The macroscopic spreading and mixing of solute plumes in saturated porous media is ultimately controlled by processes operating at the pore scale. Whilst the conventional picture of pore-scale mechanical dispersion and molecular diffusion leading to persistent hydrodynamic dispersion is well accepted, this paradigm is inherently two-dimensional (2D) in nature and neglects important three-dimensional (3D) phenomena. We discuss how the kinematics of steady 3D flow at the pore scale generate chaotic advection-involving exponential stretching and folding of fluid elements-the mechanisms by which it arises and implications of microscopic chaos for macroscopic dispersion and mixing. Prohibited in steady 2D flow due to topological constraints, the...
International audienceFluid stretching and deformation as quantified by the fluid deformation gradie...
International audienceFluid stretching and deformation as quantified by the fluid deformation gradie...
While mixing and particle transport in 2D incompressible flows are well-understood, much less is kno...
International audienceUnder steady flow conditions, the topological complexity inherent to all rando...
International audienceUnder steady flow conditions, the topological complexity inherent to all rando...
Under steady flow conditions, the topological complexity inherent to all random three-dimensional (3...
The topological complexity inherent to all porous media can impart complicated transport dynamics un...
We show that chaotic advection is inherent to flow through all types of porous media, from granular ...
We show that chaotic advection is inherent to flow through all types of porous media, from granular ...
The topological complexity inherent to all porous media imparts persistent chaotic advection under s...
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...
International audienceRecent studies have shown that chaotic advection is spontaneously produced by ...
International audienceRecent studies have shown that chaotic advection is spontaneously produced by ...
International audienceSteady laminar flows through porous media spontaneously generate Lagrangian ch...
International audienceFluid stretching and deformation as quantified by the fluid deformation gradie...
International audienceFluid stretching and deformation as quantified by the fluid deformation gradie...
While mixing and particle transport in 2D incompressible flows are well-understood, much less is kno...
International audienceUnder steady flow conditions, the topological complexity inherent to all rando...
International audienceUnder steady flow conditions, the topological complexity inherent to all rando...
Under steady flow conditions, the topological complexity inherent to all random three-dimensional (3...
The topological complexity inherent to all porous media can impart complicated transport dynamics un...
We show that chaotic advection is inherent to flow through all types of porous media, from granular ...
We show that chaotic advection is inherent to flow through all types of porous media, from granular ...
The topological complexity inherent to all porous media imparts persistent chaotic advection under s...
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...
International audienceRecent studies have shown that chaotic advection is spontaneously produced by ...
International audienceRecent studies have shown that chaotic advection is spontaneously produced by ...
International audienceSteady laminar flows through porous media spontaneously generate Lagrangian ch...
International audienceFluid stretching and deformation as quantified by the fluid deformation gradie...
International audienceFluid stretching and deformation as quantified by the fluid deformation gradie...
While mixing and particle transport in 2D incompressible flows are well-understood, much less is kno...