HR: 12:05h
AN: T12B-08 [Abstracts]
TI: The anisotropic signature of western Canada: Probing the mechanics of lithospheric deformation
AU: Jellinek, M
EM: mjellinek@eos.ubc.ca
AF: University of British Columbia, Earth and Ocean Sciences
6339 Stores Road, Vancouver, BC v6t 1z4, Canada
AU: * Audet, P
EM: paudet@eos.ubc.ca
AF: University of British Columbia, Earth and Ocean Sciences
6339 Stores Road, Vancouver, BC v6t 1z4, Canada
AU: Uno, H
EM: huno@eos.ubc.ca
AF: University of British Columbia, Earth and Ocean Sciences
6339 Stores Road, Vancouver, BC v6t 1z4, Canada
AB:
Spatial variations in the rigidity of continental plates (expressed in terms of an effective
elastic thickness, Te ) can have a profound influence on the style of deformation of ocean-
continent convergent margins. Depending on where the largest gradients in Te occur,
strains related to plate boundary forces can become concentrated where Te is small. We
estimate Te and Te anisotropy in western Canada by inverting the coherence between
Bouguer gravity and topography. In addition to a nearly stepwise change in Te from the
Cordillera to the craton, we show that weak axes of Te anisotropy are parallel with most
compressive directions of horizontal stress components and fast axes of upper mantle
seismic anisotropy. Maxima in the magnitude of Te anisotropy are spatially correlated
with the locations of most earthquakes and the locations and directions of maxima in
electrical anisotropy and conductivity. The pattern of brittle failure and seismicity is
explained as a response to plate boundary forces acting on a plate of variable rigidity and
is expected to induce the observed mechanical anisotropy and enhance the flow of crustal
fluids, resulting in locally high electrical conductivities. Our combined results thus suggest for the first time that
the elastic properties of continental lithosphere have a leading order
influence on the deformation and evolution of convergent plate boundaries.
DE: 8120 Dynamics of lithosphere and mantle: general (1213)
DE: 8123 Dynamics: seismotectonics
DE: 8149 Planetary tectonics (5475)
DE: 8159 Rheology: crust and lithosphere (8031)
SC: Tectonophysics [T]
MN: 2007 Fall Meeting