Jedediah D. Frechette
University of New Mexico
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Geological Society of America Bulletin | 2015
Gary S. Weissmann; A. Pickel; K.C. McNamara; Jedediah D. Frechette; I. Kalinovich; Richelle M. Allen-King; Igor Jankovic
Accurate characterization of internal structures and geometries of aquifers is critical for evaluation of plume migration and dispersion of contaminants. For this reason, high-resolution transport study field sites, such as the Waterloo Groundwater Research Site at the Canadian Forces Base Borden, Ontario, Canada, have been established. However, geological characterization at this site is based primarily on cores and shallow geophysical data. Outcrop analog studies offer detailed horizontal data that can help to build quantified models of aquifer heterogeneity. We used a combination of ground-based light detection and ranging (LiDAR) and high-resolution photographs at a sand quarry cut into Borden aquifer sediment to evaluate and quantify the distribution of lithofacies and hydrofacies that control flow properties in the Borden aquifer. We exposed sixteen ∼20 m × 1.5 m outcrops, LiDAR surveyed, photographed, and field mapped lithofacies at each exposure, and segmented the lithofacies from photographs to produce maps of facies distributions. We grouped different lithofacies into hydrofacies based on overall facies geometry and estimated hydraulic properties. We used LiDAR scans and the segmented facies maps to produce a digital outcrop model (DOM) of the site. The resultant DOM combines lithofacies and hydrofacies derived from field observations with high-resolution (5 mm) LiDAR data to reconstruct hydrofacies distributions in a three-dimensional (3-D) geomodel. The DOM offers a relatively complete horizontal correlation structure that was used in transition probability geostatistical modeling to create realizations of hydrofacies distributions in the aquifer at the study site.
Water Resources Research | 2009
Katherine A. Klise; Gary S. Weissmann; Sean Andrew McKenna; Elizabeth M. Nichols; Jedediah D. Frechette; Tim F. Wawrzyniec; Vince Tidwell
The Holocene | 2009
Jedediah D. Frechette; Grant A. Meyer
Journal of Volcanology and Geothermal Research | 2015
Laura K Jones; Philip R. Kyle; Clive Oppenheimer; Jedediah D. Frechette; Marianne H Okal
Journal of Hydrology | 2015
A. Pickel; Jedediah D. Frechette; Alessandro Comunian; Gary S. Weissmann
Proposed for publication in the SEPM Journal. | 2008
Tim F. Wawrzyniec; Jedediah D. Frechette; Gary S. Weissmann; Elizabeth M. Nichols; Katherine A. Klise
Archive | 2010
Grant A. Meyer; Jedediah D. Frechette
Archive | 2008
Elizabeth M. Nichols; Gary S. Weissmann; Tim F. Wawrzyniec; Louis A. Scuderi; Jedediah D. Frechette; Katherine A. Klise
Archive | 2011
Ginny L. Rust; Gary S. Weissman; Ulrike Werban; Jedediah D. Frechette; Tim F. Wawrzyniec
Archive | 2008
Jedediah D. Frechette; Gary S. Weissmann; Tim F. Wawrzyniec