Ship Collision Analysis of Structures

구조물의 선박충돌 해석

  • Received : 2005.05.19
  • Published : 2006.07.30

Abstract

A ship collision analysis by finite element method is performed considering the effects of mass and speed of ship and material and shape of structures to analyze the dynamic characteristics by ship collision. From this analysis, collision load-time history and damage of ship and structures are obtained. In this study, results of finite element analysis are compared with previous studies in USA, Japan and some countries of Europe. Dynamic characteristics are different from each other according to interaction between ship and structures. It seems that there are lots of factor to have effects on the ship-structures interaction. Because little information is available on the behavior of the inelastic deformation of materials and structures during the type of dynamic impacts associated with vessel impact, assumptions based on experience and sound engineering practice should be substituted. Therefore more researches on the interaction between ship and structures are required.

선박충돌에 따른 동적특성을 분석하기 위하여 선박의 질량 및 속도에 따른 변화와 구조물의 재료 및 형상에 따른 유한요소 해석을 수행하였다. 해석을 통하여 선박과 구조물의 손상과 충돌하중-시간이력을 얻었다. 본 연구에서는 유한요소해석의 결과를 미국과 일본 및 유럽의 일부 국가에서 연구된 자료와 비교하였다. 동적특성들은 선박과 구조물의 상호작용에 따라 서로 달랐다. 선박-구조물 상호작용에 대해 많은 요소들이 영향을 미치는 것으로 보인다. 선박의 충격과 관련된 동적충격이 가해지는 동안의 재료와 구조물에 있어서의 비탄성거동에 대해서는 극히 미비한 정도의 정보만이 가용하기 때문에, 경험과 올바른 공학적 판단에 기반한 가정들을 사용하여야 한다. 따라서 선박과 구조물의 상호작용에 대한 보다 많은 연구가 필요하다.

Keywords

References

  1. 도로교표준시방서(부록:하중저항계수설계편), 건설교통부, 1996.
  2. 이성로, 이계희, 이완수 "교량의 선박충돌 에너지 산정," 대한토목학회 논문집, 24권 5-A호, 2004(a). 9, pp.951-960
  3. 이성로, 이계희, 고재용, "방호공을 고려한 선박의 충돌하중", 한국전산구조공학회 봄학술발표회 논문집, 제17권, 1집, 2004(b), pp.193-200.
  4. 이계희, 이성로, 고재용, 유원진, "돌핀방호공의 선박충돌해석," 한국전산구조공학회 봄학술발표회 논문집, 제18권, 제1집, 한국전산구조공학회, 2005, pp.143-150.
  5. 複合材型緩衝工の設計要領(案), 本州四国連絡橋公團, 1981.
  6. Minorsky W., An Analysis of Ship Collisions with reference to Nuclear Power Plants. J. of Ship Res; 3(2): 1-4, 1959.
  7. Akita Y., Ando N., Fujita Y., and Kitamura K., Studies on Collision-Protective Structures in Nuclear Powered Ships, Nuclear Engineering Design, 19:365-401, 1972. https://doi.org/10.1016/0029-5493(72)90137-9
  8. Reardon P.C., Sprung J., Validation of Minorsky's Ship Collision Model and Use of the Model to Estimate the Probability of Damaging a Radioactive Material Transportation Cask during a Ship Collision, International Conference on Design and Methodologies for Collision and Grounding Protection of Ships, San Francisco, CA, 1996.
  9. Suzuki K., Ohtsubo H., and Sajit K.S., Evaluation of Absorbed Energy in Collision of Ships-the Effectiveness of Minorsky's Formula in Anti-Collision Structure, J. of the Society of Naval Architects of Japan;155:311-7, 1999.
  10. Pedersen PT, Zhang S. Absorbed energy in ship collisions and grounding-revising Minosky's empirical method. J Ship Res 44(2): 140-54, 2000.
  11. Pedersen P.T., Valsgard S., Oisen D., and Spangenberg S., Ship Impacts: Bow Collisions. International J. of Impact Engineering;13:163-57, 1993. https://doi.org/10.1016/0734-743X(93)90091-K
  12. Wang G, Ohtsubo H, Arita K. Inner dynamics of side collision to bridge piers. In: Gluver H, Olsen D, editors. Ship Collision Analysis. Rotterdam: Balkema. 1998.
  13. Chen D., Simplified Ship Collision Model, Master Thesis, Virginia Polytechnic Institute and State University, 2000.
  14. Ito H., Kondo K., Yoshimura N., and Kawathima N., A Simplified Method to Analyze the Sstrength of Double Hulled Structures in Collision, J. of the Society of Naval Architects of Japan;160:266-74, 1992.
  15. Amdahl J., Kavlie D., Johansen A., Tanker grounding resistance. Proceedings of the Sixth International Symposium on Practical Design of Ships and Mobil Units (PRADS'95), vol. 2, Seoul, pp, 1072-83, 1995.
  16. Kitamura O. Comparative study on collision resistance of side structure. International Conference on Design and Methodologies for Collision and Grounding Protection of Ships, San Francisco, 1996.
  17. Kuroiwa T. Numerical simulation of actual collision and grounding experiments. International Conference on Design and Methodologies for Collision and Grounding Protection of Ships, San Francisco, 1996.
  18. AASHTO, Guide Specification and Commentary for Vessel Collision Design of Highway Bridges, February, 1991.
  19. AASHTO, "AASHTO LRFD Bridge Design Specifications", 2004.
  20. ABAQUS analysis user's manual, HKS, 2003.
  21. EUROCODE 1, Basic of Design and Actions on Structures, European Standard, 2001.
  22. Larsen, O. Damgaard, "Ship Collosion with Bridges" The Interaction between Vessel Traffic and Bridge Structures, IABSE, 1993.