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AutoBATS and 3D MUSIC: New Approaches to Imaging Earthquake Rupture Behaviors - Pei-Ru Jian

AutoBATS and 3D MUSIC: New Approaches to Imaging Earthquake Rupture Behaviors (eBook)

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2021 | 1st ed. 2021
X, 101 Seiten
Springer Singapore (Verlag)
978-981-16-5584-5 (ISBN)
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This book presents the kinematic earthquake rupture studies from moment tenor to spatial-temporal rupture imaging. For real-time seismic hazard monitoring, the new stable automatic moment tensor (AutoBATS) algorithm is developed and implemented for the real-time MT reports by the Taiwan Earthquake Science Information System (TESIS). In order to understand the rupture behavior of the 2013 Mw 8.3 Okhotsk deep earthquake sequence, the 3D MUltiple SIgnal Classification Back Projection (MUSIC BP) with P and pP phases is applied. The combined P- and pP-wave BP imaging of the mainshock shows two stages of anti-parallel ruptures along two depths separating for about 10-15 km. Unusual super-shear ruptures are observed through the 3D BP images of two Mw 6.7 aftershocks. In last two chapters, the 3D BP imaging reveals similar rupture properties of two shallow catastrophic earthquakes (Mw=6.4) in southwestern Taiwan. Both the 2010 Jiashian and 2016 Meinong earthquakes ruptured westward with similar velocity of -2.5 km/s along a NE-ward shallow dipping blind fault. The rupture similarities of the doublet suggest two parallel elongate asperities along the causative fault. After several decades of seismic quiescence, the 2010 Jiashian event initiated the rupture at the deeper asperity and triggered the shallower asperity which caused catastrophes six years later.



Dr. Pei-Ru Jian received her Ph.D. In June 2018 from the National Taiwan University. She gained the Honorary Membership of The Phi Tau Phi Scholastic Honor Society of the Republic of China and the Dean's Award of College of Science with her graduation. She also has gained several outstanding student Paper Awards for her prominent research work during her Ph.D. study. Dr. Pei-Ru Jian now works as Postdoctoral Scholar at the Institute of Earth Sciences, Academia Sinica, Taiwan. Her research focuses on the earthquake rupture imaging, seismotectonics, and seismic attenuation structures.
This book presents the kinematic earthquake rupture studies from moment tenor to spatial-temporal rupture imaging. For real-time seismic hazard monitoring, the new stable automatic moment tensor (AutoBATS) algorithm is developed and implemented for the real-time MT reports by the Taiwan Earthquake Science Information System (TESIS). In order to understand the rupture behavior of the 2013 Mw 8.3 Okhotsk deep earthquake sequence, the 3D MUltiple SIgnal Classification Back Projection (MUSIC BP) with P and pP phases is applied. The combined P- and pP-wave BP imaging of the mainshock shows two stages of anti-parallel ruptures along two depths separating for about 10~15 km. Unusual super-shear ruptures are observed through the 3D BP images of two Mw 6.7 aftershocks. In last two chapters, the 3D BP imaging reveals similar rupture properties of two shallow catastrophic earthquakes (Mw=6.4) in southwestern Taiwan. Both the 2010 Jiashian and 2016 Meinong earthquakes ruptured westward with similar velocity of ~2.5 km/s along a NE-ward shallow dipping blind fault. The rupture similarities of the doublet suggest two parallel elongate asperities along the causative fault. After several decades of seismic quiescence, the 2010 Jiashian event initiated the rupture at the deeper asperity and triggered the shallower asperity which caused catastrophes six years later.
Erscheint lt. Verlag 27.9.2021
Reihe/Serie Springer Theses
Springer Theses
Zusatzinfo X, 101 p. 48 illus., 45 illus. in color.
Sprache englisch
Themenwelt Naturwissenschaften Biologie Ökologie / Naturschutz
Naturwissenschaften Geowissenschaften Geologie
Naturwissenschaften Geowissenschaften Geophysik
Naturwissenschaften Physik / Astronomie
Schlagworte 3D Back projection • AutoBATS • Automatic MT inversion • Doublet earthquake • Earthquake rupture imaging • Jiashian earthquake • Meinong earthquake • Moment tensor inversion • music • Okhotsk deep earthquake
ISBN-10 981-16-5584-7 / 9811655847
ISBN-13 978-981-16-5584-5 / 9789811655845
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