An approach for estimating the largest probable tsunami from far-field subduction zone earthquakes

Author:

Kalligeris Nikos,Montoya Luis,Ayca Aykut,Lynett Patrick

Publisher

Springer Science and Business Media LLC

Subject

Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Water Science and Technology

Reference74 articles.

1. Ayca A, Lynett P (2016) Effect of tides and source location on nearshore tsunami-induced currents. J Geophys Res-Oceans 121(12):8807–8820

2. Barberopoulou A, Borrero JC, Uslu B, Kalligeris N, Goltz JD, Synolakis CE, Wilson RI (2009) New maps of California to improve tsunami preparedness, invited feature article. EOS Trans AGU 90(16):137–138

3. Berryman K, Wallace L, Hayes G, Bird P, Wang K, Basili R, Lay T, Stein R, Sagiya T, Rubin C, Barrientos S, Kreemer C, Litchfield N, Stirling M, Gledhill K, Haller K, Costa C (2015) The GEM Faulted Earth Subduction Interface Characterization Project, Version 2.0, April 2015, GEM Faulted Earth Global Component. http://www.nexus.globalquakemodel.org/gem-faulted-earth/posts

4. Bilek SL, Lay T (1999) Rigidity variations with depth along interpolate megathrust faults in subduction zones. Nature 400:443–446

5. Bird, P (2003) An updated digital model of plate boundaries. Geochem Geophys 4(2)

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