International audienceReplacement reactions during fluid infiltration into porous media, rocks and buildings are known to have important implications for reservoir development, ore formation as well as weathering. Natural observations and experiments have shown that in such systems the shape of reaction fronts can vary significantly ranging from smooth, rough to highly irregular. It remains unclear what process-related knowledge can be derived from these reaction front patterns. In this contribution we show a numerical approach to test the effect of relative rates of advection, diffusion and reaction on the development of reaction fronts patterns in granular aggregates with permeable grain boundaries. The numerical model takes (i) fluid inf...
Reactive transport models that describe mineral reactions in porous media rely on laboratory measur...
For fluid-solid reactions a random pore model is developed which accounts for arbitrary pore-size di...
International audienceThe mixing dynamics resulting from the combined action of diffusion, dispersio...
Replacement reactions during fluid infiltration into porous media, rocks and buildings are known to ...
While flowing through porous medium, ground water flow dissolves minerals thereby in creasing medium...
We perform direct numerical simulation using a pore-scale fluid–fluid reactive transport model (Alha...
A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous rea...
A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous reac...
By considering reaction and diffusion through a product layer and concomitant movement of pore and r...
The roughness of solid surfaces influences mineral dissolution rates by affecting flow and transport...
International audienceDisposal in geological clay formations is one of the solutions envisaged for m...
Mineral precipitation affects the pore structure and thus transport properties of porous media. In t...
[1] This study examined the effects of variations in mineral spatial distributions on reaction rates...
The evolution of porous media due to mineral dissolution and precipitation can change the bulk prope...
Precipitation and growth of solid phases during a reactive fluid flow and solute transport are criti...
Reactive transport models that describe mineral reactions in porous media rely on laboratory measur...
For fluid-solid reactions a random pore model is developed which accounts for arbitrary pore-size di...
International audienceThe mixing dynamics resulting from the combined action of diffusion, dispersio...
Replacement reactions during fluid infiltration into porous media, rocks and buildings are known to ...
While flowing through porous medium, ground water flow dissolves minerals thereby in creasing medium...
We perform direct numerical simulation using a pore-scale fluid–fluid reactive transport model (Alha...
A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous rea...
A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous reac...
By considering reaction and diffusion through a product layer and concomitant movement of pore and r...
The roughness of solid surfaces influences mineral dissolution rates by affecting flow and transport...
International audienceDisposal in geological clay formations is one of the solutions envisaged for m...
Mineral precipitation affects the pore structure and thus transport properties of porous media. In t...
[1] This study examined the effects of variations in mineral spatial distributions on reaction rates...
The evolution of porous media due to mineral dissolution and precipitation can change the bulk prope...
Precipitation and growth of solid phases during a reactive fluid flow and solute transport are criti...
Reactive transport models that describe mineral reactions in porous media rely on laboratory measur...
For fluid-solid reactions a random pore model is developed which accounts for arbitrary pore-size di...
International audienceThe mixing dynamics resulting from the combined action of diffusion, dispersio...