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LNG선 화물격납용기 Invar strake edge 이음부 형상 개선에 관한 연구

A Study on Application of Corrugated Invar Strake Edge in the Membrane Cargo Containment of LNG Carriers

  • 한종만 (대우조선해양 산업기술연구소)
  • Han, Jong-Man (Industrial R&D Institute, Daewoo Shipbuilding & Marine Engineering Co. Ltd.)
  • 발행 : 2009.10.31

초록

The membrane of the LNG carriers consists of thin strips of INVAR(Fe-36%Ni) steel plates, and the junction between INVAR strips is fabricated by welding. Thousands of the raised edge joints, regularly spaced, are located around all the side of the tank corner near the transverse bulkhead, and TIG welding is manually made on the top of the raised edges. Since the thickness of all the laminated edge plies is extremely thin and the weld position is under a bad accessibility, highly skilled workers are required to perform welding relatively for a long welding time. An alternative scheme for the corner membrane fabrication is proposed in the study to improve the installation workability and thus productivity. The scheme replaces the welded edges with the preformed corrugation ones. A panel strip with regularly-spaced corrugations is installed at the corner instead of the individual flat strip of which edge is vertically raised to be welded with the adjacent strip. In the study, a series of the evaluation on the corrugated edge members was performed to assess the applicability to the real LNG carrier fabrication. Opening displacement at the raised edge was experimentally examined. Elastic stiffness regressed from the displacement was nearly same in both edge types. Edge displacement and local stresses were calculated under hydrostatic pressure and temperature change due to liquefied cargo. Fatigue test was performed on both corrugated and welded edge specimens consisting of two or five plies of invar strips. Fatigue strength of the corrugated specimens was not less than that of the welded specimens.

키워드

참고문헌

  1. Jong Man Han, Yong Sup Han: Review on Welding Technology and Welded Joint Strength of GT Membrane Type LNG Carrier, Journal of KWS, 11-4 (1993), 24-35 (in Korean)
  2. 대한민국특허청: 엘엔지선의 화물창 설치용 엔드스트레이크, 등록특허 제 10-0647925, 2006 (in Korean)
  3. JSME : Standard Method of Statistical Fatigue Testing, JSME S002-1981 (in Japanese)
  4. Myoung Soo Han, Jong Man Han, Yong Sup Han: A Study on the Fatigue Strength and Allowable Stress of INVAR(Fe-36%Ni) Steel Lap Joint Applied to Cargo Containment of LNG Carrier, Journal of KWS, 12-1 (1994), 102-115 (in Korean)