HR: 10:35h
AN: S32B-02 [Abstracts]
TI: Space Geodetic Constraints on the Structure and Properties of
Compliant Damage Zones Around Major Crustal Faults
AU: * Fialko, Y
EM: fialko@radar.ucsd.edu
AF: IGPP, SIO, UCSD, La Jolla, CA 92093
United States
AB:
Geologic and seismologic studies of large crustal faults indicate that
the fault interface that accommodates most of seismic slip is often
surrounded by heavily damaged material characterized by high crack
density and reduced seismic velocities. Recently such damage zones were imaged by space geodetic observations. I present
results of
Interferometric Synthetic Aperture Radar (InSAR) observations of
deformation across kilometer-wide compliant fault zones in response to nearby earthquakes. In particular, a number of faults
in the Eastern
California Shear Zone, including the Calico, Rodman, Pinto Mountain,
and Lenwood faults, were strained by both the 1992 Landers and the
1999 Hector Mine earthquakes. Analysis of deformation on these faults
indicates that the fault zone displacements depend on the magnitude,
but are independent of the sign of the co-seismic stress changes,
implying a linearly elastic deformation. Other examples include faults
adjacent to the North Anatolian fault (Turkey) that were strained by the 1999 Izmit
earthquake. Analytic and numerical (finite element) modeling
of the observed deformation suggests that the compliant fault zones
have width of 1-2 km, depth extent of several km (or greater), and
reductions in the effective shear modulus of about a factor of two.
Stacked interferometric data from the Eastern California Shear Zone
spannig a time period of more than 10 years reveal time-dependent
(post- or inter-seismic) deformation on some of the inferred compliant
fault zones. In particular, the fault zone associated with the Pinto
Mountain fault was subsiding over several years following the Landers
eartquake, with the total amplitude of subsidence comparable to the
amplitude of the co-seismically-induced uplift. This behavior may be
indicative of the poro-elastic deformation of the fluid-saturated fault
zone.
UR: http://sioviz.ucsd.edu/$\sim$fialko/res\_compliant.html
DE: 8010 Fractures and faults
DE: 8040 Remote sensing
DE: 8045 Role of fluids
DE: 7205 Continental crust (1242)
DE: 7209 Earthquake dynamics and mechanics
SC: Seismology [S]
MN: 2004 AGU Fall Meeting