Title
Rupture Models of the 2016 Central Italy Earthquake Sequence from Joint Inversion of Strong-Motion and InSAR Datasets: Implications for Fault Behavior
Abstract
We derived the joint slip models of the three major events in the 2016 Central Italy earthquake sequence by inverting strong-motion and InSAR datasets. b-values and the historic earthquake scarp offset were also investigated after processing the earthquake catalog and near-field digital elevation model data. The three major events gradually released seismic moments of 1.6 x 10(18) Nm (M-w 6.1), 1.5 x 10(18) Nm (M-w 6.1), and 1.1 x 10(19) Nm (M-w 6.7), respectively. All the ruptures exhibit both updip and along-strike directivity, but differ in the along-strike propagation direction. The high b-value found beneath three mainshock hypocenters suggests possible fluid intrusions, explaining the cascading earthquake behavior. The cumulative surface scarp from past earthquakes shows rupturing features that are consistent with the 2016 earthquake sequence, suggesting a characteristic fault behavior. Under the assumption of the Gutenberg-Richter law, the slip budget closure test gives a maximum magnitude of M-w 6.7 and implies the seismic hazard from the largest event has been released in this sequence.
Year
DOI
Venue
2022
10.3390/rs14081819
REMOTE SENSING
Keywords
DocType
Volume
source inversion, rupture model, strong motion, InSAR, seismic hazard
Journal
14
Issue
ISSN
Citations 
8
2072-4292
0
PageRank 
References 
Authors
0.34
0
8
Name
Order
Citations
PageRank
Chuanhua Zhu100.34
Chisheng Wang200.34
Xinjian Shan301.35
Guohong Zhang403.38
Qingquan Li51181135.06
Jiasong Zhu611715.49
Bochen Zhang723.28
Peng Liu804.73