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Brownian dynamics of nano-fibers in human upper tracheobronchial airways

conference contribution
posted on 2024-10-31, 19:41 authored by Lin TianLin Tian, Goodarz Ahmadi, Jiyuan TuJiyuan Tu
Transport and deposition of inhaled asbestos fibers has been studied in the past few decades due to its pathological response in living being. In the earlier studies, in vitro and vivo experiments in human and animal subjects were reported; however, the reported computational studies are sparse. In this work, the transport and deposition of nano-fibers were simulated in a physiologically realistic lung bifurcation model. Focus of this study was to explore the effect of the Brownian dynamics on the very thin fibers, and how it affects the transport and deposition of the fibers in human airway passages. Motion of the inhaled fibers and their interactions with the surrounding environment were reproduced by solving the system of coupled nonlinear equations governing the fiber translational and rotational motions. Hydrodynamic drag and torque, turbulence dispersion, gravitational sedimentation, and the Brownian diffusion were accounted for. The study uncovered the very important role of Brownian dynamics in thin fibers' motion in human tracheobronchial airways. The simulation results were compared with the experimental measurements, and the carcinogenicity of these fibers in human airways was discussed. The simulation results can help explain many of the earlier experimental findings.

History

Start page

1

End page

4

Total pages

4

Outlet

Proceedings of the 11th International Conference on CFD in the Minerals and Process Industries

Editors

C.B. Solnordal, P. Liovic, G.W. Delaney, S.J. Cummins, M.P. Schwarz and P.J. Witt

Name of conference

CFD 2015

Publisher

CSIRO Australia

Place published

Melbourne, Australia

Start date

2015-12-07

End date

2015-12-09

Language

English

Copyright

Copyright © 2015 CSIRO Australia

Former Identifier

2006063584

Esploro creation date

2020-06-22

Fedora creation date

2016-08-03

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