H53D:
Flow through Fractured and Deformable Porous Media: Coupling Reactive Transport, Mechanical Deformation, and Hydrodynamics II Posters
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H53D:
Flow through Fractured and Deformable Porous Media: Coupling Reactive Transport, Mechanical Deformation, and Hydrodynamics II Posters
Flow through Fractured and Deformable Porous Media: Coupling Reactive Transport, Mechanical Deformation, and Hydrodynamics II Posters
You can still search the program to see your colleague�s abstract submissions as well as the sessions submitted for the 2016 Fall Meeting. The final program will be released in early October.
Session ID#: 13683
Session Description:
The mechanical and transport properties in fractured and porous media are fundamental to predicting coupled multiphysics processes. Examples include carbon sequestration, unconventional resources recovery, induced seismicity, geothermal recovery, and soil wetting and drying. In geologic formations, coupled thermal, mechanical, chemical and hydrological interactions alter the medium’s transport properties, leading to complex emergent behaviors across a huge range of spatiotemporal scales. In this session, we discuss recent experimental, theoretical, and numerical advances in flow through fractured and deformable porous media, with emphasis on preferential or emergent fluid pathways due to hydrodynamic instabilities, reaction-induced precipitation/dissolution, stress and thermal gradient changes, and/or coupled chemo-mechanical processes. Of particular interest are studies that (1) focus on innovative experimental methods including 3D printing techniques and multi-scale imaging for characterizing multiphase and reactive fluid flow and the associated fluid-rock interactions and (2) expose the underlying pore-scale physics, linking them to effective properties and behavior at larger scales.
Primary Convener: Ran Holtzman, Hebrew University of Jerusalem, Rehovot, Israel
Conveners: Hongkyu Yoon, Sandia National Laboratories, Geomechanics Department, Albuquerque, NM, United States, Lucas Goehring, Max Planck Institute for Dynamics and Self-Organization, Dynamics of Complex Fluids, Göttingen, Germany and Thomas A Dewers, Sandia National Laboratories, Albuquerque, United States
Chairs: Hongkyu Yoon, Sandia National Laboratories, Geomechanics Department, Albuquerque, NM, United States, Lucas Goehring, Max Planck Institute for Dynamics and Self-Organization, Dynamics of Complex Fluids, Göttingen, Germany, Ran Holtzman, Hebrew University of Jerusalem, Rehovot, Israel and Thomas A Dewers, Sandia National Laboratories, Albuquerque, United States
OSPA Liaison: Lucas Goehring, Max Planck Institute for Dynamics and Self-Organization, Dynamics of Complex Fluids, Göttingen, Germany
Cross-Listed:
- MR - Mineral and Rock Physics
- NG - Nonlinear Geophysics
- T - Tectonophysics
Index Terms:
1829 Groundwater hydrology [HYDROLOGY]
1835 Hydrogeophysics [HYDROLOGY]
1859 Rocks: physical properties [HYDROLOGY]
4430 Complex systems [NONLINEAR GEOPHYSICS]
Abstracts Submitted to this Session:
See more of: Hydrology
