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NUMERICAL SIMULATION OF TURBULENT AIRFLOW AND PARTICLE DEPOSITION IN HUMAN UPPER ORAL AIRWAYS

机译:人上口气道内湍流和颗粒沉积的数值模拟

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摘要

The objectives of this work were twofold. Firstly, a second-order closure turbulence model (LRR model) was used for capturing the anisotropic turbulence intensities within the human upper oral airways. Secondly, dispersion and deposition of particles were analyzed by a Lagrangian particle tracking approach. The computational model was validated with experimental data in terms of particle deposition fractions. The results showed that the airflow in oral airways were three dimensional and included separated flow regions, and contains strongly anisotropic turbulence fluctuation fields. Taking into account the turbulence anisotropy provided important information for particle dispersion analysis; in particular, particle deposition in the human oral airways was noticeably affected by the presence of anisotropic turbulence fluctuation fields.
机译:这项工作的目标是双重的。首先,使用二阶封闭湍流模型(LRR模型)来捕获人上口腔气道内的各向异性湍流强度。其次,通过拉格朗日粒子跟踪方法分析了粒子的分散和沉积。计算模型已根据颗粒沉积分数的实验数据进行了验证。结果表明,口腔气道中的气流是三维的,包括分开的流动区域,并且包含强烈的各向异性湍流波动场。考虑到湍流各向异性为颗粒弥散分析提供了重要信息;特别地,各向异性湍流波动场的存在显着影响了人类口腔气道中的颗粒沉积。

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