DI33A:
Seismic Anisotropy: Predictions, Observations, and Interpretations III Posters

Session ID#: 2640

Wednesday, 17 December 2014: 1:40 PM-6:00 PM
Poster Hall (Moscone_South)
Chairs:  Thomas Bodin, University of California Berkeley, Berkeley, United States, Carlos J Garrido, IACT, Granada, Spain and Andrea Tommasi, University of Montpellier II, Montpellier Cedex 05, France
Primary Convener:  Thomas Bodin, UC Berkeley, Berkeley, United States
Co-conveners:  Carlos J Garrido, CSIC, IACT, Granada, Spain, Andrea Tommasi, Univ Montpellier & CNRS, Géosciences Montpellier, Montpellier, France and J Michael Kendall, University of Bristol, School of Earth Sciencess, Bristol, BS8, United Kingdom
OSPA Liaison:  Thomas Bodin, University of California Berkeley, Berkeley, United States
Co-Sponsor(s):
  • MR - Mineral and Rock Physics
  • S - Seismology
  • T - Tectonophysics
Index Terms:

3625 Petrography, microstructures, and textures [MINERALOGY AND PETROLOGY]
3653 Fluid flow [MINERALOGY AND PETROLOGY]
5102 Acoustic properties [PHYSICAL PROPERTIES OF ROCKS]
7270 Tomography [SEISMOLOGY]
Virtual Option?: No

Abstracts Submitted to this Session:

 
Pacific Upper Mantle Seismic Anisotropy from the Active-Source Seismic Component of the NoMelt Experiment (8537)
Hannah F Mark1, Daniel Lizarralde2, James B Gaherty3, John A Collins2, Greg Hirth4 and Rob L Evans5, (1)MIT/WHOI Joint Program, Woods Hole, United States, (2)WHOI, Woods Hole, MA, United States, (3)Columbia University in the City of New York, Lamont-Doherty Earth Observatory, Palisades, United States, (4)Brown University, Department of Earth, Environmental, and Planetary Sciences, Providence, RI, United States, (5)Woods Hole Oceanographic Institution, Woods Hole, MA, United States
 
Tracking Stress and Hydrothermal Activity Along Oceanic Spreading Centers Using Tomographic Images of Seismic Anisotropy (4925)
Robert A Dunn, University of Hawaii, Honolulu, United States, James Andrew Conder, Southern Illinois University Carbondale, Geology, Carbondale, IL, United States and Juan Pablo Canales, Woods Hole Oceanographic Institution, Woods Hole, MA, United States
 
Crustal Anisotropy beneath selected Pacific Ocean-Islands from Harmonic Decomposition of Receiver Functions (12769)
Tolulope M Olugboji, University of Rochester, Earth and Environmental Sciences, Rochester, NY, United States and Jeffrey J Park, Yale University, Earth & Planetary Sciences, New Haven, CT, United States
 
A Markov chain Monte Carlo approach to forward modeling anisotropic receiver functions – Application to the eastern North American craton (19795)
Erin A Wirth, Yale University, New Haven, United States, Maureen D Long, Yale University, Department of Earth & Planetary Sciences, New Haven, CT, United States and Jun Korenaga, Yale University, Department of Earth and Planetary Sciences, New Haven, CT, United States
 
SKS splitting beneath the eastern United States from Transportable Array data (18123)
John McNamara1, Kenneth Jackson1 and Maureen D Long2, (1)Yale University, New Haven, CT, United States, (2)Yale University, Department of Earth & Planetary Sciences, New Haven, CT, United States
 
Shear Wave Splitting and Mantle Deformation beneath Eastern Eurasia and Indo-Australia (19129)
Solomon Gerra Cherie1, Stephen S Gao2, Kelly Hong Liu2, Cory A Reed2, Fansheng Kong2, Ahmed A Elsheikh1, Yi Jiang1, Dan Wang2, Si Wu1 and Dee P. Leach1, (1)Missouri University of Science and Technology, Rolla, MO, United States, (2)Missouri University of Science and Technology, Geology and Geophysics Program, Rolla, MO, United States
 
Crust and Upper Mantle Shear Velocity Structure and Azimuthal Anisotropy of Northeastern Tibet from Rayleigh-wave Two-station Analysis (12402)
Yuan Yang and Huajian Yao, University of Science and Technology of China, School of Earth and Space Sciences, Hefei, China
 
Upper mantle anisotropy structure beneath eastern Tibet and its exploration (11763)
Yi Wang1 and Lianxing Wen1,2, (1)USTC University of Science and Technology of China, Hefei, China, (2)State University of New York at Stony Brook, Department of Geosciences, Stony Brook, NY, United States
 
Seismic Anisotropy of the Lithosphere/Asthenosphere System Beneath the Rwenzori Region of the East-African Rift (3751)
Benjamin Homuth1, Ulrike Löbl1, Arthur Batte2, Klemens Link3, Celestine Kasereka4 and Georg Rumpker1, (1)Goethe University Frankfurt, Frankfurt, Germany, (2)Makerere University, Kampala, Uganda, (3)Johannes Gutenberg University of Mainz, Mainz, Germany, (4)Goma Volcano Observatory, Goma, Congo
 
