Conductivity distribution and seismicity in the northeastern Japan Arc

Wideband magnetotelluric (MT) observation data were obtained from 91 sites along six transects in the central part of the Japan Arc. Here, a quasi-3D georesistivity distribution, in addition to other geophysical and geological parameters, is used to better understand seismicity in the region. We fou...

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Veröffentlicht in:Earth, planets and space planets and space, 2002-01, Vol.54 (5), p.629-636
Hauptverfasser: FUJINAWA, Yukio, KAWAKAMI, Noriaki, INOUE, Jun, ASCH, Theodore H, TAKASUGI, Shinji
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Sprache:eng
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Zusammenfassung:Wideband magnetotelluric (MT) observation data were obtained from 91 sites along six transects in the central part of the Japan Arc. Here, a quasi-3D georesistivity distribution, in addition to other geophysical and geological parameters, is used to better understand seismicity in the region. We found that high seismicity in the Central Mountain Range is due to relatively poor fluid saturation caused by volcanism. The high conductive fracture zone in the west of the Central Basin without big earthquakes is characterized by a low Poisson ratio. It is suggested that strains cannot be accumulated in those regions. The Miyagi-ken-hokubu region with a frequent occurrence of large earthquakes, is conductive—high Poisson ratio—high Vp suggesting that the zone is relatively fluid-rich and brittle.
ISSN:1343-8832
1880-5981
1880-5981
DOI:10.1186/BF03353051