HR: 1340h
AN: H23G-1719 [Abstracts]
TI: Can more data make a model worse? A transport experiment in an exhaustively sampled sandstone slab
AU: * Revielle, J
EM: jreviell@mines.edu
AF: Department of Geology and Geological Engineering, Colorado School of Mines, 1500
Illinois St, Golden, CO 80401, United States
AU: Benson, D A
EM: dbenson@mines.edu
AF: Department of Geology and Geological Engineering, Colorado School of Mines, 1500
Illinois St, Golden, CO 80401, United States
AB:
An advantage of numerical models over analytic methods is their ability to include field measurements, such as
hydraulic conductivity (K) at measured locations. Poor model fit with observed conservative transport is typically
attributed to lack of K measurements. Previous research on a 30 x 30 x 2.2 cm slab of Massillon sandstone
has shown that despite including the finest K measurements (every 0.33 cm), traditional numerical models fail
to capture significant details of observed solute transport. The average K values still cannot adequately
represent the sub-measurement scale heterogeneities within the sandstone. The resulting spatially averaged
K field violates the assumptions of the local advection-dispersion equation (ADE). We present a new method
which uses statistically similar Monte Carlo realizations within typical numerical models that can reproduce of the
early breakthrough and late tails seen in natural aquifers. Using MODFLOW and a particle tracking code,
ensemble results using a local ADE and no conditioning points capture the observed tracer transport better than
models using the 8,649 K measurements directly. The results imply the need for a non-local transport model
which can account for the sub-grid heterogeneities, while still honoring the K measurements. Increasing
model discretization using an anisotropic fractal scaling model while including all K measurements may also
help improve model fit with the experimental results.
DE: 1832 Groundwater transport
DE: 1847 Modeling
DE: 1869 Stochastic hydrology
SC: Hydrology [H]
MN: 2007 Fall Meeting