HR: 1340h
AN: S13A-1028 [Abstracts]
TI: A zone of anomalously low b-values within the subducting slab prior to the September 26, 2003
Tokachi-oki, Japan, earthquake (M=8.0)
AU: * Nakaya, S
EM: nakayas@gipwc.shinshu-u.ac.jp
AF: Shinshu University, 4-17-1 Wakasato, Nagano, 380-8553
Japan
AB:
The M=8.0 26 September 2003 Tokachi-oki earthquake occurred in the southern Kuril Trench southeast of Hokkaido, Japan, close
to the epicentre of the another very large earthquake in 1952 (M=8.1) [{\it Yamanaka and Kikuchi}, 2003]. The coseismic
rupture process during each of the two earthquakes has been analysed using seismic and geodetic data, for the 2003 event
[e.g., {\it Yamanaka and Kikuchi}, 2003; {\it Koketsu et al.}, 2004; {\it Yagi}, 2004], and tsunami data, for the 1952 event
[e.g., {\it Hirata et al.}, 2003], and the spatial distribution of asperities within the subduction zone has also been
estimated.
The b-value of an earthquake catalogue, defined as the slope of the Gutenberg-Richter frequency-magnitude relationship, log N
= a - bM, is typically found to be $\sim$1 in a variety of tectonic situations. However, several factors appear to influence
b locally [e.g., {\it Mogi}, 1962; {\it Scholz}, 1968; {\it Warren and Latham}, 1970; {\it Wyss}, 1973; {\it Urbancic et
al.}, 1992; {\it Wiemer and Wyss}, 1997; {\it Enescu and Ito}, 2002]. In the basis of the investigations of previous
researchers, observations of relatively low b-values may reflect locally elevated shear or effective stresses. It is widely
accepted that the bulk of the coseismic moment release during interplate earthquakes occurs recurrently near one or more
large asperities at which shear stress is concentrated by incremental subduction [e.g., {\it Tanioka and Ruff}, 1996; {\it
Nagai et al.}, 2001; {\it Iio et al.}, 2003; {\it Igarashi et al.}, 2003; {\it Uchida et al.}, 2003].
Our analysis of seismicity data from the subducting slab along the Kuril Trench reveals a zone of anomalously low b-values
near the hypocenter of the 26 September 2003 Tokachi-oki earthquake (M=8.0). The b-value time-series shows that b-values
decreased from initial values of ~0.8 to values as low as 0.4 during the three years prior to the mainshock. Here we show
that the anomalously low b-value in the subducting slab prior to the mainshock provide seismological evidence for high stress
concentrations associated with interseismic strain accumulation. Changes in b-value may provide a means of monitoring future
stress changes at shallow depths ($\sim$140 km) within the subducting slab.
DE: 7220 Oceanic crust
DE: 7230 Seismicity and seismotectonics
DE: 7200 SEISMOLOGY
DE: 7215 Earthquake parameters
SC: Seismology [S]
MN: 2004 AGU Fall Meeting