Mixing fronts at the interface of opposing flows are compressed at a constant rate. The resulting exponential stretching of fluid elements leads to enhanced chemical gradients and biogeochemical processes. This process is similar as what occurs in the pore space of 3D chaotic flows. However, it is so far not known how such fluid compression controls the amplitude of mixing and reaction rates in porous media. Here we derive analytical predictions for the mixing width, the maximum reaction rate and the reaction intensity in compressed mixing fronts as a function of the Péclet and Damköhler numbers. We developed an experimental setup providing pore scale measurements of mixing and reaction rates in mixing fronts at the interface of converging ...
International audiencePorous media in which different fluid phases coexist are common in nature (e.g...
International audiencePorous media in which different fluid phases coexist are common in nature (e.g...
International audienceEffective reaction rates in porous media are controlled by the spatial organiz...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...
International audienceWe propose a new experimental set up to characterize mixing and reactive trans...
International audienceWe propose a new experimental set up to characterize mixing and reactive trans...
We study mixing-controlled chemical reactions in unsaturated porous media from a pore-scale perspect...
We propose a new experimental set up to characterize mixing and reactive transport in porous media w...
International audienceMixing of dissolved chemical species in porous media plays a central role in m...
International audienceMixing of dissolved chemical species in porous media plays a central role in m...
Under steady flow conditions, the topological complexity inherent to all random three-dimensional (3...
International audienceReactive mixing processes play a central role in a range of porous media syste...
International audienceReactive mixing processes play a central role in a range of porous media syste...
International audienceReactive mixing processes play a central role in a range of porous media syste...
International audiencePorous media in which different fluid phases coexist are common in nature (e.g...
International audiencePorous media in which different fluid phases coexist are common in nature (e.g...
International audienceEffective reaction rates in porous media are controlled by the spatial organiz...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...
International audienceWe propose a new experimental set up to characterize mixing and reactive trans...
International audienceWe propose a new experimental set up to characterize mixing and reactive trans...
We study mixing-controlled chemical reactions in unsaturated porous media from a pore-scale perspect...
We propose a new experimental set up to characterize mixing and reactive transport in porous media w...
International audienceMixing of dissolved chemical species in porous media plays a central role in m...
International audienceMixing of dissolved chemical species in porous media plays a central role in m...
Under steady flow conditions, the topological complexity inherent to all random three-dimensional (3...
International audienceReactive mixing processes play a central role in a range of porous media syste...
International audienceReactive mixing processes play a central role in a range of porous media syste...
International audienceReactive mixing processes play a central role in a range of porous media syste...
International audiencePorous media in which different fluid phases coexist are common in nature (e.g...
International audiencePorous media in which different fluid phases coexist are common in nature (e.g...
International audienceEffective reaction rates in porous media are controlled by the spatial organiz...