This paper describes the application of a single relaxation time (SRT) lattice Boltzmann scheme to the transport in porous media with large spatial variations of diffusion coefficients. Effective diffusion coefficients can vary substantially within porous media because of their dependence on porosity and tortuosity which can span over several orders of magnitude, depending on pore size and connectivity. Moreover, when mass is transported with pore-water in porous media, the hydrodynamic dispersion, which depends on Darcy's velocity, contributes additionally to the usually anisotropic variation of the dissipative term. In contrast to the traditional treatment of spatially variable diffusion coefficient by the variation of a SRT, here the var...
Transport processes in porous media have been traditionally studied through the parameterization of ...
In this paper, to predict the dynamics behaviors of flow and mass transfer with adsorption phenomena...
In this paper, to predict the dynamics behaviors of flow and mass transfer with adsorption phenomena...
International audienceNumerical models that solve transport of pollutants at the macroscopic scale i...
International audienceNumerical models that solve transport of pollutants at the macroscopic scale i...
We use Lattice Boltzmann models to simulate solute transport in porous media traversed by open fract...
The effect of flow regime and fluid morphology (distribution and spatial arrangement) on macroscopic...
In this paper, we numerically study the influence of pore structures on diffusion processes in porou...
Characterization of different transport phenomena through porous media represents a key factor to im...
This paper presents a lattice Boltzmann method for the advection and dispersion of solute in three-d...
International audienceIn order to research macroscopic mass transport characteristics of porous medi...
Transport processes in porous media have been traditionally studied through the parameterization of ...
The effect of drainage front morphology on gaseous diffusion through partially saturated porous medi...
In this paper, we present a framework for the modeling and simulation of a subset of physical/chemic...
In recent years, the Lattice Boltzmann (LB) method has become a powerful numerical tool for simulat...
Transport processes in porous media have been traditionally studied through the parameterization of ...
In this paper, to predict the dynamics behaviors of flow and mass transfer with adsorption phenomena...
In this paper, to predict the dynamics behaviors of flow and mass transfer with adsorption phenomena...
International audienceNumerical models that solve transport of pollutants at the macroscopic scale i...
International audienceNumerical models that solve transport of pollutants at the macroscopic scale i...
We use Lattice Boltzmann models to simulate solute transport in porous media traversed by open fract...
The effect of flow regime and fluid morphology (distribution and spatial arrangement) on macroscopic...
In this paper, we numerically study the influence of pore structures on diffusion processes in porou...
Characterization of different transport phenomena through porous media represents a key factor to im...
This paper presents a lattice Boltzmann method for the advection and dispersion of solute in three-d...
International audienceIn order to research macroscopic mass transport characteristics of porous medi...
Transport processes in porous media have been traditionally studied through the parameterization of ...
The effect of drainage front morphology on gaseous diffusion through partially saturated porous medi...
In this paper, we present a framework for the modeling and simulation of a subset of physical/chemic...
In recent years, the Lattice Boltzmann (LB) method has become a powerful numerical tool for simulat...
Transport processes in porous media have been traditionally studied through the parameterization of ...
In this paper, to predict the dynamics behaviors of flow and mass transfer with adsorption phenomena...
In this paper, to predict the dynamics behaviors of flow and mass transfer with adsorption phenomena...