Scale resolving simulations of the effect of glottis motion and the laryngeal jet on flow dynamics during respiration
Author:
Funder
RMIT University
National Computational Infrastructure
Australian Government
Publisher
Elsevier BV
Reference54 articles.
1. Effects of differences in nasal anatomy on airflow distribution: a comparison of four individuals at rest;Segal;Ann. Biomed. Eng.,2008
2. Mechanics of airflow in the human nasal airways;Doorly;Respir. Physiol. Neurobiol.,2008
3. Effect of transient breathing cycle on the deposition of micro and nanoparticles on respiratory walls;Kuga;Comput. Methods Programs Biomed.,2023
4. Computational fluid dynamics modelling of human upper airway: a review;Faizal;Comput. Methods Programs Biomed.,2020
5. SARS-CoV-2 droplet deposition path and its effects on the human upper airway in the oral inhalation;Mortazavi;Comput. Methods Programs Biomed.,2021
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