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首页> 外文期刊>Journal of Aerosol Science >Large eddy simulation of inhaled particle deposition within the human upper respiratory tract
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Large eddy simulation of inhaled particle deposition within the human upper respiratory tract

机译:人体上呼吸道内吸入颗粒沉积的大涡模拟

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摘要

A three-dimensional(3-D)computer geometrical model of the human upper respiratory tract(URT),including the airway from mouth,pharynx,larynx and trachea to triple bifurcation was created.A large eddy simulation(LES)based on this model investigated the deposition of inhaled particles within the human URT.Steady respiration mode was first considered with three kinds of breathing intensity Q = 30,60 and 90 L/min and then compared with an unsteady respiration mode at the breathing intensity of Q = 60 L/ min.The deposition efficiencies(DEs)of different particles with density of pho = 600,912 kg/m3 and particle diameter of d = 1,5,6.5 mu m was studied,respectively.The results showed that the increases of particle diameter,particle density and breathing intensity improves the particle DEs in the human URT;and the particle DEs in unsteady respiration mode are higher than those in steady mode.The results agree well with corresponding experimental data.
机译:建立了人类上呼吸道(URT)的三维(3-D)计算机几何模型,包括从嘴,咽,喉和气管到三叉分叉的气道,并基于该模型进行了大涡模拟(LES)研究了人类URT中吸入颗粒的沉积。首先考虑三种呼吸强度Q = 30,60和90 L / min的稳定呼吸模式,然后在Q = 60 L的呼吸强度下与不稳定呼吸模式进行比较研究了密度为pho = 600,912 kg / m3和粒径d = 1,5,6.5μm的不同颗粒的沉积效率(DEs)。结果表明,粒径,颗粒的增加密度和呼吸强度改善了人体URT中的颗粒DEs;非稳定呼吸模式中的颗粒DEs高于稳定模式中的颗粒DEs。结果与相应的实验数据吻合良好。

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