International audienceIn this paper, we present a two-dimensional pore-scale numerical model to investigate the main mechanisms governing biofilm growth in porous media. The fluid flow and solute transport equations are coupled with a biofilm evolution model. Fluid flow is simulated with an immersed boundary-lattice Boltz-mann model while solute transport is described with a volume-of-fluid-type approach. A cellular automaton algorithm combined with immersed boundary methods was developed to describe the spreading and distribution of biomass. Bacterial attachment and detachment mechanisms are also taken into account. The capability of this model to describe correctly the couplings involved between fluid circulation, nutrient transport and b...
International audienceIn this work, we derive a Darcy-scale model for solute transport in porous med...
The focus of this paper is the derivation of an effctive model for biofilm growth in a porous medium...
The formation and development of different biofilm structures is known to be influenced by nutrient...
AbstractBiofilms are very important in controlling pollution in aquifers. The bacteria may either co...
As biofilms intervene in a porous medium, they affect the porosity and permeability, which in turn a...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and th...
In this paper, we derive a pore-scale model for permeable biofilm formation in a two-dimensional por...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and the...
In this paper, we derive upscaled equations for modeling biofilm growth in porous media. The resulti...
Biofilms are a complex and heterogeneous aggregation of multiple populations of microorganisms linke...
This study examined the impact of systematically increasing roughness in a single fracture and the e...
<div><p>A two-dimensional pore-scale numerical model was developed to evaluate the dynamics of prefe...
Abstract In this work, a pore-network (PN)model for solute transport and biofilm growth in porous me...
International audienceIn this paper, we introduce a pore-scale model to study the interaction betwee...
Recently, we developed the first hierarchical, hybrid simulator for the prediction of the pattern o...
International audienceIn this work, we derive a Darcy-scale model for solute transport in porous med...
The focus of this paper is the derivation of an effctive model for biofilm growth in a porous medium...
The formation and development of different biofilm structures is known to be influenced by nutrient...
AbstractBiofilms are very important in controlling pollution in aquifers. The bacteria may either co...
As biofilms intervene in a porous medium, they affect the porosity and permeability, which in turn a...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and th...
In this paper, we derive a pore-scale model for permeable biofilm formation in a two-dimensional por...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and the...
In this paper, we derive upscaled equations for modeling biofilm growth in porous media. The resulti...
Biofilms are a complex and heterogeneous aggregation of multiple populations of microorganisms linke...
This study examined the impact of systematically increasing roughness in a single fracture and the e...
<div><p>A two-dimensional pore-scale numerical model was developed to evaluate the dynamics of prefe...
Abstract In this work, a pore-network (PN)model for solute transport and biofilm growth in porous me...
International audienceIn this paper, we introduce a pore-scale model to study the interaction betwee...
Recently, we developed the first hierarchical, hybrid simulator for the prediction of the pattern o...
International audienceIn this work, we derive a Darcy-scale model for solute transport in porous med...
The focus of this paper is the derivation of an effctive model for biofilm growth in a porous medium...
The formation and development of different biofilm structures is known to be influenced by nutrient...