Numerical investigation of airflow, heat transfer and particle deposition for oral breathing in a realistic human upper airway model

Journal of Thermal Biology
X Y XuW G Weng

Abstract

Inhalation injury from exposure to fire smoke is one of the causes of burn-related death. In this study, a realistic three-dimensional human upper airway model was built from magnetic resonance imaging (MRI) scanned images, including the nasal, oral, pharynx, larynx, trachea and part of the first generation of the tracheobronchial tree, as well as a tissue region from the pharynx to the upper bronchi. The Transition Shear Stress Transport (SST-transition) turbulence model, Pennes bioheat transfer equation, convective boundary conditions and a Lagrangian frame were applied and verified with experimental measurements to simulate the airflow fields, temperature distributions and particle deposition in the human airway model. The effects of flow rate, inhalation temperature and particle diameter were studied. It showed that the oral cavity is more likely to be affected by the inlet air conditions. The mucosa in the oral, pharynx and larynx are more likely to cause the thermal injury. The inspiration flow rate significantly influences the airflow fields, temperature distributions and particle deposition fraction interior of the human upper airway model, especially in the pharynx-larynx region. The rising flow rate, inhalation air te...Continue Reading

Citations

Jan 23, 2019·Journal of Occupational and Environmental Hygiene·Xiaoyu XuJiyuan Tu
Jan 16, 2020·International Journal of Environmental Research and Public Health·Mohammad S IslamSuvash C Saha
Jul 7, 2020·Computer Methods and Programs in Biomedicine·W M FaizalRoziana Mohd Razi

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