HR: 0830h
AN: S11E-0352 [PDF]
TI: Dead Sea Fault Structure From Seismic Pre-stack Migration
AU: Maercklin, N
EM: nils@gfz-potsdam.de
AF: GFZ Potsdam, Telegrafenberg, Potsdam, 14473
Germany
AU: Haberland, C
EM: haber@gfz-potsdam.de
AF: GFZ Potsdam, Telegrafenberg, Potsdam, 14473
Germany
AU: * Ryberg, T
EM: trond@gfz-potsdam.de
AF: GFZ Potsdam, Telegrafenberg, Potsdam, 14473
Germany
AU: Weber, M H
EM: mhw@gfz-potsdam.de
AF: GFZ Potsdam, Telegrafenberg, Potsdam, 14473
Germany
AB:
With controlled seismic sources and specifically designed receiver
arrays, we imaged a subvertical boundary between two lithological
blocks at the Arava Fault (AF) in the Middle East. The AF is the main
strike-slip fault of the Dead Sea Transform (DST) between the Dead Sea
and the Red Sea. Our imaging (migration) method is based on array
beamforming and coherency analysis of P-to-P scattered seismic phases.
We use a 1-D background velocity model and the direct P arrival as a
reference phase. A spread function describing energy dispersion at
localised point scatterers and synthetic calculations for large planar
structures provided resolution estimates of the images. We resolve a
7~km long steeply dipping reflector offset roughly 1~km from the
surface trace of the AF. The reflector can be imaged down to about 4~km
depth. Our results suggest that the AF consists of one dominant fault
strand in the uppermost crust.
Previous and ongoing studies in this region have shown a strong
contrast across the fault: low seismic velocities and electrical
resistivities west and high velocities and resistivities east of it. We
therefore suggest that the imaged reflector marks the contrast between
sedimentary fill in the west and precambrian rocks in the east. This
implies that the boundary between the two blocks, i.e. the actual fault
location, is about 1~km east of the surface trace of the AF.
DE: 7200 SEISMOLOGY
DE: 7203 Body wave propagation
DE: 8110 Continental tectonics--general (0905)
SC: Seismology [S]
MN: 2003 Fall Meeting