Magnetic Signals at Easter Island During the 2010 and 2015 Chilean Tsunamis Compared with Numerical Models
Author:
Funder
Comisión Nacional de Investigación Científica y Tecnológica
Publisher
Springer Science and Business Media LLC
Subject
Geochemistry and Petrology,Geophysics
Link
http://link.springer.com/content/pdf/10.1007/s00024-018-2047-y.pdf
Reference45 articles.
1. Aránguiz, R., González, G., González, J., Catalán, P. A., Cienfuegos, R., Yagi, Y., et al. (2017). The 16 September 2015 Chile Tsunami from the post-tsunami survey and numerical modeling perspectives, Pageoph Topical Volumes. In C. Braitenberg & A. B. Rabinovich (Eds.), The Chile-2015 (Illapel) earthquake and tsunami (pp. 219–234). Cham: Birkhüuser.
2. Bellotti, G., Briganti, R., & Beltrami, G. M. (2012). The combined role of bay and shelf modes in tsunami amplification along the coast. Journal of Geophysical Research: Oceans. https://doi.org/10.1029/2012JC008061 .
3. Benavente, R., Cummins, P. R., & Dettmer, J. (2016). Rapid automated W-phase slip inversion for the Illapel great earthquake (2015, Mw = 8.3). Geophysical Research Letters, 43, 1910–1917. https://doi.org/10.1002/2015GL067418 .
4. Calisto, I., Miller, M., & Constanzo, I. (2016). Comparison between tsunami signals generated by different source models and the observed data of the Illapel 2015 Earthquake. Pure Applied Geophysics, 173(4), 1051–1061. https://doi.org/10.1007/s00024-016-1253-8 .
5. Calisto, I., Ortega, M., & Miller, M. (2015). Observed and modeled tsunami signals compared by using different rupture models of the April 1, 2014, Iquique earthquake. National Hazards, 79(1), 397–408. https://doi.org/10.1007/s11069-015-1848-x .
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