In this paper, we propose a coupled fluid-kinetic model taking into account the radius growth of aerosol particles due to humidity in the respiratory system. We aim to numerically investigate the impact of hygroscopic effects on the particle behaviour. The air flow is described by the incompressible Navier-Stokes equations, and the aerosol by a Vlasov-type equation involving the air humidity and temperature, both quantities satisfying a convection-diffusion equation with a source term. Conservations properties are checked and an explicit time-marching scheme is proposed. Twodimensional numerical simulations in a branched structure show the influence of the particle size variations on the aerosol dynamics
Knowledge of particle deposition is important in clinical settings or when discussing environmental ...
A model for the motion of aerosol particles by Stefan flow, thermo-diffusiophoresis and gravity in a...
Aerosol and pollutants, in form of particulates 5–8 μm in main size face every day our respiratory s...
In this paper, we propose a coupled fluid-kinetic model taking into account the radius growth of aer...
In this paper, we propose a coupled fluid-kinetic model taking into account the radius growth of aer...
We consider fluid-kinetic models that describe the evolution of particles flowing through a fluid un...
Nous nous intéressons à des modèles fluide-cinétique décrivant l’évolution de particules en suspensi...
Accurate predictions of aerosol transport, evolution, and deposition in the human airways are crucia...
The ambient conditions surrounding liquid droplets determine their growth or shrinkage. However, the...
Many aerosols present in nature (e.g., atmosphere) or artificially generated for various purposes (e...
The site of deposition of pulmonary delivered aerosols is dependent on the aerosol[U+05F3]s droplet ...
AbstractThe site of deposition of pulmonary delivered aerosols is dependent on the aerosol׳s droplet...
This thesis is devoted to the modelling and mathematical analysis of some aspects of suspension flow...
This article proposes a derivation of the Vlasov-Navier-Stokes system for spray/aerosol flows. The d...
AbstractThe size of aerosol particles prior to, and during, inhalation influences the site of deposi...
Knowledge of particle deposition is important in clinical settings or when discussing environmental ...
A model for the motion of aerosol particles by Stefan flow, thermo-diffusiophoresis and gravity in a...
Aerosol and pollutants, in form of particulates 5–8 μm in main size face every day our respiratory s...
In this paper, we propose a coupled fluid-kinetic model taking into account the radius growth of aer...
In this paper, we propose a coupled fluid-kinetic model taking into account the radius growth of aer...
We consider fluid-kinetic models that describe the evolution of particles flowing through a fluid un...
Nous nous intéressons à des modèles fluide-cinétique décrivant l’évolution de particules en suspensi...
Accurate predictions of aerosol transport, evolution, and deposition in the human airways are crucia...
The ambient conditions surrounding liquid droplets determine their growth or shrinkage. However, the...
Many aerosols present in nature (e.g., atmosphere) or artificially generated for various purposes (e...
The site of deposition of pulmonary delivered aerosols is dependent on the aerosol[U+05F3]s droplet ...
AbstractThe site of deposition of pulmonary delivered aerosols is dependent on the aerosol׳s droplet...
This thesis is devoted to the modelling and mathematical analysis of some aspects of suspension flow...
This article proposes a derivation of the Vlasov-Navier-Stokes system for spray/aerosol flows. The d...
AbstractThe size of aerosol particles prior to, and during, inhalation influences the site of deposi...
Knowledge of particle deposition is important in clinical settings or when discussing environmental ...
A model for the motion of aerosol particles by Stefan flow, thermo-diffusiophoresis and gravity in a...
Aerosol and pollutants, in form of particulates 5–8 μm in main size face every day our respiratory s...