R/C 교각의 비선형성을 고려한 교량시스템의 2방향 지진거동분석

Dynamic Behavior Analysis of a Bridge Considering Nonlinearity of R/C Piers under Bi-Directional Seismic Excitations

  • 김상효 (연세대학교 사회환경·건축공학부) ;
  • 마호성 (호서대학교 건축토목학부 토목전공) ;
  • 이상우 (연세대학교 토목공학과) ;
  • 강정운 (만영엔지니어링 사원)
  • 발행 : 2001.04.01

초록

An analysis procedure of 2-dimensional bridge dynamics has been developed by using force-deformation model, which simulates the pier motion under biaxial bending due to the bi-directional input seismic excitations. A three-dimensional mechanical model is utilized, which can consider the other major phenomena such as pounding, rotation of the superstructure, abutment stiffness degradation, and motions of the foundation motions. The bi-directional dynamic behaviors of the bridge are then examined by investigating the relative displacements of each oscillator to the ground. It is found that the nonlinearity of the pier due to biaxial bending affects the pier motions, but the global bridge behaviors are greatly governed by the pounding phenomena and stiffness degradation of the abutment-backfill system. Especially, the relative displacement of the abutment system (A2) with movable supports to the ground is increased about 30% due to the abutment stiffness degradation.

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