Kristopher L Kuhlman
Sandia National Laboratories
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Featured researches published by Kristopher L Kuhlman.
Archive | 2016
Carlos F. Jove-Colon; Glenn E. Hammond; Kristopher L Kuhlman; Liange Zheng; Kunhwi Kim; Hao Xu; Jonny Rutqvist; Florie Andre Caporuscio; Katherine E. Norskog; James Maner; Sarah Palaich; Michael C. Cheshire; Mavrik Zavarin; Thomas J. Wolery; Cindy Atkins-Duffin; James L. Jerden; Jacqueline M. Copple; T. A. Cruse; William L. Ebert
Radioactive waste disposal in shale/argillite rock formations has been widely considered given its desirable isolation properties (low permeability), geochemically reduced conditions, anomalous groundwater pressures, and widespread geologic occurrence. Clay/shale rock formations are characterized by their high content of clay minerals such as smectites and illites where diffusive transport and chemisorption phenomena predominate. These, in addition to low permeability, are key attributes of shale to impede radionuclide mobility. Shale host-media has been comprehensively studied in international nuclear waste repository programs as part of underground research laboratories (URLs) programs in Switzerland, France, Belgium, and Japan. These investigations, in some cases a decade or more long, have produced a large but fundamental body of information spanning from site characterization data (geological, hydrogeological, geochemical, geomechanical) to controlled experiments on the engineered barrier system (EBS) (barrier clay and seals materials). Evaluation of nuclear waste disposal in shale formations in the USA was conducted in the late 70’s and mid 80’s. Most of these studies evaluated the potential for shale to host a nuclear waste repository but not at the programmatic level of URLs in international repository programs. This report covers various RD Investigation of Reactive Transport and Coupled THM Processes in EBS: FY14; Update on Experimental Activities on Buffer/Backfill Interactions at elevated Pressure and Temperature; and Thermodynamic Database Development: Evaluation Strategy, Modeling Tools, First-Principles Modeling of Clay, and Sorption Database Assessment;ANL Mixed Potential Model For Used Fuel Degradation: Application to Argillite and Crystalline Rock Environments.«xa0less
Archive | 2011
Kristopher L Kuhlman; Kevin Scott Barnhart
Archive | 2018
Kristopher L Kuhlman; Melissa Marie Mills; Courtney Grant Herrick; Edward N. Matteo; Phil Stuaffer; Peter Johnson; Hakim Boukhalfa; Doug Weaver; Jonny Rutqvist; Yuxin Wu
Archive | 2017
Kristopher L Kuhlman; Melissa Marie Mills; Edward N. Matteo
Archive | 2016
Scott Thomas Broome; Avery Ted Cashion; Joshua David Feldman; Aviva J. Sussman; Erika M. Swanson; Jennifer Wilson; Jason E. Heath; Kristopher L Kuhlman
Archive | 2015
Geoffrey A. Freeze; Bill Walter Arnold; Patrick V. Brady; David Sassani; Kristopher L Kuhlman; Robert J. MacKinnon
Archive | 2015
Patrick V. Brady; Kristopher L Kuhlman; David Sassani; Geoffrey A. Freeze; Ernest Hardin; Robert J. MacKinnon
Archive | 2015
Geoffrey A. Freeze; Bill Walter Arnold; Patrick V. Brady; David Sassani; Kristopher L Kuhlman; Robert J. MacKinnon; Ernest Hardin
Archive | 2015
HeeHo Daniel Park; Glenn E. Hammond; Kristopher L Kuhlman; Todd Zeitler
Archive | 2015
Kristopher L Kuhlman; Patrick V. Brady; Robert J. MacKinnon; Jason E. Heath; Courtney Grant Herrick; Richard P. Jensen; Mark J. Rigali; Teklu Hadgu; S. David Sevougian; Jens T. Birkholzer; Barry M. Freifeld; Tom Daley