HR: 1340h
AN: H23G-1716 [Abstracts]
TI: Quantifying the impact of the velocity field organization on the solute transport properties
AU: * Le Borgne, t
EM: tanguy.le-borgne@univ-rennes1.fr
AF: Geosciences Rennes UMR 6118, Campus de Beaulieu, Rennes, 35042, France
AU: Dentz, M
EM: marco.dentz@gmail.com
AF: Technical University of Catalonia (UPC), Modulo D-1, Campus Nord (UPC), Barcelona, 08034, Spain
AU: Carrera, J
EM: jcarrera@ija.csic.es
AF: Technical University of Catalonia (UPC), Modulo D-1, Campus Nord (UPC), Barcelona, 08034, Spain
AU: De Dreuzy, J
EM: jean-raynald.de-dreuzy@univ-rennes1.fr
AF: Geosciences Rennes UMR 6118, Campus de Beaulieu, Rennes, 35042, France
AU: Davy, P
EM: philippe.davy@univ-rennes1.fr
AF: Geosciences Rennes UMR 6118, Campus de Beaulieu, Rennes, 35042, France
AB:
We propose a framework to quantify the velocity field organization in heterogeneous media for modelling solute
transport. The Lagrangian velocity correlation properties are analyzed from numerical simulation of transport in
heterogeneous permeability fields. The two-point Lagrangian correlation function is shown to be insufficient in
general to quantify the velocity field spatial organization. An alternative method is proposed based on the
Lagrangian velocity correlation properties conditioned on the solute particle initial velocity. It allows capturing the
effect of the different spatial organization of high and low velocity zones. For the permeability fields studied, we
find that low velocity zones are associated with larger Lagrangian correlation times than high velocity zones. We
define a random walk model that can simulate solute transport with velocity dependent correlation and discuss
its properties and applicability.
DE: 1832 Groundwater transport
DE: 1847 Modeling
DE: 1869 Stochastic hydrology
SC: Hydrology [H]
MN: 2007 Fall Meeting