Anisotropic Structure of the Upper Mantle in the Carpathian-Pannonian Region: From SKS Splitting data and Xenolith Constraints (11980)
Goetz Bokelmann1, Ehsan Qorbani2, Istvan Kovacs1 and György Falus1, (1)University of Vienna, Vienna, Austria, (2)CTBTO Preparatory Commission for the Comprehensive Nuclear Test-Ban Organization, International Data Centre, Vienna, Austria
 
Slab Detachment Under the Eastern Alps Seen By Seismic Anisotropy (7705)
Ehsan Qorbani1, Irene Bianchi2 and Goetz Bokelmann2, (1)CTBTO Preparatory Commission for the Comprehensive Nuclear Test-Ban Organization, International Data Centre, Vienna, Austria, (2)University of Vienna, Vienna, Austria
 
Upper Mantle Structure of the Alps, Appennines and Adria Regions as Revealed by Shear Wave Splitting: Results from the CIFALPS Project (12101)
Simone Salimbeni1, Liang Zhao2, Marco Giovanni Malusa'3, Silvia Pondrelli1 and Stefano Solarino4, (1)Istituto Nazionale di Geofisica e Vulcanologia, sez. Bologna, Palermo, Italy, (2)IGG Institute of Geology and Geophysics, Chinese Academy of Sciences, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China, (3)University Milano-Bicocca, Department of Earth and Environmental Sciences, Milano, Italy, (4)Istituto Nazionale di Geofisica e Vulcanologia, Genova, Italy
 
Complex Anisotropy of Lowermost Mantle Beneath the Southeastern Pacific : Evidence from SKS–SKKS Splitting Discrepancies (14943)
Pengcheng Zhou, ITAG Institute of Theoretical and Applied Geophysics, Peking University, Beijing, China
 
Subslab seismic anisotropy and mantle flow in the western Pacific subduction zones (15066)
Cheng-Chien Peng, IONTU Institute of Oceanography National Taiwan University, Taipei, Taiwan, Ban-Yuan Kuo, Institute of Earth Sciences Academia Sinica, Taipei, Taiwan and Chin-Wu Chen, National Taiwan University, Taipei, Taiwan
 
Shear wave splitting observations across the Juan de Fuca plate system: Ridge- to-trench constraints on mantle flow from 2 years of Cascadia Initiative OBS data (14546)
Miles Bodmer, Sandia National Laboratories, Albuquerque, NM, United States, Douglas R Toomey, University of Oregon, Department of Earth Sciences, Eugene, United States and Emilie E E Hooft, PhD, University of Oregon, Department of Earth Sciences, Eugene, OR, United States
 
Seismic Anisotropy of the Mexican Subduction Zone Based on the Surface Waves, Shear Wave Splitting, and Higher Modes. (27163)
Igor Stubailo, University of California Los Angeles, Los Angeles, CA, United States and Paul Mcewan Davis, University of California Los Angeles, Earth, Planetary, and Space Sciences, Los Angeles, CA, United States
 
Crust and Mantle Anisotropy Variations from the Coast to Inland In Central and Southern Mexico (16993)
Jorge Alberto Castillo, Xyoli Perez-Campos, Allen L Husker and Raul Valenzuela Wong, UNAM National Autonomous University of Mexico, Mexico City, Mexico
 
Crystal Preferred Orientation of Amphibole Experimentally Deformed in Simple Shear (5078)
Byeongkwan Ko, Seoul National University, Seoul, Korea, Republic of (South) and Haemyeong Jung, Seoul National University, School of Earth and Environmental Sciences, Seoul, Korea, Republic of (South)
 
Deformation Microstructures of Olivine and Chlorite in Chlorite Peridotites from Almklovdalen in the Western Gneiss Region, SW Norway and Implications for Seismic Anisotropy (5701)
Dohyun Kim, Seoul National University, Tectonophysics Laboratory, Seoul, Korea, Republic of (South) and Haemyeong Jung, Seoul National University, School of Earth and Environmental Sciences, Seoul, Korea, Republic of (South)
 
Study on the Lattice Preferred Orientation (LPO) of Olivine, Amphibole, and Chlorite in Amphibole Peridotites from SW Norway (5750)
Hyunsun Kang, Seoul National University, Seoul, South Korea and Haemyeong Jung, Seoul National University, School of Earth and Environmental Sciences, Seoul, Korea, Republic of (South)
 
Effective Elastic Response and Associated Seismic Anisotropy of Polar Ices Exhibiting Pronounced Crystallographic Texture, and Containing Air and/or Rock Inclusions (3776)
Olivier Castelnau1, Anne Mangeney2, Amandine sergeant-Boy3, Jean-Paul Montagner4, Eleonore Stutzmann5 and Veronique Farra2, (1)CNRS, ENSAM, CNAM, PIMM, Paris Cedex 16, France, (2)Institut de Physique du Globe de Paris (IPGP), Université Paris Cité, Paris, France, (3)Institut de Physique du Globe de Paris, Paris, France, (4)CNRS, Institut de Physique du Globe de Paris, Paris, France, (5)IPGP, Institut de Physique du Globe de Paris, Paris, France
 
Clay Mineral Preferred Orientation (2821)
Ruarri James Day-Stirrat, Shell Houston, Houston, TX, United States