HR: 0830h
AN: S51C-0059 [PDF]
TI: Spatial variations in crustal thickness and $V_P/V_S$ ratio in southern Africa and their geological
implications
AU: * Nair, S K
EM: snair@ksu.edu
AF: Kansas State University, 108 Thompson Hall, Dept. of Geology, Manhattan, KS 66506
AU: Liu, K H
EM: liu@ksu.edu
AF: Kansas State University, 108 Thompson Hall, Dept. of Geology, Manhattan, KS 66506
AU: Gao, S S
EM: gao@ksu.edu
AF: Kansas State University, 108 Thompson Hall, Dept. of Geology, Manhattan, KS 66506
AU: Silver, P G
EM: silver@dtm.ciw.edu
AF: Carnegie Institution of Washington, Dept. of Terrestrial Magnetism, 5241 Broad Branch Rd., N.W.,
Washington, D.C 20015
AB:
Measurements of crustal thickness (H) and $V_P/V_S$ ratio (R) at about
80 broadband seismic stations in southern Africa were made using data
from the Southern African Seismic Experiment, by stacking
receiver functions. Our results suggest
systematic spatial variations in both H and R that appear to be
geologically controlled. Regarding H, we observe relatively thick
crust beneath the Limpopo belt, younger collisional belts to the south
of the Kaapvaal craton, and beneath the Bushveld intrusion,
compared to the crust beneath the Kaapvaal and Zimbabwe cratons, a
result that is consistent with previous studies. There are noteworthy
spatial variations in R. The most dramatic change in R actually occurs
within the Kaapvaal craton. In particular, going from the Neo-Archean
Kimberly block to the Meso-Archean Witswatersrand block (east), the
average value of R increases systematically from 1.76 to 1.81.
Taken at face value, this suggests that, on average, the Meso-Archean
crust is more mafic than the Neo-Archean crust, which may indicate
temporal differences in crustal formation processes. R is anomalously
high in the general region of the Bushveld intrusion. Indeed the highest
value in the entire data set is found at the western edge of the Bushveld,
and suggests a more mafic crust, consistent with the characteristics of
the intrusion. Finally, there is a region of very low R ($<$1.7) at the
southern edge of the Kaapvaal craton, that may reflect processes active
during accretion at this margin. These observations, and particularly
the values of R, provide important constraints on the processes that
have formed and modified the composition of the ancient southern African
crust.
DE: 7200 SEISMOLOGY
DE: 7203 Body wave propagation
DE: 7205 Continental crust (1242)
DE: 7218 Lithosphere and upper mantle
SC: Seismology [S]
MN: 2003 Fall Meeting