We report a numerical investigation of the deposition and re-entrainment of Brownian particles from a permeable plane wall. The tangential flow was turbulent. The suspension dynamics were obtained through direct numerical simulation of the Navier–Stokes equations coupled to the Lagrangian tracking of individual particles. Physical phenomena acting on the particles such as flow transport, adhesion, detachment and re-entrainment were considered. Brownian diffusion was accounted for in the trajectory computations by a stochastic model specifically adapted for use in the vicinity of the wall. Interactions between the particles and the wall such as adhesion forces and detachment were modeled. Validations of analytical solutions for simplified ca...
Particle dispersion and deposition in the region near the wall of a turbulent open channel is studie...
The objective of this chapter is twofold. First, it provides a general overview of the Eulerian-Lagr...
The objective of this study is to simulate the transport and deposition of colloidal particles at th...
Modelling of mass transfer of particles to solid surfaces is a considerable challenge in most indust...
International audienceThe deposition of non-Brownian particles from turbulent liquid-flow onto chann...
Based on direct numerical simulations of the coupled motion of particles and fluid, this study analy...
This paper deals with particle deposition onto solid walls from turbulent flows. The aim of the stud...
Particle deposition in turbulent flows is a phenomenon which can lead to fouling and affect normal o...
Previous research on particle deposition in channels has emphasized the mass transfer aspects of the...
In this work several geometries, each representing a different porous medium, are considered to perf...
The work carried out in this Ph.D thesis concerns the development, implementation and test of new mo...
The distribution of inertial particles in turbulent flows is highly non-uniform and is driven by the...
In this paper, the reentrainment of nanosized and microsized particles from rough walls under variou...
Summarization: A model for the resuspension of a multilayer deposit by turbulent flow is developed. ...
Crossflow microfiltration is a technique to separate suspended particles (or cells or droplets) from...
Particle dispersion and deposition in the region near the wall of a turbulent open channel is studie...
The objective of this chapter is twofold. First, it provides a general overview of the Eulerian-Lagr...
The objective of this study is to simulate the transport and deposition of colloidal particles at th...
Modelling of mass transfer of particles to solid surfaces is a considerable challenge in most indust...
International audienceThe deposition of non-Brownian particles from turbulent liquid-flow onto chann...
Based on direct numerical simulations of the coupled motion of particles and fluid, this study analy...
This paper deals with particle deposition onto solid walls from turbulent flows. The aim of the stud...
Particle deposition in turbulent flows is a phenomenon which can lead to fouling and affect normal o...
Previous research on particle deposition in channels has emphasized the mass transfer aspects of the...
In this work several geometries, each representing a different porous medium, are considered to perf...
The work carried out in this Ph.D thesis concerns the development, implementation and test of new mo...
The distribution of inertial particles in turbulent flows is highly non-uniform and is driven by the...
In this paper, the reentrainment of nanosized and microsized particles from rough walls under variou...
Summarization: A model for the resuspension of a multilayer deposit by turbulent flow is developed. ...
Crossflow microfiltration is a technique to separate suspended particles (or cells or droplets) from...
Particle dispersion and deposition in the region near the wall of a turbulent open channel is studie...
The objective of this chapter is twofold. First, it provides a general overview of the Eulerian-Lagr...
The objective of this study is to simulate the transport and deposition of colloidal particles at th...