International audienceMixing fronts, where fluids of different chemical compositions mix with each other, are known to represent hotspots of chemical reaction in hydrological systems. These fronts are typically subjected to velocity gradients, ranging from the pore scale due to no slip boundary conditions at fluid solid interfaces, to the catchment scale due to permeability variations and complex geometry of the Darcy velocity streamlines. A common trait of these processes is that the mixing interface is strained by shear. Depending on the Péclet number Pe , which represents the ratio of the characteristic diffusion time to the characteristic shear time, and the Damköhler number Da , which represents the ratio of the characteristic diffusio...
We investigate the impact of pore‐scale heterogeneity on reactive mixing using experimental data fro...
International audienceTopography-driven subsurface flows are thought to play a central role...
Expanding interest in enhanced subsurface natural resource recovery and carbon sequestration motivat...
International audienceMixing fronts, where fluids of different chemical compositions mix with each o...
International audienceReaction fronts where two reactive fluids displace one another play an importa...
International audienceMixing fronts between two reactive species subjected to velocity fields is con...
We consider the fast irreversible bimolecular chemical reaction urn:x-wiley:wrcr:media:wrcr23748:wr...
International audienceThe mixing dynamics resulting from the combined action of diffusion, dispersio...
International audienceFast chemical reactions in geophysical flows are controlled by fluid mixing, w...
International audienceUnderstanding reactive transport of solutes in porous media underlies problems...
International audienceReactive mixing processes play a central role in a range of porous media syste...
We study the reactive displacement of two miscible fluids in channel flows and establish a quantitat...
Mixing fronts at the interface of opposing flows are compressed at a constant rate. The resulting ex...
International audienceWe analyze the dynamics of solute mixing and reaction in a mixing-limited reac...
We study mixing-controlled chemical reactions in unsaturated porous media from a pore-scale perspect...
We investigate the impact of pore‐scale heterogeneity on reactive mixing using experimental data fro...
International audienceTopography-driven subsurface flows are thought to play a central role...
Expanding interest in enhanced subsurface natural resource recovery and carbon sequestration motivat...
International audienceMixing fronts, where fluids of different chemical compositions mix with each o...
International audienceReaction fronts where two reactive fluids displace one another play an importa...
International audienceMixing fronts between two reactive species subjected to velocity fields is con...
We consider the fast irreversible bimolecular chemical reaction urn:x-wiley:wrcr:media:wrcr23748:wr...
International audienceThe mixing dynamics resulting from the combined action of diffusion, dispersio...
International audienceFast chemical reactions in geophysical flows are controlled by fluid mixing, w...
International audienceUnderstanding reactive transport of solutes in porous media underlies problems...
International audienceReactive mixing processes play a central role in a range of porous media syste...
We study the reactive displacement of two miscible fluids in channel flows and establish a quantitat...
Mixing fronts at the interface of opposing flows are compressed at a constant rate. The resulting ex...
International audienceWe analyze the dynamics of solute mixing and reaction in a mixing-limited reac...
We study mixing-controlled chemical reactions in unsaturated porous media from a pore-scale perspect...
We investigate the impact of pore‐scale heterogeneity on reactive mixing using experimental data fro...
International audienceTopography-driven subsurface flows are thought to play a central role...
Expanding interest in enhanced subsurface natural resource recovery and carbon sequestration motivat...