HR: 0800h
AN: U41B-0419 [Abstracts]
TI: Mantel Convection Models of the D" Region
AU: van den Berg, A
EM: berg@geo.uu.nl
AF: Dept. Geophysics, Inst. Earth Sciences, Utrecht University, Budapestlln 4, Utrecht, 3584
CD, Netherlands
AU: * Yuen, D
EM: daveyuen@gmail.com
AF: University of Minnesota Dept. of Geology and Geophysics
and Minnesota Supercomputing Institute, 310 Pillsbury Dr SE, Minneapolis, MN 55455-0219, United States
AU: de Hoop, M
EM: mdehoop@math.purdue.edu
AF: Center for Computational and Applied Mathematics, Purdue University, 150 N University St,
West Lafayette, IN 47907-2067, United States
AU: van der Hilst, R
EM: hilst@mit.edu
AF: MIT Earth Atmos Planet Sci, 77 Mass Ave Rm 54-522, Cambridge, MA 02139, United States
AB:
We have investigated heterogeneity in the bottom D" region of Earth's lower mantle by means of numerical mantel
convection modelling using a 2-D cylindrical geometry. The finite element model used, is based on the extended
Boussinesq approximation, and includes the 660 km phase transition in the transition zone and the
postperovskite transition in the D" region.
We apply variable conductivity and phase dependent composite rheology in our model to account for increased
conductivity and a higher tendency towards non-linear dislocation creep of
postperovskite. We used particle tracers to reveal compositional variations related to compositional layering
associated with a subducted oceanic lithospheric slab.
The results show lens-like structures of postperovskite directly above the core-mantle boundary with an
underlying thin layer of hot perovskite, similar to the structures related to the Cocos subduction, recently resolved
in seismological studies (Van der Hilst et al.,2007). Oceanic basaltic crust and a harzburgitic layer become
strongly folded, generating small scale structures at the bottom of the mantle. We show model predictions in
terms of seismic reflectivity of the complex structures resulting from variations in temperature, phase and
composition that will aid in the interpretation of (image-processed) seismic reflectivity cross sections of the D"
region.
DE: 3902 Creep and deformation
DE: 8121 Dynamics: convection currents, and mantle plumes
DE: 8124 Earth's interior: composition and state (1212, 7207, 7208, 8105)
DE: 8162 Rheology: mantle (8033)
SC: Union [U]
MN: 2007 Fall Meeting