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Design of Pull Box Members on the Landing Pier Using Finite Element Analysis of a Steel Plate

강재 플레이트 유한요소해석을 이용한 잔교 상부의 풀 박스 부재의 선정

  • Kim, Sungwon (Coastal Development Research Center, Korea Institute of Ocean Science & Technology) ;
  • Hong, Hyemin (Coastal Development Research Center, Korea Institute of Ocean Science & Technology) ;
  • Han, Taek Hee (Coastal Development Research Center, Korea Institute of Ocean Science & Technology) ;
  • Seo, Seung Nam (Task Force for Construction of RV ISABU Support Facility, Korea Institute of Ocean Science & Technology)
  • 김성원 (한국해양과학기술원, 연안개발연구센터) ;
  • 홍혜민 (한국해양과학기술원, 연안개발연구센터) ;
  • 한택희 (한국해양과학기술원, 연안개발연구센터) ;
  • 서승남 (한국해양과학기술원, 이사부호기반시설건설단)
  • Received : 2017.06.26
  • Accepted : 2017.07.24
  • Published : 2017.07.31

Abstract

In this study, pull box members were designed by finite element analysis of a steel plate covering a pull box to secure its safety on the landing pier dedicated to the large research survey ship. It was assumed that the maximum load is due to the 250 tonf class crane used for unloading work when the working environment in the upper part of the landing pier was considered. The safety of the pull box was evaluated by the comparison between the yield strength of the steel plate and the result of stress analysis on the steel plate due to the crane load. It was found that the stress at the plate from the crane load exceeded the yield strength of the steel(205MPa) when the upper part of the pull box was protected by a $1950{\times}1950mm$ steel plate cover. In order to compensate for this, a concrete filled steel tube(CFT) column with a diameter of 150 mm and a steel thickness of 10 mm was reinforced at the center of the plate, and the finite element analysis was carried out. However, the maximum stress at the steel plate was higher than the yield strength of the steel in some load cases so that it was tried to find appropriate thickness of the steel plate and diameter of the CFT columns. Finally, the analysis results showed that the safety of the pull box was secured when the thickness of the steel plate and the diameter of the CFT column were increased to 30mm and 180mm, respectively.

Keywords

Acknowledgement

Grant : 폐기물 해상 최종처리 기술개발

Supported by : 한국해양과학기술진흥원