H51R:
Reactive Flow and Transport at the Pore Scale: Recent Advancements and Upscaling Approaches I

Session ID#: 4918

Friday, 19 December 2014: 8:00 AM-10:00 AM
3014 (Moscone West)
Chairs:  Mart Oostrom, Pacific Northwest National Lab, Richland, WA, United States, Christian Huber, Georgia Institute of Technology Main Campus, Earth and Atmospheric Sciences, Atlanta, GA, United States, Qinjun Kang, Los Alamos National Laboratory, Earth and Environmental Sciences Division, Los Alamos, United States and Yashar Mehmani, Stanford University, Energy Resources Engineering, Stanford, CA, United States
Primary Convener:  Qinjun Kang, Los Alamos National Laboratory, Earth and Environmental Sciences Division, Los Alamos, United States
Co-conveners:  Mart Oostrom, Pacific Northwest National Lab, Richland, WA, United States, Christian Huber, Gerogia Tech, Atlanta, United States and Yashar Mehmani, Stanford University, Energy Resources Engineering, Stanford, CA, United States
OSPA Liaison:  Christian Huber, Georgia Institute of Technology Main Campus, Earth and Atmospheric Sciences, Atlanta, GA, United States
Co-Sponsor(s):
  • V - Volcanology, Geochemistry and Petrology
Index Terms:
Virtual Option?: No
Swirl Theme: Carbon Dioxide Sequestration

Abstracts Submitted to this Session:

Challenges in reactive transport modeling for prediction of geometry evolution in fractured carbonate rocks (Invited) (30212)
Catherine A Peters1, Hang Deng2, Bin Guo3 and Jeffrey P Fitts3, (1)Princeton University, Princeton, United States, (2)Peking University, Beijing, China, (3)Princeton University, Civil and Environmental Engineering, Princeton, NJ, United States
Multi-phase upscaling from pore to core: When traditional methods fail (15830)
David A DiCarlo, The University of Texas at Austin, Hildebrand Department of Petroleum and Geosystems Engineering, Austin, United States
Effect of Reactive Flow on Multi-size Scaling of Fluid Flow and Seismic Fracture Stiffness (Invited) (17974)
Laura J Pyrak-Nolte, Purdue University, Department of Physics and Astronomy; Department of Earth, Atomospheric and Planetary Sciences; Lyles School of Civil Engineering, West Lafayette, United States
Visualization and Model Quantification of pH-Controlled Reactive Transport in Porous Media (9334)
Yaniv Edery1, Ishai Dror2 and Brian Berkowitz2, (1)Weizmann Institute of Science, Rehovot, Israel, (2)Weizmann Institute of Science, Department of Earth and Planetary Sciences, Rehovot, Israel
Biological Selenite Reduction and Biofilm Growth in a Microfluidic Flow Cell (6661)
Youneng Tang1, Albert J Valocchi2, Charles J Werth1, Wen-Tso Liu1, Robert A. Sanford3, Rajveer Singh1, Masaru Nobu1, Kyle Michelson1 and Zheng Xue1, (1)University of Illinois at Urbana Champaign, Urbana, IL, United States, (2)Department of Civil and Environmental Engineering, Urbana, IL, United States, (3)University of Illinois at Urbana-Champaign, Department of Geology, Urbana, IL, United States
The lamellar structure of reactive mixtures in porous media: Pore scale experimental imaging and upscaling (26639)
Tanguy Le Borgne1, Pietro De Anna2, Régis Turuban3, Joaquin Jimenez-Martinez4, Herve Tabuteau5, Yves Meheust4, Timothy R Ginn6 and Marco Dentz7, (1)University of Rennes 1, Géosciences Rennes UMR 6118, Rennes, France, (2)Massachusetts Institute of Technology, Cambridge, United States, (3)Géosciences Rennes, Rennes Cedex, France, (4)University of Rennes, Rennes Cedex, France, (5)Institute of Physic Rennes UMR 6251 CNRS, Universite de Rennes, Rennes, France, (6)University of California Davis, Davis, CA, United States, (7)IDAEA-CSIC, Barcelona, Spain
Computationally Inexpensive Incorporation of Solute Transport Physics into Pore-Network Models (25822)
Yashar Mehmani, Stanford University, Energy Resources Engineering, Stanford, CA, United States and Mart Oostrom, Pacific Northwest National Lab, Richland, WA, United States
Reactive Transport at the Pore Scale with Applications to the Dissolution of Carbonate Rocks for CO2 Sequestration Operations (31217)
Edo Boek1, Farrel Gray1, Nathan Welch1, Saurabh Maheshkumar Shah2, John Crawshaw1 and Farrel Gray, (1)Imperial College London, London, United Kingdom, (2)Imperial College London, London, SW7, United Kingdom
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