Numerical Simulation for Relationship between Vortex Evolution and Diffusion of Aerosol in Human Mouth-Throat Model

2011 ◽  
Vol 301-303 ◽  
pp. 456-461
Author(s):  
Fu Sheng Li ◽  
Dong Sun ◽  
Xin Xi Xu ◽  
Xiu Guo Zhao ◽  
Shu Lin Tan

The research on the relationship between vortex evolution and diffusion of aerosol in human upper respiratory tract can deepen understanding of the characteristics of the particle deposition pattern in human upper respiratory tract and plays a very important role in analyzing the transition of aerosol in human upper respiratory tract. Large eddy simulation and an efficient Lagrangian particle tracking module were used to simulate relationship between vortex evolution and diffusion of aerosol in mouth-throat model in the conditions of the low intensive respiratory, and the vortex evolution and the mechanism of aerosol transition in human mouth-throat model were discussed. The results show that the diffusion of small aerosol particles follow the vortex structure very closely; the capabilities of the vortex for carrying aerosol particle increase with increase in vorticity, which can affect the diffuseness and deposition of the particles.

2018 ◽  
Vol 32 (1) ◽  
pp. 132-139
Author(s):  
Sayaka FUJII ◽  
Minori SHIROTA ◽  
Yuki KASAMATSU ◽  
Tsubasa TANABE ◽  
Takao INAMURA ◽  
...  

2012 ◽  
Vol 184-185 ◽  
pp. 292-295
Author(s):  
Fu Sheng Li ◽  
Dong Sun ◽  
Xin Xi Xu ◽  
Xiao Hui Liu ◽  
Shu Lin Tan

Accurate simulation for airflow structural characteristics in the human mouth-throat model plays an important role in analyzing the filter effect of pharynx and larynx and the diffusion, transition and deposition patterns of aerosol in human upper respiratory tract. Large eddy simulation was used to simulate the airflow movement in human mouth-throat model in the conditions of the cyclic respiratory pattern, and the airflow structural characteristic in mouth-throat model was discussed. The results show that two velocity growth points generated in pharyngeal and laryngeal region; the airflow separates in region near the pharynx and the separation zone appears near the anterior wall of pharynx; A turbulence jet appears in the glottal region and the airflow; the high velocity zone is created in pharynx and larynx, and the phenomenon of airflow separation appeared in the pharynx. In the process of cyclic exhalation, the phenomenon of airflow separation didn’t appear in the pharynx and larynx.


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