Estimation of slip rate and fault displacement during shallow earthquake rupture in the Nankai subduction zone
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Title
Estimation of slip rate and fault displacement during shallow earthquake rupture in the Nankai subduction zone
Authors
Keywords
Nankai Trough, Shallow part of megathrust, Vitrinite maturation, Fault slip parameters
Journal
EARTH PLANETS AND SPACE
Volume 67, Issue 1, Pages 39
Publisher
Springer Nature
Online
2015-03-13
DOI
10.1186/s40623-015-0208-0
References
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Related references
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- Low Coseismic Shear Stress on the Tohoku-Oki Megathrust Determined from Laboratory Experiments
- (2013) K. Ujiie et al. SCIENCE
- Thermal considerations in inferring frictional heating from vitrinite reflectance and implications for shallow coseismic slip within the Nankai Subduction Zone
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- Coal maturation by frictional heat during rapid fault slip
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- Seismic slip propagation to the updip end of plate boundary subduction interface faults: Vitrinite reflectance geothermometry on Integrated Ocean Drilling Program NanTro SEIZE cores
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- Coseismic frictional heating and fluid-rock interaction in a slip zone within a shallow accretionary prism and implications for earthquake slip behavior
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- Shallow Dynamic Overshoot and Energetic Deep Rupture in the 2011 Mw 9.0 Tohoku-Oki Earthquake
- (2011) S. Ide et al. SCIENCE
- High-velocity frictional properties of clay-rich fault gouge in a megasplay fault zone, Nankai subduction zone
- (2010) Kohtaro Ujiie et al. GEOPHYSICAL RESEARCH LETTERS
- Low-frequency tremors associated with reverse faults in a shallow accretionary prism
- (2009) Koichiro Obana et al. EARTH AND PLANETARY SCIENCE LETTERS
- Estimation of temperature rise in a shallow slip zone of the megasplay fault in the Nankai Trough
- (2009) Tetsuro Hirono et al. TECTONOPHYSICS
- Estimated dynamic shear stress and frictional heat during the 1999 Taiwan Chi-Chi earthquake: A chemical kinetics approach with isothermal heating experiments
- (2009) Yohei Hamada et al. TECTONOPHYSICS
- Coseismic fluid–rock interactions at high temperatures in the Chelungpu fault
- (2008) Tsuyoshi Ishikawa et al. Nature Geoscience
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