activity
20162023
most citedContinuous Time Random Walks for the Evolution of Lagrangian Velocities

109 citations · 446 across the 10 of their papers we have counts for

collaborators

10 papers

physics.flu-dyn2023

Dispersion versus diffusion in mixing fronts

Gauthier Rousseau, Satoshi Izumoto, Tanguy Le Borgne +1

Mixing fronts form when fluids with different chemical compositions are brought into contact. They influence a large range of biogeochemical processes in hydrological systems. An i…

physics.flu-dyn2023

Impact of pore-scale chaotic mixing on Darcy-scale reaction rates

Satoshi Izumoto, Gauthier Rousseau, Tanguy Le Borgne +1

Prediction of reactive transport in porous media remains challenging when pore scale incomplete mixing is at play. Previous experimental studies investigated chemical reactions in…

physics.flu-dyn2020

Signature of coalescence during scalar mixing in a Rankine vortex

Sabyasachi Sen, Prajwal, Joris Heyman +2

We analyze the dynamics of solute mixing in a vortex flow. The transport of a passive tracer is considered in a Rankine vortex. The action of a shear flow, in general, is to achiev…

physics.geo-ph201760 cited

Conditioning of stochastic 3-D fracture networks to hydrological and geophysical data

C. Dorn, N. Linde, T. Le Borgne +2

The geometry and connectivity of fractures exert a strong influence on the flow and transport properties of fracture networks. We present a novel approach to stochastically generat…

physics.geo-ph201776 cited

Inferring transport characteristics in a fractured rock aquifer by combining single-hole GPR reflection monitoring and tracer test data

C. Dorn, N. Linde, T. Le Borgne +2

Investigations of solute transport in fractured rock aquifers often rely on tracer test data acquired at a limited number of observation points. Such data do not, by themselves, al…

physics.geo-ph201741 cited

Hydrogeophysical characterization of transport processes in fractured rock by combining push-pull tracer tests and single-hole ground penetrating radar

A. Shakas, N. Linde, L. Baron +4

The in situ characterization of transport processes in fractured media is particularly challenging due to the considerable spatial uncertainty on tracer pathways and dominant contr…