HR: 0800h
AN: S41C-1023 [Abstracts]
TI: Complex Seismic Anisotropy at the Edges of a Very-low Velocity Province in the Lowermost
Mantle
AU: * Wang, Y
EM: biphor@mantle.geo.sunysb.edu
AF: Department of Geosciences, SUNY Stony Brook, Stony Brook, NY 11794-2100
United States
AU: Wen, L
EM: wen@earth.geo.sunysb.edu
AF: Department of Geosciences, SUNY Stony Brook, Stony Brook, NY 11794-2100
United States
AB:
A prominent very-low velocity province (VLVP) in the lowermost mantle is revealed, and has been extensively mapped out in
recent seismic studies (e.g., Wang and Wen, 2004). Seismic evidence unambiguously indicates that the VLVP is compositionally
distinct, and its seismic structure can be best explained by partial melting driven by a compositional change produced in the
early Earth's history (Wen, 2001; Wen et. al, 2001; Wang and Wen, 2004). In this presentation, we study the seismic
anisotropic behavior inside the VLVP and its surrounding area using SKS and SKKS waveform data.
We collect 272 deep earthquakes recorded by more than 80 stations in the Kaapvaal seismic array in southern Africa from
1997 to 1999. Based on the data quality, we choose SKS and SKKS waveform data for 16 earthquakes to measure the anisotropic
parameters: the fast polarization direction and the splitting time, using the method of Silver and Chan (1991). A total of
162 high-quality measurements are obtained based on the statistics analysis of shear wave splitting results. The obtained
anisotropy exhibits different patterns for the SKS and SKKS phases sampling inside the VLVP and at the edges of the VLVP.
When the SKS and SKKS phases sample inside the VLVP, their fast polarization directions exhibit a pattern that strongly
correlates with stations, gradually changing from 11°N~to 80°N~across the seismic array from south to north
and rotating back to the North direction over short distances for several northernmost stations. The anisotropy pattern
obtained from the analysis of the SKKS phases is the same as that from the SKS phases. However, when the SKS and SKKS phases
sample at the edges of the VLVP, the measured anisotropy exhibits a very complex pattern. The obtained fast polarization
directions change rapidly over a small distance, and they no longer correlate with stations; the measurements obtained from
the SKS analysis also differ with those from the SKKS analysis.
As the SKS and SKKS phases have similar propagation paths in the lithosphere beneath the array, but different sampling
points near the core mantle boundary. The anisotropy in the lithosphere should have a similar influence on SKS and SKKS
phases. Therefore, the similar anisotropy obtained from the SKS and SKKS phases sampling inside the VLVP and its correlation
with seismic stations suggest that the observed anisotropy variation across the seismic array is mainly due to the anisotropy
in the lithosphere beneath the Kaapvaal seismic array, and the interior of the VLVP is isotropic or weakly anisotropic. On
the other hand, for the SKS and SKKS phases sampling at the edges of the VLVP, the observed complex anisotropy pattern and
the lack of correlation between the results from the SKS and SKKS analyses indicate that part of that anisotropy has to
originate from the lowermost mantle near the exit points of these phases at the core mantle boundary, revealing a complex
flow pattern at the edges of the VLVP.
DE: 3653 Fluid flow
DE: 3902 Creep and deformation
DE: 5120 Plasticity, diffusion, and creep
DE: 7203 Body waves
DE: 7208 Mantle (1212, 1213, 8124)
SC: Seismology [S]
MN: Fall Meeting 2005