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Shear Resistance of Steel Diaphragm Walls Considering Flexibility of Slab

슬래브 다이아프램 효과를 고려한 강재지중연속벽의 전단 저항

  • Jeong, Gwan woo (Department of Civil Engineering, Kongju National University) ;
  • Lee, Jae Young (Department of Civil Engineering, Kongju National University/Gaurian. Ltd.) ;
  • Turja, Sudeep Das (Department of Civil Engineering, Kongju National University) ;
  • Han, Shin In (Gaurian. Ltd.) ;
  • Kim, Doo Kie (Department of Civil Engineering, Kongju National University)
  • 정관우 (공주대학교 건설환경공학과) ;
  • 이재영 ((주)가우리안, 공주대학교 건설환경공학과 ) ;
  • ;
  • 한신인 ((주)가우리안) ;
  • 김두기 (공주대학교 건설환경공학과)
  • Received : 2024.09.13
  • Accepted : 2024.11.14
  • Published : 2025.03.01

Abstract

This study explores the seismic performance of steel diaphragm walls in underground structures, a critical aspect of structural engineering. The study focuses on the effects of slab diaphragm flexibility, an often overlooked factor in seismic design. Traditional seismic designs often assume the slab acts as a rigid diaphragm, leading to inaccuracies in predicting how forces are distributed between the slab and walls during an earthquake. To address this, the authors model steel diaphragm walls using equivalent cross-sections and analyze shear forces in both rigid and semi-rigid diaphragm scenarios. Results show that semi-rigid diaphragms reduce the shear forces on the exterior walls while increasing them on the internal core, thereby affecting the overall stiffness of the structure. The study emphasizes the importance of considering diaphragm flexibility in seismic design to achieve more accurate predictions of structural behavior and improve construction efficiency.

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Acknowledgement

이 연구는 (주)포스코인터내셔널의 '대·중소기업상생협력기금 동반성장투자재원' 사업의 일환으로 지원을 받아 수행되었음