HR: 1330h
AN: T22B-0509 [PDF]
TI: Comparative study of two active faults in different stages of the earthquake cycle in central Japan
-The Atera fault (with 1586 Tensho earthquake) and the Nojima fault (with 1995 Kobe
earthquake)-
AU: * Matsuda, T
EM: mtatsuo@bosai.go.jp
AF: National Research Institute for Earth Science and Disaster Prevention, 3-1, Tennodai, Tsukuba,
305-0006
Japan
AU: Omura, K
EM: omura@bosai.go.jp
AF: National Research Institute for Earth Science and Disaster Prevention, 3-1, Tennodai, Tsukuba,
305-0006
Japan
AU: Ikeda, R
EM: ikeryu@ep.sci.hokudai.ac.jp
AF: Division of Earth and Planetary Sciences, Hokkaido University, Kita-10, Nishi-8, kita-ku, Sapporo,
060-0810
Japan
AB:
National Research Institute for Earth Science and Disaster Prevention (NIED) has been conducting _gFault zone drilling_h.
Fault zone drilling is especially important in understanding the structure, composition, and physical properties of an active
fault. In the Chubu district of central Japan, large active faults such as the Atotsugawa (with 1858 Hietsu earthquake) and
the Atera (with 1586 Tensho earthquake) faults exist. After the occurrence of the 1995 Kobe earthquake, it has been widely
recognized that direct measurements in fault zones by drilling. This time, we describe about the Atera fault and the Nojima
fault. Because, these two faults are similar in geological situation (mostly composed of granitic rocks), so it is easy to do
comparative study of drilling investigation.
The features of the Atera fault, which have been dislocated by the 1586 Tensho earthquake, are as follows. Total length is
about 70 km. That general trend is NW45 degree with a left-lateral strike slip. Slip rate is estimated as 3-5 m / 1000 years.
Seismicity is very low at present and lithologies around the fault are basically granitic rocks and rhyolite. Six boreholes
have been drilled from the depth of 400 m to 630 m. Four of these boreholes (Hatajiri, Fukuoka, Ueno and Kawaue) are located
on a line crossing in a direction perpendicular to the Atera fault. In the Kawaue well, mostly fractured and alternating
granitic rock continued from the surface to the bottom at 630 m. X-ray fluorescence analysis (XRF) is conducted to estimate
the amount of major chemical elements using the glass bead method for core samples. The amounts of H20+ are about from 0.5 to
2.5 weight percent. This fractured zone is also characterized by the logging data such as low resistivity, low P-wave
velocity, low density and high neutron porosity.
The 1995 Kobe (Hyogo-ken Nanbu) earthquake occurred along the NE-SW-trending Rokko-Awaji fault system, and the Nojima fault
appeared on the surface on Awaji Island when this rupture occurred. It is more than 10 km long with 1-2 m offset along the
Nojima fault. About one year after the earthquake, NIED drilled a borehole (the Hirabayashi NIED borehole) and penetrated the
Nojima fault. The Hirabayashi NIED borehole was drilled to a depth of 1838 m and recovered the drill core. The main types of
rock intersected by the borehole are granodiorite and cataclastic fault rocks. Three fracture zones were recognized in cores
at approximate depth of 1140 m, 1300 m and 1800 m. There is remarkable foliated blue-gray gouge at a depth of 1140 m. We
investigate chemical compositions by XRF analysis in the fracture zone. The amounts of H20+ are about from 1.0 to 15.0 weight
percent.
We investigate mineral assemblage in both drilling cores by X-ray powder diffraction analysis. From the results, we can_ft
recognize so difference between the two faults. But the amount of H2O+ is very different. In the Hirabayashi NIED core at a
depth of 1140 m, there is about ten times as much as the average of the Kawaue core. This is probably due to the greater
degree of wall-rock fracturing in the fracture zone. We suggest that this characteristic is associated with the fault
activity at the time of the 1995 Kobe earthquake and the nature of fluid-rock interactions in the fracture zone.
DE: 8010 Fractures and faults
DE: 8015 Local crustal structure
DE: 8045 Role of fluids
SC: Tectonophysics [T]
MN: 2003 Fall Meeting