HR: 0800h
AN: DI21A-0344 [Abstracts]
TI: Present-day Three-Dimensional Temperature Distribution From a Mantle Flow Model.
AU: * Wang, X
EM: wangxin@umich.edu
AF: Dept. of Geological Sciences,University of Michigan, 2534 C. C. Little Building, 1100 North
University Ave, Ann Arbor, MI 48109-1005, United States
AU: Lithgow-Bertelloni, C
EM: crlb@umich.edu
AF: Dept. of Earth Sciences, University College London, Gower St, London, WC1E 6BT, United
Kingdom
AB:
In an attempt to understand the global temperature distribution in the mantle and its consequences for Earth
structure we construct a model for the instantaneous temperature field of the mantle, assuming downwellings
slabs to be the most important source of density heterogeneity and temperature variations. We neglect the
contributions due to active upwellings. We use a model for the history of subduction derived from tectonic
reconstructions and compute the 3-D velocity field for an incompressible Newtonian fluid. We solve the advection-
diffusion equation in steady state for a spherical shell using the finite element package ABAQUS. We choose
free-slip, 3000 K velocity-temperature boundary conditions at the core-mantle boundary, and at the surface we
constrain velocities to be plate velocities and temperatures to be 300 K. The vertical resolution is on the order of
~5 km at the top and bottom boundary layers, and ~200 x 200 km horizontally. We recover the half-space cooling
behavior in the lithosphere and obtain reasonable values of the heat flow, indicating that our predicted
temperature field behaves as expected. Not surprisingly, the 3-D variations in the entire mantle are dominated by
the presence of slabs in regions of long-lived subduction We use our predicted temperature fields to compute the
expected phase assemblage for a mantle of constant bulk composition. We will focus our discussion on the
expected topography on major seismic discontinuities (410 and 660) and comparisons to three-dimensional
seismological observations.
DE: 1212 Earth's interior: composition and state (7207, 7208, 8105, 8124)
DE: 1213 Earth's interior: dynamics (1507, 7207, 7208, 8115, 8120)
DE: 7208 Mantle (1212, 1213, 8124)
DE: 8124 Earth's interior: composition and state (1212, 7207, 7208, 8105)
SC: Study of the Earth's Deep Interior [DI]
MN: 2007 Fall Meeting