Anatomy of October 30, 2020, Samos (Sisam)-Kuqadasi earthquake (MW 6.92) and its influence on Aegean earthquake hazard
Erişim
info:eu-repo/semantics/openAccessTarih
2021Erişim
info:eu-repo/semantics/openAccessÜst veri
Tüm öğe kaydını gösterÖzet
We investigated rupture geometry, size, and slip distribution of October 30, 2020, Samos (Sisam)-Kusadasi earthquake combining seismographs, GPS measurements, and SAR analysis. Right after the earthquake, we measured 13 additional campaign-based GPS sites to intensify the available GPS network consisting of 10 continuous stations. We combined all available seismographs to have the best possible accuracy for mainshock and aftershock hypocenter locations. We compiled all available seismic profiles and integrated them using high-resolution bathymetry to map seismically active faults. The mainshock hypocenter is located at 37.913 +/- 0.009 N degrees and 26.768 +/- 0.017 E degrees and a depth of 12.3 +/- 1.7 km. Our fault plane solution shows that the mainshock has almost a pure normal-type mechanism. Based on accurate aftershock locations as well as InSAR results, the mainshock rupture is subsegmented with two north-dipping rupture planes. The rupture probably starts on a low angle plane generating 1.1 m average slip between the depths of 9-14 km. It merges to a steep plane at 9 km depth where it generates 1.2 m average slip extending towards the surface near the shoreline of Samos (Sisam) Island. Total size of the two rupture planes and their average slips determine that the magnitude of the mainshock is (M-w) 6.92 +/- 0.02. The mainshock has substantially increased Coulomb stress on several fault segments near the towns Kusadasa and Soke, which have the potentials to generate strong earthquakes. It also nonnegligibly increased Coulomb stress on several fault segments south of Izmir giving a warning for increased earthquake hazard in this highly inhabited area.
Cilt
30Sayı
4Koleksiyonlar
İlgili Öğeler
Başlık, yazar, küratör ve konuya göre gösterilen ilgili öğeler.
-
Empirical relations among the parameters associated with earthquake faulting mechanisms for Iranian earthquakes
[Belirlenecek] (Sigma Journal of Engineering and Natural Sciences, 2018)[Abstract Not Available] -
Analysis of ionospheric TEC anomalies for global earthquakes during 2000-2019 with respect to earthquake magnitude (Mw >= 6.0)
Ulukavak, Mustafa; Yalcinkaya, Mualla; Kayikci, Emine Tanir; Öztürk, Serkan; Kandemir, Raif; Karsli, Hakan (Pergamon-Elsevier Science Ltd, 2020)In this work, a relationship between ionospheric TEC anomalies and different earthquake magnitude groups before the main shocks was investigated. For this purpose, 2942 global earthquakes with Mw >= 6 from 2000 to 2019 and ... -
A comparison of alternative curve fitting techniques for different earthquake fault parameters of Iranian earthquakes
Öztürk, Serkan; Ghassemi, Mohammad R.; Sari, Mahmut (Univ Nacional De Colombia, 2020)In this study, we tried to estimate the optimum linear equations among the parameters associated with different earthquake fault mechanisms for Iranian earthquakes. For this purpose, we tested different curve fitting methods ...