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Shallow slip amplification and enhanced tsunami hazard unravelled by dynamic simulations of mega-thrust earthquakes

Authors :
Antonio Scala
Gaetano Festa
Stefan Nielsen
André Herrero
Fabrizio Romano
Stefano Lorito
Shane Murphy
Irene Molinari
Roberto Tonini
Elisa Trasatti
Murphy, S
Scala, A.
Herrero, A.
Lorito, S.
Festa, Gaetano
Trasatti, E.
Tonini, R.
Romano, F.
Molinari, I.
Nielsen, S.
Source :
Scientific Reports, Scientific Reports, 6
Publication Year :
2016
Publisher :
Springer Science and Business Media LLC, 2016.

Abstract

The 2011 Tohoku earthquake produced an unexpected large amount of shallow slip greatly contributing to the ensuing tsunami. How frequent are such events? How can they be efficiently modelled for tsunami hazard? Stochastic slip models, which can be computed rapidly, are used to explore the natural slip variability; however, they generally do not deal specifically with shallow slip features. We study the systematic depth-dependence of slip along a thrust fault with a number of 2D dynamic simulations using stochastic shear stress distributions and a geometry based on the cross section of the Tohoku fault. We obtain a probability density for the slip distribution, which varies both with depth, earthquake size and whether the rupture breaks the surface. We propose a method to modify stochastic slip distributions according to this dynamically-derived probability distribution. This method may be efficiently applied to produce large numbers of heterogeneous slip distributions for probabilistic tsunami hazard analysis. Using numerous M9 earthquake scenarios, we demonstrate that incorporating the dynamically-derived probability distribution does enhance the conditional probability of exceedance of maximum estimated tsunami wave heights along the Japanese coast. This technique for integrating dynamic features in stochastic models can be extended to any subduction zone and faulting style.

Details

ISSN :
20452322
Volume :
6
Database :
OpenAIRE
Journal :
Scientific Reports
Accession number :
edsair.doi.dedup.....9f91fa74974812eb200b3897515c9ce8
Full Text :
https://doi.org/10.1038/srep35007