HR: 09:30h
AN: S21D-06 [Abstracts]
TI: Changes of seismic velocity around the Karadere-Duzce branch of the north Anatolian fault from coda
waves generated by repeating earthquakes
AU: Ben-Zion, Y
EM: benzion@usc.edu
AF: Department of Earth Sciences, University of Southern California, 3651 Trousdale Pkwy, Los Angeles, CA
90089-0740
United States
AU: * Peng, Z
EM: zpeng@ess.ucla.edu
AF: Department of Earth and Space Sciences, University of California, Los Angeles, 595 Charles E Young Drive
East, Los Angeles, CA 90095-1567
United States
AB:
We analyze temporal variations of seismic velocity along the Karadere-Duzce branch of the north Anatolian fault from
repeating earthquakes in aftershocks of the 1999 Mw7.4 Izmit and Mw7.1 Duzce earthquakes. We identified about 30 sets of
repeating earthquakes, each containing 5-16 events. Relocation of events in each set suggests that most rupture approximately
the same fault patch at different times. We use a sliding cross-correlation window technique (Niu et al., 2003) to measure
travel time difference and evolving decorrelation in waveforms generated by each set of repeating events relative to the
waveform of the first event. We find systematic changes between the early S coda waves generated by events before the Duzce
mainshock and those generated after it. The largest co-seismic velocity change is observed at station VO that was deployed
inside the rupture zone of the Izmit earthquake and recorded up to 1g ground acceleration during the Duzce mainshock. The
amplitude of delay times seems to follow a logarithmic decay after the Duzce mainshock, suggesting a possible recovery from
the mainshock damage. The observations are likely to reflect changes of material properties in the shallow structure of the
fault zone. Updated results will be presented in the meeting.
DE: 7200 SEISMOLOGY
DE: 7203 Body wave propagation
DE: 7205 Continental crust (1242)
DE: 1242 Seismic deformations (7205)
SC: Seismology [S]
MN: 2004 AGU Fall Meeting