MR14A:
Digital Rock Physics, 3D Printing, and More II

Session ID#: 3129

Monday, 15 December 2014: 4:00 PM-6:00 PM
Salons 4-6 (Marriott Marquis)
Chairs:  Hongkyu Yoon, Sandia National Laboratories, Geomechanics and Geochemistry Department, Albuquerque, United States and WaiChing Sun, Columbia University, Civil Engineering and Engineering Mechanics, New York, United States
Primary Convener:  Hongkyu Yoon, Sandia National Laboratories, Geomechanics and Geochemistry Department, Albuquerque, United States
Co-conveners:  WaiChing Sun, Columbia University, Civil Engineering and Engineering Mechanics, New York, United States, Thomas A Dewers, Sandia National Laboratories, Albuquerque, United States and Moo Lee, Sandia National Laboratories, Albuquerque, NM, United States; Sandia National Lab, Albuquerque, NM, United States
OSPA Liaison:  Hongkyu Yoon, Sandia National Laboratories, Geomechanics and Geochemistry Department, Albuquerque, United States
Co-Sponsor(s):
  • H - Hydrology
  • T - Tectonophysics
Index Terms:

1822 Geomechanics [HYDROLOGY]
1858 Rocks: chemical properties [HYDROLOGY]
1859 Rocks: physical properties [HYDROLOGY]
5112 Microstructure [PHYSICAL PROPERTIES OF ROCKS]
Virtual Option?: No

Abstracts Submitted to this Session:

Relevance of Computational Rock Physics (14107)
Jack P Dvorkin, King Fahd University of Petroleum & Minerals, CPG, Dhanran, Saudi Arabia
Experimental Diagenesis and 3D Printing of Evolving Carbonate Microstructures (11445)
Tiziana Vanorio, RGL - Rock and Geomaterials Laboratory, Stanford University, Department of Earth and Planetary Sciences, Stanford, United States
A nonlocal multiscale discrete-continuum digital rock physics model at pendular regime (18727)
Waiching Sun1, Yang Liu1, Zifeng Yuan1 and Jacob Fish2, (1)Columbia University of New York, Civil Engineering and Engineering Mechanics, Palisades, NY, United States, (2)Columbia University, Department of Civil Engineering and Engineering Mechanics, New York, United States
Integrating conventional and digital rock physics (Invited) (21660)
Christoph Hermann Arns1, Seyed M Alizadeh2, Saeid Norouzi Apourvari2, Igor Shikhov2, Nicolas Francois3, Shane Latham4, Jill Middleton4, Ajay Limaye5 and Tim Senden4, (1)University of New South Wales, Sydney, NSW, Australia, (2)University of New South Wales, Sydney, Australia, (3)Australian National University, Department of Materials Physics, Canberra, ACT, Australia, (4)Australian National University, Applied Mathematics, Canberra, Australia, (5)Australian National University, ANU Vizlab, Canberra, Australia
Giving peeps to my props: Using 3D printing to shed new light on particle transport in fractured rock. (Invited) (5932)
Stuart D Walsh, Wyatt L Du Frane, John J Vericella and Roger D Aines, Lawrence Livermore National Laboratory, Livermore, CA, United States
Digital Rock Simulation of Flow in Carbonate Samples (16295)
Denis Klemin and Mark Andersen, Schlumberger Testing Services, Schlumberger Reservoir Laboratories, Houston, TX, United States
Testing Mercury Porosimetry with 3D Printed Porosity Models (23128)
Franciszek Hasiuk, Kansas Geological Survey, University of Kansas, Energy Research, Lawrence, United States, Robert P Ewing, Iowa State University, Ames, IA, United States and Qinhong Hu, Department of Earth and Environmental Sciences, The University of Texas at Arlington, Arlington, United States
3D Printing and Digital Rock Physics for the Geosciences (Invited) (8850)
Mario J Martinez, Sandia National Laboratories, Engineering Science Center, Albuquerque, NM, United States, Hongkyu Yoon, Sandia National Laboratories, Geomechanics and Geochemistry Department, Albuquerque, United States and Thomas A Dewers, Sandia National Laboratories, Albuquerque, United States