School Buildings Performance in 7.7 Mw and 7.6 Mw Catastrophic Earthquakes in Southeast of Turkey

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Date

2023

Authors

Öztürk, Murat
Arslan, Musa Hakan
Doğan, Gamze

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Elsevier

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Green Open Access

No

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Abstract

Although Turkey is located in one of the active earthquake belts of the world, the 7.7 and 7.6 magnitude earthquakes that occurred on February 6, 2023, 9 h apart, as rarely seen in the seismology literature, caused one of the biggest disasters in Turkey's history. In the earthquakes affecting an area of approximately 110,000 square kilometers, serious damage and collapse occurred in public buildings as well as other structures. There are more than 12,000 school buildings in the earthquake-affected area and this number constitutes an important part of public buildings. This article deals with the damage types and causes of various public school buildings that were exposed to the earthquakes in southern Turkey on February 6, 2023. The seismicity of the region and the effects of the 6 February earthquakes were discussed, and the response spectra of the different regions most affected by the earthquakes were compared with the design spectra defined in the codes. In addition, during the field investigation the damage types and causes of damage in school buildings were listed in sections and the observations made with performance based analytical studies were supported. From field reconnaissance, the importance of understanding the deficiencies of school buildings, which have social priority, in order to avoid tragic consequences in possible earthquakes has been revealed.

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Keywords

Seismic design, Damage, Structural safety, Reinforced concrete, School buildings, Reinforced-Concrete Buildings, Damage Distribution, Bingol Earthquake, August 17, Frames, Displacement, Failure, Masonry, Reexamination, Vulnerability

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OpenCitations Citation Count
25

Source

Journal of Building Engineering

Volume

79

Issue

Start Page

107810

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CrossRef : 18

Scopus : 77

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Mendeley Readers : 33

SCOPUS™ Citations

77

checked on Feb 03, 2026

Web of Science™ Citations

71

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