Lateral Load Test for Various Aseismatic Methods of Pile Heads of Pier Type Quay Walls

잔교식 안벽의 말뚝 두부 내진 보강기법에 따른 수평재하실험

  • 이용재 (서울대학교 지구환경시스템공학부) ;
  • 한진태 (서울대학교 지구환경시스템공학부) ;
  • 장인성 (한국해양연구원 연안항만공학연구본부) ;
  • 김명모 (서울대학교 지구환경시스템공학부)
  • Published : 2003.09.01

Abstract

To construct pile-supported wharf structures that must support heavy horizontal loads, both vertical piles and batter piles are used. Batter piles are used to secure the bearing capacity against the horizontal loads. However, past case histories have shown that the heads of batter piles are vulnerable because these heads are subjected to excessive axial loads during earthquakes. Therefore, the aseismatic reinforcement method must be developed to prevent batter pile heads from breaking due to excessive seismic loads. Two different connecting methods of either inserting rubber or ball-bearing between batter pile head and upper plate were proposed to improve the aseismatic efficiency. Three large-scale pile head models(rubber type model, ball-bearing type model, and fixed type model) were manufactured and horizontal loading tests were peformed for these models. The results showed that the force-displacement relationship of the fixed type model was linear, but that of the rubber type model and the ball-bearing type model was bilinear. The increase in the horizontal displacement led to the increase in the horizontal stiffness of the rubber type models and the decrease in that of the ball-bearing type model. Compared with the values for fixed type model, the damping ratios of the rubber type model and the ball-bearing type model increased about 33~185% and 263~269%, respectively.

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