The dynamics of unsteady flow in the human large airways during a rapid inhalation were investigated using highly detailed large-scale computational fluid dynamics on a subject-specific geometry. The simulations were performed to resolve all the spatial and temporal scales of the flow, thanks to the use of massive computational resources. A highly parallel finite element code was used, running on two supercomputers, solving the transient incompressible Navier–Stokes equations on unstructured meshes. Given that the finest mesh contained 350 million elements, the study sets a precedent for large-scale simulations of the respiratory system, proposing an analysis strategy for mean flow, fluctuations and wall shear stresses on a rapid and short ...
Knowledge of respiratory flow behaviour is important in many respiratory medical fields. The usefuln...
A patient specific lung flow has been studied using both numerical simulation and experiment. A pati...
This thesis comprises an investigation of the dynamics of airflow in the upper respiratory tract fro...
The dynamics of unsteady flow in the human large airways during a rapid inhalation were investigated...
As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as...
The mechanics of airflow in the large airways during inspiration affects important physiological fun...
Computational Fluid Dynamics (CFD) is fast becoming a useful tool to aid clinicians in pre-surgical ...
AbstractComputational Fluid Dynamics (CFD) is fast becoming a useful tool to aid clinicians in pre-s...
Computational fluid dynamics (CFD) is increasingly used nowadays to capture air and particle transpo...
This Master s thesis extends previous work conducted in the collaboration project called Modelling o...
Computational fluid dynamics (CFD) is increasingly used nowadays to capture air and particle transpo...
As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as...
Nowadays various studies utilizing computational techniques are trying to contribute to the medical ...
Patient-specific simulation of flows in lungs is now straightforward, by segmenting scans from CT an...
The airflow in a subject-specific breathing human lung is sim-ulated with a multiscale computational...
Knowledge of respiratory flow behaviour is important in many respiratory medical fields. The usefuln...
A patient specific lung flow has been studied using both numerical simulation and experiment. A pati...
This thesis comprises an investigation of the dynamics of airflow in the upper respiratory tract fro...
The dynamics of unsteady flow in the human large airways during a rapid inhalation were investigated...
As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as...
The mechanics of airflow in the large airways during inspiration affects important physiological fun...
Computational Fluid Dynamics (CFD) is fast becoming a useful tool to aid clinicians in pre-surgical ...
AbstractComputational Fluid Dynamics (CFD) is fast becoming a useful tool to aid clinicians in pre-s...
Computational fluid dynamics (CFD) is increasingly used nowadays to capture air and particle transpo...
This Master s thesis extends previous work conducted in the collaboration project called Modelling o...
Computational fluid dynamics (CFD) is increasingly used nowadays to capture air and particle transpo...
As we inhale, the air drawn through our nose undergoes successive accelerations and decelerations as...
Nowadays various studies utilizing computational techniques are trying to contribute to the medical ...
Patient-specific simulation of flows in lungs is now straightforward, by segmenting scans from CT an...
The airflow in a subject-specific breathing human lung is sim-ulated with a multiscale computational...
Knowledge of respiratory flow behaviour is important in many respiratory medical fields. The usefuln...
A patient specific lung flow has been studied using both numerical simulation and experiment. A pati...
This thesis comprises an investigation of the dynamics of airflow in the upper respiratory tract fro...