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  Effect of Shallow Slip Amplification Uncertainty on Probabilistic Tsunami Hazard Analysis in Subduction Zones: Use of Long-Term Balanced Stochastic Slip Models

Scala, A., Lorito, S., Romano, F., Murphy, S., Selva, J., Basili, R., Babeyko, A. Y., Herrero, A., Hoechner, A., Løvholt, F., Maesano, F. E., Perfetti, P., Tiberti, M. M., Tonini, R., Volpe, M., Davies, G., Festa, G., Power, W., Piatanesi, A., Cirella, A. (2020): Effect of Shallow Slip Amplification Uncertainty on Probabilistic Tsunami Hazard Analysis in Subduction Zones: Use of Long-Term Balanced Stochastic Slip Models. - Pure and Applied Geophysics, 177, 3, 1497-1520.
https://doi.org/10.1007/s00024-019-02260-x

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 Creators:
Scala, A.1, Author
Lorito, S.1, Author
Romano, F.1, Author
Murphy, S.1, Author
Selva, J.1, Author
Basili, R.1, Author
Babeyko, A. Y.2, Author              
Herrero, A.1, Author
Hoechner, A.2, Author              
Løvholt, F.1, Author
Maesano, F. E.1, Author
Perfetti, P.1, Author
Tiberti, M. M.1, Author
Tonini, R.1, Author
Volpe, M.1, Author
Davies, G.1, Author
Festa, G.1, Author
Power, W.1, Author
Piatanesi, A.1, Author
Cirella, A.1, Author
Affiliations:
1External Organizations, ou_persistent22              
22.5 Geodynamic Modelling, 2.0 Geophysics, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146031              

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 Abstract: The complexity of coseismic slip distributions influences the tsunami hazard posed by local and, to a certain extent, distant tsunami sources. Large slip concentrated in shallow patches was observed in recent tsunamigenic earthquakes, possibly due to dynamic amplification near the free surface, variable frictional conditions or other factors. We propose a method for incorporating enhanced shallow slip for subduction earthquakes while preventing systematic slip excess at shallow depths over one or more seismic cycles. The method uses the classic k−2 stochastic slip distributions, augmented by shallow slip amplification. It is necessary for deep events with lower slip to occur more often than shallow ones with amplified slip to balance the long-term cumulative slip. We evaluate the impact of this approach on tsunami hazard in the central and eastern Mediterranean Sea adopting a realistic 3D geometry for three subduction zones, by using it to model ~ 150,000 earthquakes with Mw from 6.0 to 9.0. We combine earthquake rates, depth-dependent slip distributions, tsunami modeling, and epistemic uncertainty through an ensemble modeling technique. We found that the mean hazard curves obtained with our method show enhanced probabilities for larger inundation heights as compared to the curves derived from depth-independent slip distributions. Our approach is completely general and can be applied to any subduction zone in the world.

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 Dates: 2019-06-282020
 Publication Status: Finally published
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 Identifiers: DOI: 10.1007/s00024-019-02260-x
GFZPOF: p3 PT4 Natural Hazards
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Title: Pure and Applied Geophysics
Source Genre: Journal, SCI, Scopus
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Pages: - Volume / Issue: 177 (3) Sequence Number: - Start / End Page: 1497 - 1520 Identifier: CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals413
Publisher: Springer