HR: 0800h
AN: S11B-1020 [Abstracts]
TI: Constraining Relative Source Locations with Coda Wave Interferometry:
Theory and Application to Earthquake Doublets in the Hayward Fault,
California
AU: Vrijlandt, M
EM: mvrijlandt@gmail.com
AF: Center for Wave Phenomena
Colorado School of mines, 1500 Illinois Street, Golden, CO 80401-1887
United States
AU: * Snieder, R
EM: rsnieder@mines.edu
AF: Center for Wave Phenomena
Colorado School of mines, 1500 Illinois Street, Golden, CO 80401-1887
United States
AB:
The relative location of seismic sources is of importance for the
location of aftershocks on a fault, for the positioning of sources in
repeat seismic surveys, and for monitoring induced seismicity. In this
paper we show how the seismic coda can be used to infer a measure of
the relative source location of two identical seismic sources from the
correlation of the waveforms recorded at a single receiver. The theory
is applicable to an explosive source in an acoustic or elastic medium,
and for a point force or double couple in an elastic medium. For an
explosive source the relative source location is constrained to be
located on a sphere, while for a point force and a double couple the
relative source location can be constrained to be located on an
ellipsoid whose symmetry axis is determined by the point force or
double couple. We validate the theory with synthetic seismograms, and
apply the theory to earthquake doublets on the Hayward fault,
California. The distance between events obtained from the coda waves
agrees with the distance obtained from the double-difference method.
DE: 7215 Earthquake parameters
SC: Seismology [S]
MN: 2004 AGU Fall Meeting