HR: 1340h
AN: H23G-1708 [Abstracts]
TI: Three-dimensional discrete fracture network simulations of flow and particle transport based on the Laxemar site data (Sweden).
AU: * Frampton, A
EM: frampton@kth.se
AF: Royal Institute of Technology (KTH), Dept of Water Resources Engineering, Brinellv 32,
Stockholm, SE-10044, Sweden
AB:
We study particle transport in a 3D DFN scenario based on the Laxemar site characterisation data in Sweden,
which is a candidate repository site for high level radioactive waste in the Swedish nuclear waste management
program. The site characterisation data has revealed several interesting geometric and hydraulic fracture
properties, such as power-law distributed fracture sizes and transmissivities.
Our study involves investigating the relationship between the resulting Eulerian flow field at a segment (sub-
fracture) scale with Lagrangian trajectories at the characteristic (model domain) transport scale. We present
results from a new technique for upscaling particle transitions obtained from Eulerian flow statistics to
predictions of tracer discharge at the characteristic transport scale, based on previously developed methods
used for 2D DFN's. This includes a mapping algorithm for transforming Eulerian into Lagrangian flow statistics
without a priori knowledge of network connectivity, and by retaining the correlation between the water residence
time τ and the hydrodynamic control of retention β we present accurate tracer discharge predictions.
These results are illustrated using the unlimited diffusion model, and for some hypothetical tracers with
properties designed to capture the behaviour of many common radionuclides. Finally we emphasise the
importance of capturing the early arrival and peak of tracer breakthrough curves, i.e. to capture the bulk of the
tracer mass arrival, in order to make accurate and conservative predictions.
DE: 1829 Groundwater hydrology
DE: 1832 Groundwater transport
DE: 1847 Modeling
DE: 1869 Stochastic hydrology
SC: Hydrology [H]
MN: 2007 Fall Meeting