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Numerical investigation of the lower airway exposure to indoor particulate contaminants

机译:室内颗粒污染物下呼吸道暴露的数值研究

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Inhalation exposure to indoor particulate contaminants contributes as one of the leading threats to public health. Most existing airway morphometry models are either theoretical or semi-empirical; these are developed for predicting deposition fractions for an averaged general population subgroup. It is difficult to customize a fast and accurate prediction on individual basis. This study aims to analyse the regional particle deposition along an anatomically correct airway model, which is developed from a healthy volunteer’s computer tomography images. Computational fluid dynamics simulation results show that the majority of particles are deposited in the bronchi. Accumulation particles (0.1–2.0 μm) have the smallest deposition fraction in the lower airways. An increase in the aerodynamic diameter 2.0 μm of the particles elevated the deposition fraction. These findings inspire future investigations into control methods that minimize the negative health impact of indoor emissions.
机译:吸入暴露于室内颗粒状污染物,促成了对公共卫生的主要威胁之一。最现有的气道形态学模型是理论或半经验的;这些用于预测平均一般人群亚组的沉积分数。很难根据个人基础定制快速准确的预测。本研究旨在沿着解剖学校正的气道模型分析区域粒子沉积,这是由健康志愿者的计算机断层扫描图像开发的。计算流体动力学仿真结果表明,大多数颗粒沉积在支气管中。累积颗粒(0.1-2.0μm)具有下呼吸道中最小的沉积分数。空气动力学直径>2.0μm的颗粒的增加升高了沉积级分。这些调查结果激发了未来的控制方法,以最大限度地减少室内排放的负面健康影响。

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