HR: 0800h
AN: S21A-0258 [Abstracts]
TI: Renewal of K-NET (National Strong-motion Observation Network of Japan)
AU: * Kunugi, T
EM: kunugi@bosai.go.jp
AF: National Research Institute for Earth Science and Disaster Prevention, Tennodai 3-1, Tsukuba, 305-0006
Japan
AU: Fujiwara, H
EM: fujiwara@bosai.go.jp
AF: National Research Institute for Earth Science and Disaster Prevention, Tennodai 3-1, Tsukuba, 305-0006
Japan
AU: Aoi, S
EM: aoi@bosai.go.jp
AF: National Research Institute for Earth Science and Disaster Prevention, Tennodai 3-1, Tsukuba, 305-0006
Japan
AU: Adachi, S
EM: adachi@bosai.go.jp
AF: National Research Institute for Earth Science and Disaster Prevention, Tennodai 3-1, Tsukuba, 305-0006
Japan
AB:
The National Research Institute for Earth Science and Disaster Prevention (NIED) operates K-NET (Kyoshin Network), the
national strong-motion observation network, which evenly covers the whole of Japan at intervals of 25 km on average. K-NET
was constructed after the Hyogoken-Nambu (Kobe) earthquake in January 1995, and began operation in June 1996. Thus, eight
years have passed since K-NET started, and large amounts of strong-motion records have been obtained.
As technology has progressed and new technologies have become available, NIED has developed a new K-NET with improved
functionality. New seismographs have been installed at 443 observatories mainly in southwestern Japan where there is a risk
of strong-motion due to the Nankai and Tonankai earthquakes. The new system went into operation in June 2004, although
seismographs have still to be replaced in other areas.
The new seismograph (K-NET02) consists of a sensor module, a measurement module and a communication module. A UPS, a GPS
antenna and a dial-up router are also installed together with a K-NET02. A triaxial accelerometer, FBA-ES-DECK (Kinemetrics
Inc.) is built into the sensor module. The measurement module functions as a conventional strong-motion seismograph for
high-precision observation. The communication module can perform sophisticated processes, such as calculation of the Japan
Meteorological Agency (JMA) seismic intensity, continuous recording of data and near real-time data transmission. It connects
to the Data Management Center (DMC) using an ISDN line. In case of a power failure, the measurement module can control the
power supply to the router and the communication module to conserve battery power. One of the main features of K-NET02 is a
function for processing JMA seismic intensity. K-NET02 functions as a proper seismic intensity meter that complies with the
official requirements of JMA, although the old strong-motion seismograph (K-NET95) does not calculate seismic intensity.
Another feature is near real-time data transmission. When a K-NET02 detects a strong-motion, it can automatically connect to
the DMC in 2 to 5 seconds and then transmits seismic data. Furthermore, the full-scale is improved from 2000 gals to 4000
gals and the dynamic range of AD conversion is more than 132 dB.
Strong-motion records of the new K-NET are available at:
http://www.kyoshin.bosai.go.jp/
UR: http://www.kyoshin.bosai.go.jp/
DE: 9320 Asia
DE: 7223 Seismic hazard assessment and prediction
DE: 7294 Instruments and techniques
DE: 7212 Earthquake ground motions and engineering
SC: Seismology [S]
MN: 2004 AGU Fall Meeting