International audienceIn this work, we derive a Darcy-scale model for solute transport in porous media colonized by biofilms. Biofilms refer to structured communities of microbial cells that grow attached to an aqueous interface, e.g., the pore walls of a water-saturated porous medium. First, we present the pore-scale description of mass transport within and between the phases (water phase and biofilm phase) including the biologically-mediated reactions. Then, a two-equation Darcy-scale mass balance model (classically referred to as dual-porosity model), suitable both for local equilibrium and non-equilibrium conditions, is obtained from the method of volume averaging. Application of this macroscopic model to complex pore geometry of a two-...
International audienceIn subsurface systems, biofilm may degrade organic or organometallic pollutant...
In this paper, we derive a pore-scale model for permeable biofilm formation in a two-dimensional por...
International audienceIn this paper, we present a two-dimensional pore-scale numerical model to inve...
International audienceIn this work, we derive a Darcy-scale model for solute transport in porous med...
In this work, we upscale a pore-scale description of mass transport in a porous medium containing bi...
Many microorganisms live within surface-associated consortia, termed biofilms, that can form intrica...
International audienceWe develop a Darcy-scale model for multiphase transport in porous media coloni...
Abstract In this work, a pore-network (PN)model for solute transport and biofilm growth in porous me...
Microbial activity and biofilm growth in porous media can drastically modify transport properties su...
Many microorganisms live within surface-associated consortia, termed biofilms, that can form intrica...
Currently, there are no tractable approaches available for modeling non-equilibrium mass exchange of...
In this paper, we derive upscaled equations for modeling biofilm growth in porous media. The resulti...
AbstractBiofilms are very important in controlling pollution in aquifers. The bacteria may either co...
International audienceWe present a modeling exercise of solute transport and biodegradation in a coa...
As biofilms intervene in a porous medium, they affect the porosity and permeability, which in turn a...
International audienceIn subsurface systems, biofilm may degrade organic or organometallic pollutant...
In this paper, we derive a pore-scale model for permeable biofilm formation in a two-dimensional por...
International audienceIn this paper, we present a two-dimensional pore-scale numerical model to inve...
International audienceIn this work, we derive a Darcy-scale model for solute transport in porous med...
In this work, we upscale a pore-scale description of mass transport in a porous medium containing bi...
Many microorganisms live within surface-associated consortia, termed biofilms, that can form intrica...
International audienceWe develop a Darcy-scale model for multiphase transport in porous media coloni...
Abstract In this work, a pore-network (PN)model for solute transport and biofilm growth in porous me...
Microbial activity and biofilm growth in porous media can drastically modify transport properties su...
Many microorganisms live within surface-associated consortia, termed biofilms, that can form intrica...
Currently, there are no tractable approaches available for modeling non-equilibrium mass exchange of...
In this paper, we derive upscaled equations for modeling biofilm growth in porous media. The resulti...
AbstractBiofilms are very important in controlling pollution in aquifers. The bacteria may either co...
International audienceWe present a modeling exercise of solute transport and biodegradation in a coa...
As biofilms intervene in a porous medium, they affect the porosity and permeability, which in turn a...
International audienceIn subsurface systems, biofilm may degrade organic or organometallic pollutant...
In this paper, we derive a pore-scale model for permeable biofilm formation in a two-dimensional por...
International audienceIn this paper, we present a two-dimensional pore-scale numerical model to inve...