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Ionospheric Plasma Response to M (w) 8.3 Chile Illapel Earthquake on September 16, 2015
(Springer, 2016)
The lithosphere and the atmosphere/ionosphere continuously exchange energy through various coupling mechanisms. In particular, the earth surface displacement caused by earthquakes, volcanoes and tsunamis can manifest as ...
A Study of the 2015 M w 8.3 Illapel Earthquake and Tsunami: Numerical and Analytical Approaches
(Birkhauser Verlag AG, 2016)
© 2016, Springer International Publishing.The September 16, 2015 Illapel, Chile earthquake triggered a large tsunami, causing both economic losses and fatalities. To study the coastal effects of this earthquake, and to ...
Damage assessment of the 2015 Mw 8.3 Illapel earthquake in the North-Central Chile
(Springer Netherlands, 2019)
© 2018, Springer Nature B.V.Destructive megathrust earthquakes, such as the 2015 Mw 8.3 Illapel event, frequently affect Chile. In this study, we assess the damage of the 2015 Illapel Earthquake in the Coquimbo Region ...
Time-Based Network Analysis Before and After the 8.3 Illapel Earthquake 2015 Chile
(Springer, 2016)
A complex network analysis of the seismic activity in the central zone of Chile is made, where each node corresponds to a location, where a seism occurs. The 8.3 Illapel earthquake (16 September 2015) is included in the ...
The nature of the subduction wedge in an erosive margin: Insights from the analysis of aftershocks of the 2015 Mw 8.3 Illapel earthquake beneath the Chilean Coastal Range
(Elsevier B.V., 2019)
© 2019 Elsevier B.V.Aftershocks of the 16 September 2015 M8.3 Illapel earthquake in central Chile were recorded for a period of one year by the Chile-Illapel Aftershock Experiment (CHILLAX) seismic network. An initial ...
Reconnaissance observations by cigiden after the 2015 Illapel, chile earthquake and tsunami
(2017)
This paper describes the reconnaissance work conducted by researchers from the National Research Center for Integrated Natural Disaster Management (CIGIDEN) between September 23 rd and October 2 nd in the area affected by ...
Coseismic slip and early afterslip of the 2015 Illapel, Chile, earthquake: Implications for frictional heterogeneity and coastal uplift
(American Geophysical Union, 2016)
Great subduction earthquakes are thought to rupture portions of the megathrust, where interseismic coupling is high and velocity-weakening frictional behavior is dominant, releasing elastic deformation accrued over a seismic ...
A study of the 2015 Mw 8.3 Illapel earthquake and tsunami: numerical and analytical approaches
(Springer, 2016)
The September 16, 2015 Illapel, Chile earthquake triggered a large tsunami, causing both economic losses and fatalities. To study the coastal effects of this earthquake, and to understand how such hazards might be accurately ...
Reconnaissance observations by CIGIDEN after the 2015 Illapel, Chile earthquake and tsunami
(National Information Centre of Earthquake Engineering, 2017)
This paper describes the reconnaissance work conducted by researchers from the National Research Center for Integrated Natural Disaster Management (CIGIDEN) between September 23rd and October 2nd in the area affected by ...
The Seismic Sequence of the 16 September 2015 M-w 8.3 Illapel, Chile, Earthquake
(Seismological Soc. Amer., 2016)
On 16 September 2015, the M-w 8.3 Illapel, Chile, earthquake broke a large area of the Coquimbo region of north-central Chile. This area was well surveyed by more than 15 high-rate Global Positioning System (GPS) instruments, ...