Understanding the changes in multiphase flow parameters caused by mineral dissolution-precipitation is required for multiple applications ranging from geological storage of CO2, enhanced geothermal energy production or ground water pollution. We present a physically-based theoretical model for describing the temporal evolution of porosity, saturated and relative permeabilities, retention curve and diffusion coefficient during rock dissolution by reactive fluids. The derivation of the model is based on the assumption that the pore structure of the rock can be represented by an ensemble of capillary tubes with fractal tortuosity and cumulative pore size distribution. Therefore, the model depends only on the minimum and maximum pore radii, the...
International audienceNumerical programs for simulating flow and reactive transport in porous media ...
[1] We apply the lattice-Boltzmann method to simulate fluid flow and dissolution and precipitation i...
International audienceA micro-continuum approach is proposed to simulate the dissolution of solid mi...
Understanding the changes in multiphase flow parameters caused by mineral dissolution-precipitation ...
A distributed parameter model has been developed to describe flow and dissolution of different miner...
In this talk we propose a pore scale model for precipitation and dissolution in porous media. We as...
The interactions between minerals and reactive fluids have great impact on the pore structure and hy...
We use a two-scale continuum model to simulate reactive flow and wormhole formation in carbonate roc...
International audienceChanges of porosity, permeability, and tortuosity due to physical and geochemi...
Reactive transport is of great importance in chemical science, hydrogeological and environmental app...
We derive exact solution for mineral-dissolution reactive flows in porous media with porosity variat...
International audiencePrecipitation and dissolution are prime processes in carbonate rocks and being...
International audienceIn this paper we solve the Navier Stokes’ equation using finite difference met...
Multiphase displacement in tight sandstone is fundamental and critical for tight oil production. Mic...
Geological storage of CO2 gas is perceived as a potential solution against global warming. Injection...
International audienceNumerical programs for simulating flow and reactive transport in porous media ...
[1] We apply the lattice-Boltzmann method to simulate fluid flow and dissolution and precipitation i...
International audienceA micro-continuum approach is proposed to simulate the dissolution of solid mi...
Understanding the changes in multiphase flow parameters caused by mineral dissolution-precipitation ...
A distributed parameter model has been developed to describe flow and dissolution of different miner...
In this talk we propose a pore scale model for precipitation and dissolution in porous media. We as...
The interactions between minerals and reactive fluids have great impact on the pore structure and hy...
We use a two-scale continuum model to simulate reactive flow and wormhole formation in carbonate roc...
International audienceChanges of porosity, permeability, and tortuosity due to physical and geochemi...
Reactive transport is of great importance in chemical science, hydrogeological and environmental app...
We derive exact solution for mineral-dissolution reactive flows in porous media with porosity variat...
International audiencePrecipitation and dissolution are prime processes in carbonate rocks and being...
International audienceIn this paper we solve the Navier Stokes’ equation using finite difference met...
Multiphase displacement in tight sandstone is fundamental and critical for tight oil production. Mic...
Geological storage of CO2 gas is perceived as a potential solution against global warming. Injection...
International audienceNumerical programs for simulating flow and reactive transport in porous media ...
[1] We apply the lattice-Boltzmann method to simulate fluid flow and dissolution and precipitation i...
International audienceA micro-continuum approach is proposed to simulate the dissolution of solid mi...