Upscaling dispersion, mixing, and reaction processes from the pore to the Darcy scale is directly related to the understanding of the dynamics of pore-scale particle velocities, which are at the origin of hydrodynamic dispersion and non-Fickian transport behaviors. With the aim of deriving a framework for the systematic upscaling of these processes from the pore to the Darcy scale, we present a detailed analysis of the evolution of Lagrangian and Eulerian statistics and their dependence on the injection condition. The study is based on velocity data obtained from computational fluid dynamics simulations of Stokes flow and advective particle tracking in the three-dimensional pore structure obtained from high-resolution X-ray microtomography ...
We study the upscaling and prediction of ensemble dispersion in two-dimensional heterogeneous porous...
We study the upscaling and prediction of ensemble dispersion in two-dimensional heterogeneous porous...
We study the upscaling and prediction of large-scale solute dispersion in heterogeneous porous media...
International audienceUpscaling dispersion, mixing, and reaction processes from the pore to the Darc...
International audienceUpscaling dispersion, mixing, and reaction processes from the pore to the Darc...
The understanding of the dynamics of Lagrangian velocities is key for the understanding and upscalin...
The understanding of the dynamics of Lagrangian velocities is key for the understanding and upscalin...
We study the upscaling of advective pore-scale dispersion in terms of the Eulerian velocity distribu...
International audienceWe study the upscaling of advective pore-scale dispersion in terms of the Eule...
The mechanisms responsible for anomalous (non-Fickian) hydrodynamictransport can be traced back to t...
The mechanisms responsible for anomalous (non-Fickian) hydrodynamictransport can be traced back to t...
The mechanisms responsible for anomalous (non-Fickian) hydrodynamictransport can be traced back to t...
We study the evolution of velocity in time, which fundamentally controls the way dissolved substance...
We study the evolution of velocity in time, which fundamentally controls the way dissolved substance...
We study the upscaling and prediction of ensemble dispersion in two-dimensional heterogeneous porous...
We study the upscaling and prediction of ensemble dispersion in two-dimensional heterogeneous porous...
We study the upscaling and prediction of ensemble dispersion in two-dimensional heterogeneous porous...
We study the upscaling and prediction of large-scale solute dispersion in heterogeneous porous media...
International audienceUpscaling dispersion, mixing, and reaction processes from the pore to the Darc...
International audienceUpscaling dispersion, mixing, and reaction processes from the pore to the Darc...
The understanding of the dynamics of Lagrangian velocities is key for the understanding and upscalin...
The understanding of the dynamics of Lagrangian velocities is key for the understanding and upscalin...
We study the upscaling of advective pore-scale dispersion in terms of the Eulerian velocity distribu...
International audienceWe study the upscaling of advective pore-scale dispersion in terms of the Eule...
The mechanisms responsible for anomalous (non-Fickian) hydrodynamictransport can be traced back to t...
The mechanisms responsible for anomalous (non-Fickian) hydrodynamictransport can be traced back to t...
The mechanisms responsible for anomalous (non-Fickian) hydrodynamictransport can be traced back to t...
We study the evolution of velocity in time, which fundamentally controls the way dissolved substance...
We study the evolution of velocity in time, which fundamentally controls the way dissolved substance...
We study the upscaling and prediction of ensemble dispersion in two-dimensional heterogeneous porous...
We study the upscaling and prediction of ensemble dispersion in two-dimensional heterogeneous porous...
We study the upscaling and prediction of ensemble dispersion in two-dimensional heterogeneous porous...
We study the upscaling and prediction of large-scale solute dispersion in heterogeneous porous media...