TY - JOUR
T1 - The role of site effects on elevated seismic demands and corollary structural damage during the October 30, 2020, M7.0 Samos Island (Aegean Sea) Earthquake
AU - Cetin, Kemal Onder
AU - Papadimitriou, Achilleas G.
AU - Altun, Selim
AU - Pelekis, Panagiotis
AU - Unutmaz, Berna
AU - Rovithis, Emmanouil
AU - Akgun, Mustafa
AU - Klimis, Nikolaos
AU - Askan, Aysegul
AU - Ziotopoulou, Katerina
AU - Sezer, Alper
AU - Kincal, Cem
AU - Ilgac, Makbule
AU - Can, Gizem
AU - Cakir, Elife
AU - Soylemez, Berkan
AU - Al-Suhaily, Ahmed
AU - Elsaid, Alaa
AU - Zarzour, Moutasem
AU - Stewart, Jonathan
AU - Mylonakis, George
N1 - Publisher Copyright:
© 2021, The Author(s), under exclusive licence to Springer Nature B.V.
PY - 2022/11
Y1 - 2022/11
N2 - On October 30, 2020 14:51 (UTC), a moment magnitude (M) 7.0 (USGS, EMSC) earthquake occurred in the Aegean Sea. This paper presents the reconnaissance findings regarding the site effects on recorded strong ground motion intensities and duration, along with the resulting induced-structural damage in Izmir Bay and Samos Island, respectively. In all rock records, relatively high intensity long period rock spectral accelerations were observed in the mid to long period range of 0.5–1.5 s, which are attributed to the source, more specifically, to the slower rupture-mechanism of the event. These rich spectral intensities were further amplified by soil site effects and soil-superstructure resonance, leading to two to six times amplified overall responses and prolonged seismic shaking durations, more pronounced in Bayrakli and other Izmir Bay sites in Turkey. However, these amplified and prolonged excitations are still below design basis earthquake levels, which addresses the lack of proper structural design and construction deficiencies, as the underlying causes for the collapse to heavy damage performance of 795 buildings. On the other hand, although located only about 10 km from the rupture (22 km from the epicenter) and within the near fault zone, the town of Vathy on Samos Island (Greece) was rather lightly affected by the earthquake, with relatively few collapsed or heavily damaged buildings, partially attributed to the low height/low weight of structures in the area. However, a concentration of damage in low-rise buildings in Ano Vathy hill is considered indicative of a combination of coupled valley and topography effects on the strong motion. This event once again addressed the need to develop region-specific zonation and provisions, when more general code practices are proven to be inadequate to assess these extreme site effects.
AB - On October 30, 2020 14:51 (UTC), a moment magnitude (M) 7.0 (USGS, EMSC) earthquake occurred in the Aegean Sea. This paper presents the reconnaissance findings regarding the site effects on recorded strong ground motion intensities and duration, along with the resulting induced-structural damage in Izmir Bay and Samos Island, respectively. In all rock records, relatively high intensity long period rock spectral accelerations were observed in the mid to long period range of 0.5–1.5 s, which are attributed to the source, more specifically, to the slower rupture-mechanism of the event. These rich spectral intensities were further amplified by soil site effects and soil-superstructure resonance, leading to two to six times amplified overall responses and prolonged seismic shaking durations, more pronounced in Bayrakli and other Izmir Bay sites in Turkey. However, these amplified and prolonged excitations are still below design basis earthquake levels, which addresses the lack of proper structural design and construction deficiencies, as the underlying causes for the collapse to heavy damage performance of 795 buildings. On the other hand, although located only about 10 km from the rupture (22 km from the epicenter) and within the near fault zone, the town of Vathy on Samos Island (Greece) was rather lightly affected by the earthquake, with relatively few collapsed or heavily damaged buildings, partially attributed to the low height/low weight of structures in the area. However, a concentration of damage in low-rise buildings in Ano Vathy hill is considered indicative of a combination of coupled valley and topography effects on the strong motion. This event once again addressed the need to develop region-specific zonation and provisions, when more general code practices are proven to be inadequate to assess these extreme site effects.
KW - Amplifications
KW - Bayrakli
KW - Izmir Bay
KW - Reconnaissance
KW - Resonance
KW - Samos Island Earthquake
KW - Site effects
KW - Vathy
UR - https://www.scopus.com/pages/publications/85118687047
UR - https://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=performanshacettepe&SrcAuth=WosAPI&KeyUT=WOS:000716306800002&DestLinkType=FullRecord&DestApp=WOS_CPL
U2 - 10.1007/s10518-021-01265-z
DO - 10.1007/s10518-021-01265-z
M3 - Article
AN - SCOPUS:85118687047
SN - 1570-761X
VL - 20
SP - 7763
EP - 7792
JO - Bulletin of Earthquake Engineering
JF - Bulletin of Earthquake Engineering
IS - 14
ER -