h(0)* = 1.15 tau*(0.272,) R = 0.842.
机译:三维(3D)和一维(1D)计算流体动力学方法均被用于研究在6 L,15 L和30 L的微小通气量的三个基于多探测器行计算机断层摄影的人气道模型中的区域失水/分钟。由3D和1D模型在整个呼吸道中预测的总水分流失与可用的实验测量结果一致。但是,由于在分叉处形成的3D二次流,3D和1D模型显示了不同的区域失水率分布。二次流会在吸气时引起局部偏斜的温度和湿度分布,从而提高局部失水率;隆突处的二次流倾向于将更多的冷空气分配到较低的裂片。结果,3D模型预测失水率首先随着气道生成量的增加而增加,然后随着空气接近饱和而降低,而1D模型预测失水率随着气道生成量的增加而单调降低。此外,3D(或1D)模型预测较低(或较高)波瓣处的相对较高的失水率。区域失水率可以通过无量纲传质系数(h(0)*)与无量纲墙体剪应力(tau *)相关,其中h(0)* = 1.15 tau *(0.272,)R = 0.842。

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