T011
Reconciling Estimates of Brittle and Ductile Lithosphere Rheology Across Temporal and Spatial Scales II Posters

Tuesday, 8 December 2020: 04:00-20:59
Poster
Primary Convener:  Camilla Penney, University of Cambridge, Cambridge, United Kingdom
Conveners:  Chris Rollins, University of Leeds, COMET, School of Earth and Environment, Leeds, LS2, United Kingdom, Alissa Kotowski, University of Texas at Austin, Austin, TX, United States and Adriano Gualandi, Organization Not Listed, Washington, DC, United States
Primary Liaison:  Camilla Penney, University of Cambridge, Cambridge, United Kingdom
Chairs:  Chris Rollins, University of Leeds, COMET, School of Earth and Environment, Leeds, LS2, United Kingdom, Camilla Penney, University of Cambridge, Cambridge, United Kingdom, Alissa Kotowski, University of Texas at Austin, Austin, TX, United States and Adriano Gualandi, Organization Not Listed, Washington, DC, United States
OSPA Liaison:  Chris Rollins, University of Leeds, COMET, School of Earth and Environment, Leeds, LS2, United Kingdom
 
Fault strength at the brittle-ductile transitional depth: Experimental study using deep fault materials along the Median Tectonic Line, Japan (714388)
Ichiko Shimizu, Kyoto University, Division of Earth and Planetary Sciences, Kyoto, Japan, Ayumi Okamoto, the University of Tokyo, Tikyo, Japan, Andre R Niemeijer, Utrecht University, Department of Earth Sciences - HPT laboratory, Utrecht, Netherlands, Masao Nakatani, the University of Tokyo, Bunkyo, Japan, Shun Arai, Tohoku University, Sendai, Japan, Tadamasa Ueda, Kyoto University, Kyoto, Japan, Christopher James Spiers, Utrecht University, Utrecht, Netherlands and Toru Takeshita, Hokkaido Univ, Sapporo, Japan
 
Seismogenesis in granite of brittle-ductile transition regime (769453)
Jae Hoon Kim, Korea University, Earth and Environmental Science, Seoul, Korea, Republic of (South) and Jin-Han Ree, Korea University, Department of Earth and Environmental Sciences, Seoul, Korea, Republic of (South)
 
Dislocation Creep Flow Laws of Wet Quartzite: the Significance of Pressure and Slip Systems. (700243)
Lucy Lu and Dazhi Jiang, Western University, London, ON, Canada
 
Three definitions of ductile shear zones resulting from grain-size evolution below a frictional fault (749798)
Kali L Allison, University of Maryland College Park, College Park, MD, United States and Laurent Montesi, University of Maryland College Park, Department of Geology, College Park, MD, United States
 
How Applicable are Existing Flow Laws to the Granitic Continental Crust? (718092)
Tarryn Kim Cawood, University of Southern California, Los Angeles, CA, United States and John P Platt, Univ Southern California, Los Angeles, CA, United States
 
Magmatic impacts on the thermal and rheological profiles of the upper crust: an example from the Bear Mountain Fault Zone in the Sierra Nevada foothills, California (702034)
Wenrong Cao, University of Nevada Reno, Department of Geological Sciences and Engineering, Reno, NV, United States and Quentin Pierce Austin Burgess, University of Nevada, Reno, Department of Geological Sciences and Engineering, Reno, NV, United States
 
In-situ crustal stress in inland Japan with application of DCDA method to rock core samples of seismic observation wells (723935)
Kentaro Omura, National Research Institute for Earth Science and Disaster Prevention, Tsukuba, Japan, Akio Funato, Fukada Geological Institute, Tokyo, Japan and Takatoshi Ito, Tohoku University, Institute of Fluid Science, Sendai, Japan
 
Testing the Yield-Stress Envelope Method Against Finite Element Models of Flexure (685869)
Ashley Sarah Bellas, University of Colorado at Boulder, Boulder, CO, United States and Shijie Zhong, University of Colorado at Boulder, Department of Physics, Boulder, CO, United States
 
Time-dependent evolution of off-fault deformation (708431)
Alba Mar Rodriguez Padilla, University of California Davis, Earth and Planetary Sciences, Davis, CA, United States and Michael E Oskin, Univ. of California, Davis, Davis, CA, United States
 
Deep ductile shear localization facilitates near-orthogonal strike-slip faulting in a thin brittle lithosphere (745875)
Chao Liang, Géoazur, Université Côte d’Azur, IRD, CNRS, Observatoire de la Côte d’Azur, France, Valbonne, France, Jean-Paul Ampuero, Université Côte d’Azur, CNRS, Observatoire de la Côte d’Azur, IRD, Géoazur, Valbonne, France and Daniel Pino Muñoz, Centre de Mise en Forme des Matériaux (CEMEF), Mines-ParisTech, PSL Research University, CNRS, Sophia-Antipolis, France
 
Postseismic Deformation Following the 2019 Mw 7.1 Ridgecrest Earthquake (733061)
Jacob Dorsett, Indiana University Bloomington, Bloomington, IN, United States, Kaj M Johnson, Indiana University, Bloomington, IN, United States, Thorsten W Becker, University of Texas at Austin, Austin, TX, United States and Simone Puel, University of Texas at Austin, Austin, United States
 
Post-Seismic Relaxation During 2015 to 2020 for the Large East Asia Earthquakes (719902)
Xiaoran Lv1,2, Falk Amelung3, Yun Shao1,4, Sara Mirzaee3 and Shu Ye1,2, (1)Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing, China, (2)University of Chinese Academy of Sciences, Beijing, China, (3)University of Miami, Department of Marine Geology and Geophysics, Miami, FL, United States, (4)Laboratory of Target Microwave Properties (LAMP), Zhongke Academy of Satellite Application in Deqing (DASA), Deqing, China
 
Postseismic deformation and stress evolution following the 2015 M 7.2 Sarez (Pamir) earthquake constrained by 5 years of Sentinel-1 and ALOS-2 observations (747824)
Zeyu Jin, Scripps Institution of Oceanography, Institute of Geophysics and Planetary Physics, La Jolla, CA, United States and Yuri A Fialko, Univ California San Diego, La Jolla, CA, United States
 
Using 3D Geodynamic Models of Flexure Backed by Seismic Imagery to Constrain the Rheology and Thermal Structure of the Oceanic Lithosphere Under the Hawaiian Islands (752225)
Daniel Douglas1, Garrett Ito2, Paul Wessel3, Robert A Dunn1, Brandon MacGregor1, John Naliboff4, Brian Boston5, Donna Shillington6, Anthony Brian Watts7 and Phillip Cilli8, (1)University of Hawaii at Manoa, Earth Sciences, Honolulu, HI, United States, (2)University of Hawaiʻi at Mānoa, Earth Sciences, Honolulu, HI, United States, (3)Univ Hawaii, Honolulu, HI, United States, (4)University of California, Davis, Computational Infrastructure for Geodynamics (CIG), Earth and Planetary Sciences Department, Davis, CA, United States, (5)Lamont-Doherty Earth Observatory, Palisades, NY, United States, (6)Northern Arizona University, Flagstaff, United States, (7)Univ Oxford, Oxford, United Kingdom, (8)University of Oxford, Oxford, United Kingdom
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