As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as it is turned, split, and recombined before splitting again at the end of the trachea as it enters the bronchi. Fully describing the dynamic behaviour of the airflow and how it transports inhaled particles poses a severe challenge to computational simulations. The dynamics of unsteady flow in the human large airways during a rapid and short inhalation (a so-called sniff) is a perfect example of perhaps the most complex and violent human inhalation inflow. Combining the flow solution with a Lagrangian computation reveals the effects of flow behaviour and airway geometry on the deposition of inhaled microparticles. Highly detailed large-scale ...
Effective nasal drug delivery is highly dependent on the delivery of drug from the nasal spray devic...
The effects of mechanical ventilation conditions on fluid flow and particle deposition were studied ...
Aerosol and pollutants, in form of particulates 5–8 μm in main size face every day our respiratory s...
As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as...
As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as...
The dynamics of unsteady flow in the human large airways during a rapid inhalation were investigated...
Airflow and particle transport through the nasal cavity was studied using Computational Fluid Dynami...
A human nasal cavity was reconstructed from CT scans to make a Computational Fluid Dynamics (CFD) mo...
Millions of people world wide suffer from asthma, and respiratory diseases are one of the leading ca...
This thesis is focused on particle transport in the context of high computing performance (HPC) in i...
The industrialization process and the fast growth of cities lead to an increase of respiratory disea...
The nasal cavity and sinuses are a component of the upper respiratory system and study the air passa...
A numerical model of the aerosol transport and deposition in human airways is presented. The model w...
The mechanics of airflow in the large airways during inspiration affects important physiological fun...
This paper summarises current studies related to numerical gas-particle flows in the human nasal cav...
Effective nasal drug delivery is highly dependent on the delivery of drug from the nasal spray devic...
The effects of mechanical ventilation conditions on fluid flow and particle deposition were studied ...
Aerosol and pollutants, in form of particulates 5–8 μm in main size face every day our respiratory s...
As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as...
As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as...
The dynamics of unsteady flow in the human large airways during a rapid inhalation were investigated...
Airflow and particle transport through the nasal cavity was studied using Computational Fluid Dynami...
A human nasal cavity was reconstructed from CT scans to make a Computational Fluid Dynamics (CFD) mo...
Millions of people world wide suffer from asthma, and respiratory diseases are one of the leading ca...
This thesis is focused on particle transport in the context of high computing performance (HPC) in i...
The industrialization process and the fast growth of cities lead to an increase of respiratory disea...
The nasal cavity and sinuses are a component of the upper respiratory system and study the air passa...
A numerical model of the aerosol transport and deposition in human airways is presented. The model w...
The mechanics of airflow in the large airways during inspiration affects important physiological fun...
This paper summarises current studies related to numerical gas-particle flows in the human nasal cav...
Effective nasal drug delivery is highly dependent on the delivery of drug from the nasal spray devic...
The effects of mechanical ventilation conditions on fluid flow and particle deposition were studied ...
Aerosol and pollutants, in form of particulates 5–8 μm in main size face every day our respiratory s...