HR: 17:45h
AN: T14B-08 [Abstracts]
TI: The Influence of Mesozoic-Cenozoic Plate Motions on Thermochemical Piles
AU: * McNamara, A K
EM: allen.mcnamara@asu.edu
AF: University of Colorado, Department of Physics
University of Colorado, Boulder, CO 80309
United States
AU: Zhong, S
EM: szhong@spice.colorado.edu
AF: University of Colorado, Department of Physics
University of Colorado, Boulder, CO 80309
United States
AB:
The large low-velocity seismic anomalies under the Pacific and
Africa are often interpreted as being piles of more-dense material.
We have performed numerical modeling of thermochemical convection
in a three-dimensional spherical geometry in order to determine whether
the presence of a dense chemical component can lead to the formation
of two large antipodal piles in the Earth's lower mantle. We find that
without imposing plate motions on the surface of the model, the dense
material forms a network of linear ridges which are passively swept around
by downwellings and that thermochemical structures
are generally controlled by the geometry of the downwelling system.
If plate motion history from 119 Ma to the present was imposed,
we find that
large thermochemical piles form in the lower mantle
under Africa and the Pacific. Furthermore, the general shape of these
structures are such that a ridge-like pile forms under Africa and a more
rounded pile develops under the Pacific, consistant with seismic tomography.
These general features of our models hold for a wide choice of density
contrast and initial layer thickness.
DE: 8100 TECTONOPHYSICS
DE: 8120 Dynamics of lithosphere and mantle--general
DE: 8121 Dynamics, convection currents and mantle plumes
DE: 8124 Earth's interior--composition and state (old 8105)
DE: 8157 Plate motions--past (3040)
SC: Tectonophysics [T]
MN: 2004 AGU Fall Meeting