HR: 09:15h
AN: S11C-06 [Abstracts]
TI: On the Role of Multiple Interactions in Remote Aftershock Triggering
AU: * ZIV, A
EM: zival@bgu.ac.il
AF: Dept. of Geoclogical and Environmental Sciences, Ben-Gurion University of the Negev, Beer-Sheva, 84105
Israel
AB:
Observed seismicity rate increase following large
earthquakes in sites that are located several source
lengths away from the mainshock centroid poses a major
problem. This is because the static stress change induced
by the mainshock in that region seems to be insignificant,
and the dynamic stress changes can only enhance the
seismicity during the passage of the seismic waves, but
not at later times. In quest for a viable triggering
mechanism for delayed aftershocks, I have developed a new
simple method for quantifying the degree to which the
triggering effect of each aftershock is locally more
important than the triggering effect of the mainshock.
Application of this method to the Landers and the Hector
Mine remote aftershock sequences shows that many of Landers
and Hector Mine delayed aftershocks in remote sites are
not directly triggered by their mainshock, but are instead
aftershocks of previous aftershocks. Finally, I have
examined the role of multiple stress transfers in
quasi-static earthquake simulations [Ziv, 2003], and found
that multiple static stress transfers from early
aftershocks can induce aftershocks in sites where the
stress perturbation due to the mainshock alone is
negligible. I suggest that delayed aftershocks, i.e.,
aftershocks occurring after the passage of the seismic
waves, are not directly triggered by the mainshock, but
are instead aftershocks of previous aftershocks.
DE: 7223 Earthquake interaction, forecasting, and prediction (1217, 1242)
DE: 7230 Seismicity and tectonics (1207, 1217, 1240, 1242)
SC: Seismology [S]
MN: Fall Meeting 2005