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A Study on the Connector of Floating Platform based on Concrete Structures

콘크리트 구조물 기반 플로팅 플랫폼 연결에 관한 연구

  • Boldbaatar, Tumenjargal (Division of Maritime Transportation System, Mokpo National Maritime University) ;
  • Yoon, Dae-Gwun (Division of Maritime Transportation System, Mokpo National Maritime University)
  • Received : 2013.01.22
  • Accepted : 2013.02.25
  • Published : 2013.02.28

Abstract

This study is about the connector of the floating platform in order to ensure safety due to various climate changes. The purpose of this study is to recommend the connector model of floating platform based on concrete structures after reviewing the literatures related in establishing floating structure in case of various climate changes in domestic coast. This study introduces the concept generation, existing model, detailed design and evaluation including current and future development of the technologies of marina floating platform connector based on concrete structures. The results from the research show that the analysed connector design (Rigid Pontoon Connector) provides a highly efficient and practical solution to facilitate connection of stable floating platform.

본 연구는 다양한 기상변화에 따른 안전을 확보하기 위한 해상에서의 플로팅 플랫폼의 연결에 대하여 연구하였다. 본 연구의 목적은 다양한 해상변화가 일어나는 연안역에 설치되는 플로팅 구조물에 관한 문헌 조사를 실시한 후, 콘크리트 구조물 연결하는 모델을 제시하는 것이다. 본 연구에서는 플로팅 구조의 개념, 기존의 모델, 설계적 평가를 포함한 콘크리트 구조물 기반 플로팅 플랫폼을 기술하였고, Rigid Pontoon Connector를 국내 연안역에 적합한 모델로 제안하였다. 연구의 결과로서, 리기드 폰툰 커넥터 디자인은 (Rigid Pontoon Connector) 안정적으로 플로팅 플랫폼의 연결을 구축할 수 있는 매우 효율적이고 실용적인 솔루션으로 분석되었다.

Keywords

References

  1. Armin, S.(1970), Securing of Marine Platforms in Rough Sea, Recent Patents on Engineering, p. 104.
  2. Aurele, V.(1931), Securing of Marine Platforms in Rough Sea, Recent Patents on Engineering, p. 105.
  3. Au-Yeong, K. H. and C. E. Tan(2005), Securing of Marine Platforms in Rough Sea, Recent Patents on Engineering, p. 106.
  4. Bargeco, A. G.(1985), Securing of Marine Platforms in Rough Sea, Recent Patents on Engineering, p. 104.
  5. Fernandez, Rodrigo Perez and Miguel Lamas Pardo(2012), Offshore Concrete Structures, Ocean Engineering, pp. 304-316.
  6. Gardner, E. C.(1965), Securing of Marine Platforms in Rough Sea, Recent Patents on Engineering, p. 105.
  7. Hann-Ocean(2013), http://www.hann-ocean.com/.
  8. Han, L.(2006), Securing of Marine Platforms in Rough Sea, Recent Patents on Engineering, pp. 103-112.
  9. Holand, I., O. Gudmestad and E. Jersin(2003), Design of Offshore Concrete Structures, Taylor & Francis Group, New York, p. 225.
  10. Hoodendoorn, E.(2011), Seasteading Engineering Report - Part 1, Assumptions & Methodology, Oakland (California), The seasteading Institute, White paper, p. 220.
  11. Ro-sik Park and Sang Jun Park(2001), A Study on the hydrodynamic characteristics of joing type floating structures, Vol.32, No.1, pp. 2-4.
  12. Willy, E. S.(1986), Securing of Marine Platforms in Rough Sea, Recent Patents on Engineering, p. 105.
  13. Zwagerman, J.(1988), Securing of Marine Platforms in Rough Sea, Recent Patents on Engineering, p. 105.