DI51A:
From Core to Crust, the Evolution of Planetary Interiors I Posters

Session ID#: 3310

Friday, 19 December 2014: 8:00 AM-12:20 PM
Poster Hall (Moscone_South)
Chairs:  Matt B Weller, Rice University, Houston, United States and Julie C Castillo, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States
Primary Convener:  Matt B Weller, Rice University, Houston, United States
Co-conveners:  Julie C Castillo, Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States, Doris Breuer, German Aerospace Center (DLR), Institute of Planetary Research, Berlin, Germany and Nicolas Dauphas, University of Chicago, Origins Laboratory, Department of the Geophysical Sciences and Enrico Fermi Institute, Chicago, IL, United States
OSPA Liaison:  Nicolas Dauphas, University of Chicago, Origins Laboratory, Department of the Geophysical Sciences and Enrico Fermi Institute, Chicago, IL, United States
Co-Sponsor(s):
  • GP - Geomagnetism and Paleomagnetism
  • P - Planetary Sciences
  • T - Tectonophysics
  • V - Volcanology, Geochemistry and Petrology
Index Terms:

5430 Interiors [PLANETARY SCIENCES: SOLID SURFACE PLANETS]
8125 Evolution of the Earth [TECTONOPHYSICS]
8148 Planetary volcanism [TECTONOPHYSICS]
8149 Planetary tectonics [TECTONOPHYSICS]
Virtual Option?: No
Swirl Theme: Comparative Planetology and Habitability

Abstracts Submitted to this Session:

 
The influence of carbon, sulfur, and silicon on trace element partitioning in iron alloys (30858)
Jian Han, Case Western Reserve University, Cleveland, OH, United States, James Van Orman, Case Western Reserve University, Cleveland, United States, Katherine L Crispin, Geophysical Laboratory, Washington, DC, United States and Richard D Ash, University of Maryland, College Park, MD, United States
 
Fractionation of a Basal Magma Ocean (11393)
Matthieu Laneuville, Earth-Life Science Institute, Meguro-ku, Tokyo, Japan, John W Hernlund, Earth-Life Science Institute, Meguro, Tokyo, Japan and Stephane Labrosse, Ecole Normale Supérieure Lyon, Lyon, France
 
Element Redistribution in Fe-Ni-O Alloys by a Thermal Gradient: Implications for Siderophile Element Partitioning During Core Formation and Crystallization (11606)
Neil Bennett, Carnegie Institution of Washington, Washington, DC, United States and Yingwei Fei, Carnegie Institution of Washington, Geophysical Laboratory, Washington, DC, United States
 
A High Core Heat Flow Solution to Earth’s Thermal and Magnetic Paradoxes (10718)
Peter E Driscoll, University of Washington Seattle Campus, Seattle, WA, United States
 
Extending the core paradox posed by an early dynamo (30875)
John Anthony Tarduno, University of Rochester, Department of Physics and Astronomy, Rochester, NY, United States; University of Rochester, Department of Earth & Environmental Sciences, Rochester, NY, United States and Rory Danielle Cottrell, University of Rochester, Earth and Environmental Sciences, Rochester, NY, United States
 
Combining Mantle Convection Modeling With Gravity and Topography Spectra to Constrain the Dynamic Evolution of the Terrestrial Planets (15291)
Tobias Rolf, University of Oslo, Centre for Earth Evolution and Dynamics (CEED), Oslo, Norway, Stephanie C. Werner, University of Oslo, Centre for Planetary Habitability (PHAB), Oslo, Norway and Bernhard M Steinberger, University of Oslo, CEED, Oslo, Norway; Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany
 
Can We Approximate Non-Newtonian Rheology to Model Mantle Convection? (15855)
Doris Breuer1, Ana-Catalina Plesa2,3, Christian Hüttig4 and Nicola Tosi3,4, (1)German Aerospace Center DLR Berlin, Institute of Planetary Research, Berlin, Germany, (2)University of Münster, Münster, Germany, (3)German Aerospace Center (DLR), Institute of Planetary Research, Berlin, Germany, (4)German Aerospace Center DLR Berlin, Planetary Physics, Berlin, Germany
 
Numerical Modeling of Mantle Convection with Heat-pipe Melt Transport (16207)
Sebastian Prinz1,2, Nicola Tosi3,4, Ana-Catalina Plesa4,5 and Doris Breuer6, (1)Freiberg University of Mining and Technology, Freiberg, Germany, (2)German Aerospace Center DLR Berlin, Berlin, Germany, (3)German Aerospace Center DLR Berlin, Planetary Physics, Berlin, Germany, (4)German Aerospace Center (DLR), Institute of Planetary Research, Berlin, Germany, (5)University of Münster, Münster, Germany, (6)German Aerospace Center DLR Berlin, Institute of Planetary Research, Berlin, Germany
 
Parameterized Thermal Evolution of the Earth with Continental Growth (26364)
Julie Menard, Washington State University, Pullman, WA, United States and Catherine M Cooper, Washington State University, School of the Environment, Pullman, United States
 
Mars Thermal History: Core, Atmosphere, Mantle, Phobos and Surface (MaTH CAMPS) (24165)
June K Wicks1, Matt B Weller2, Nathan J Towles3, Christopher Thissen4, Nicholas R Knezek5, Stephanie Johnston6, Sutatcha Hongsresawat7, Megan S Duncan8, Benjamin A Black9, Nicholas C Schmerr10, Mark P Panning11, Laurent Montesi10, Michael Manga12 and Philippe Henri Lognonné13, (1)Princeton University, Princeton, NJ, United States, (2)Rice University, Houston, United States, (3)Johns Hopkins Univ, Baltimore, MD, United States, (4)Yale Univ-Geology & Geophysics, New Haven, CT, United States, (5)University of California, CA, United States, (6)University of Maryland College Park, College Park, MD, United States, (7)University of Florida, Gainesville, FL, United States, (8)Rice University, Houston, TX, United States, (9)Rutgers University, New Brunswick, United States, (10)University of Maryland College Park, Department of Geology, College Park, MD, United States, (11)Jet Propulsion Laboratory, California Institute of Technology, Pasadena, United States, (12)Univ of California Berkeley, Earth and Planetary Sciences, Berkeley, United States, (13)Université Paris Cité, Institut de physique du globe de Paris, CNRS, Paris, France
 
Oscillatory Thermochemical Convection as a Cause for the Episodic Mare Basalt Volcanism in the PKT Region of the Moon (13872)
Chuan Qin, University of Colorado at Boulder, Boulder, CO, United States and Shijie Zhong, University of Colorado at Boulder, Department of Physics, Boulder, United States
 
3D Spherical Convection Modeling of Venusian Resurfacing Mechanisms (7097)
Aaron C Prunty, Virginia Polytechnic Institute and State University, Blacksburg, VA, United States and Scott D King, Virginia Tech, Blacksburg, VA, United States
 
Maximum-likelihood Estimation of Planetary Lithospheric Rigidity from Gravity and Topography (30684)
Kevin W Lewis, Princeton University, Princeton, United States; Johns Hopkins University, Earth and Planetary Sciences, Baltimore, MD, United States, Gabe L. Eggers, Georgia Institute of Technology Main Campus, Atlanta, GA, United States; Princeton University, Princeton, NJ, United States, Frederik J Simons, Princeton University, Geosciences, Princeton, NJ, United States and Sofia C Olhede, University College London, London, United Kingdom