HR: 1340h
AN: S53B-1097 [Abstracts]
TI: Seismicity Precursors of M6.0 2004 Parkfield
and M7.0 1989 Loma Prieta Earthquakes
AU: * Korneev, V
EM: vakorneev@lbl.gov
AF: Lawrence Berkeley National Laboratory, 90-1116, 1 Cyclotron Rd, Berkeley, CA 94720
United States
AB:
The M6.0 2004 Parkfield and M7.0 1989 Loma Prieta strike-slip earthquakes on the San Andreas Fault (SAF) reveal seismicity
peaks in the surrounding crust several months prior to the main events. Earthquakes directly within the SAF zone were
intentionally excluded from the analysis because they manifest stress-release processes rather than stress accumulation. The
observed increase in seismicity is interpreted as a signature of the increasing stress level in the surrounding crust, while
the peak that occurs several months prior to the main event and the subsequent decrease in seismicity are attributed to
damage-induced softening processes. Furthermore, in both cases there is a distinctive zone of low seismic activity that
surrounds the epicentral region in the pre-event period. The increase of seismicity in the crust surrounding a potential
future event and the development of a low-seismicity epicentral zone can be regarded as promising precursory information that
could help signal the arrival of large earthquakes. The Gutenberg-Richter relationship (GRR) should allow extrapolation of
seismicity changes down to seismic noise level magnitudes. This hypothesis is verified by comparison of seismic noise at 80
Hz with the Parkfield M4 1993-1994 series, where noise peaks 5 months before the series to about twice the background level.
DE: 1207 Transient deformation (6924, 7230, 7240)
DE: 1217 Time variable gravity (7223, 7230)
DE: 1240 Satellite geodesy: results (6929, 7215, 7230, 7240)
DE: 1242 Seismic cycle related deformations (6924, 7209, 7223, 7230)
SC: Seismology [S]
MN: Fall Meeting 2005