In this paper, we derive a pore-scale model for permeable biofilm formation in a two-dimensional pore. The pore is divided into two phases: water and biofilm. The biofilm is assumed to consist of four components: water, extracellular polymeric substance (EPS), active bacteria, and dead bacteria. The flow of water is modeled by the Stokes equation, whereas a diffusion–convection equation is involved for the transport of nutrients. At the biofilm–water interface, nutrient transport and shear forces due to the water flux are considered. In the biofilm, the Brinkman equation for the water flow, transport of nutrients due to diffusion and convection, displacement of the biofilm components due to reproduction/death of bacteria, and production of ...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and the...
When bacteria attach to a surface and start growing into assemblies, they excrete a slimy layer know...
The focus of this paper is the derivation of an effctive model for biofilm growth in a porous medium...
In this paper, we derive a pore-scale model for permeable biofilm formation in a two-dimensional por...
In this paper, we derive upscaled equations for modeling biofilm growth in porous media. The resulti...
Simulations of coupled flow around and inside biofilms in pores were conducted to study the effect o...
Simulations of coupled flow around and inside biofilms in pores were conducted to study the effect o...
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...
<div><p>A two-dimensional pore-scale numerical model was developed to evaluate the dynamics of prefe...
International audienceIn this paper, we present a two-dimensional pore-scale numerical model to inve...
Biofilm growth in subsurface porous media, and its treatment with biocides (antimicrobial agents), i...
This dissertation addresses the applications and challenges of both laboratory experiments and mathe...
This thesis relates to the mathematical modelling of biofilm in two primary areas: biofilm growth, a...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and th...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and the...
When bacteria attach to a surface and start growing into assemblies, they excrete a slimy layer know...
The focus of this paper is the derivation of an effctive model for biofilm growth in a porous medium...
In this paper, we derive a pore-scale model for permeable biofilm formation in a two-dimensional por...
In this paper, we derive upscaled equations for modeling biofilm growth in porous media. The resulti...
Simulations of coupled flow around and inside biofilms in pores were conducted to study the effect o...
Simulations of coupled flow around and inside biofilms in pores were conducted to study the effect o...
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...
<div><p>A two-dimensional pore-scale numerical model was developed to evaluate the dynamics of prefe...
International audienceIn this paper, we present a two-dimensional pore-scale numerical model to inve...
Biofilm growth in subsurface porous media, and its treatment with biocides (antimicrobial agents), i...
This dissertation addresses the applications and challenges of both laboratory experiments and mathe...
This thesis relates to the mathematical modelling of biofilm in two primary areas: biofilm growth, a...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and th...
A computer-aided simulator has been developed for the prediction of the pattern of evolution and the...
When bacteria attach to a surface and start growing into assemblies, they excrete a slimy layer know...
The focus of this paper is the derivation of an effctive model for biofilm growth in a porous medium...