Published January 1, 2024 | Version v1
Journal article Open

Multidisciplinary reconnaissance investigation covering structural, geotechnical, and architectural based damage to mid-rise residential buildings following the February 6th, 2023 Kahramanmaras,, Türkiye earthquake doublets (Mw 7.8, Mw 7.6)

  • 1. Istanbul Tech Univ ITU, Fac Architecture, Struct & Earthquake Engn Unit, TR-34437 Istanbul, Turkiye
  • 2. ITU, Fac Architecture, Dept Architecture, Taksim, Istanbul, Turkiye
  • 3. ITU Disaster Management Inst, Earthquake Engn Program, Sariyer 34469, Istanbul, Turkiye
  • 4. ITU, Fac Civil Engn, TR-34469 Sariyer, Istanbul, Turkiye

Description

Kahramanmaras, and its surroundings were devastated with major earthquake doublets of Mw = 7.8 Pazarc & imath;k and Mw = 7.6 Elbistan/Ekinoz & uuml; on February 6th, 2023. While a wide scatter of reinforced concrete (RC) structures experienced damage, mid-rise residential buildings constitute a large bulk with heavy damage or total collapse. Among many reasons, poor concrete strength and brittle fracture of rebars along with liquefaction-caused soil deformations contributed to building damage. This paper investigates structural, geotechnical, and architectural conditions of mid-rise RC residential buildings with heavy damage. The geotechnical component includes the investigation of liquefaction-caused settlement and subsidence of loose foundation soils. Architectural reconnaissance suggests that commonly encountered design mistakes observed in past earthquakes were repeated. Field investigation concludes that loose saturated silty and sandy soils exhibit liquefaction leading to permanent damage on the mid-rise buildings while tunnel-form code-designed RC buildings with seven-to-ten stories performed well.

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