Detail publikace
Experimental and computational modelling of the flow of inhaled fibrous particles in human airways
LÍZAL, F. PRINZ, F. MIŠÍK, O. KÁNSKÁ, J. BĚLKA, M. CEJPEK, O. MALÝ, M. JEDELSKÝ, J. ELCNER, J.
Anglický název
Experimental and computational modelling of the flow of inhaled fibrous particles in human airways
Typ
abstrakt
Jazyk
en
Originální abstrakt
The complex nature of the flow of inhaled fibres poses a persistent challenge in accurately modelling and calculating fibre flow and deposition in human airways. Computational limitations and a lack of experimental data for validation continue to restrict progress in this field. To address this challenge, our work integrates computational modelling and experimental measurements. The computational simulations were performed using the Euler-Lagrange Euler-Rotation (ELER) approach. To assess its suitability for modelling respiratory fibre transport and deposition, the simulation of particle behaviour was compared to our experimental data on fibre orientation during steady flow.
Anglický abstrakt
The complex nature of the flow of inhaled fibres poses a persistent challenge in accurately modelling and calculating fibre flow and deposition in human airways. Computational limitations and a lack of experimental data for validation continue to restrict progress in this field. To address this challenge, our work integrates computational modelling and experimental measurements. The computational simulations were performed using the Euler-Lagrange Euler-Rotation (ELER) approach. To assess its suitability for modelling respiratory fibre transport and deposition, the simulation of particle behaviour was compared to our experimental data on fibre orientation during steady flow.
Klíčová slova anglicky
Euler-Lagrange Euler-Rotation; fibers; fibres; inhalation; human airways
Vydáno
25.08.2024
Nakladatel
Finish Association for Aerosol Research
Místo
Tampere
Kniha
Abstract Book of European Aerosol Conference 2024 (EAC2024), 25.8. – 30.8.2024, Tampere, Finland
Počet stran
1