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Strength Analysis for the Plate System of the Mark III Cargo Containment

Mark III 방열 판 구조물의 파손 강도 평가에 관한 연구

  • Jeong, Han-Koo (Department of Naval Architecture, Kunsan National Univ.) ;
  • Yang, Young-Soon (Department of Naval Architecture and Ocean Engineering, RIMSE, Seoul National Univ.)
  • 정한구 (군산대학교 조선공학과) ;
  • 양영순 (서울대학교 조선해양공학과, 해양시스템공학연구소)
  • Received : 2014.11.03
  • Accepted : 2014.12.10
  • Published : 2014.12.31

Abstract

Mark III CCS plate is considered in this paper to perform its strength assessment. Mark III CCS plate is designed and constructed by stacking various non-metallic engineering materials such as plywood, triplex and reinforced PU foam that are supported by series of mastic upon inner steel hull structure. From the viewpoint of structural analysis, this plated structure is treated as a laminated anisotropic structure. Commercially available general purpose finite element analysis programs such as MSC PATRAN and MARC are used to develop the finite element (FE) model of the Mark III CCS plate. Because of the characteristics of LNG cargo that the Mark III CCS plate deals with, it is subjected to a wide range of temperature variations, i.e. about $-163^{\circ}C$ to $20^{\circ}C$. Different material properties of the Mark III CCS plate at these temperature levels are considered in the FE model. Using the developed FE model, strength assessment procedure is developed incorporating various anisotropic failure criteria such as Hashin, Hill, Hoffman, Maximum stress and Tsai-Wu. The strength assessment is performed within the initial failure state of the Mark III CCS plate and, as a result, failure details such as failure locations and loads are identified.

본 논문에서는 액화천연가스 운송을 위해 사용되는 맴브레인형 Mark III 화물창 시스템의 주요 구조물인, 방열 판 구조물의 파손 강도 평가를 수행한 내용을 다루고 있다. Mark III 방열 판 구조물을 복합적층 구조물로 고려하였으며 상용화된 범용 유한요소 프로그램인 MSC사의 PATRAN과 MARC를 사용하여 Mark III 방열 판 구조물의 유한요소 모델을 개발하였다. 특히, 액화천연가스 화물의 특성으로 인해 Mark III 방열 판 구조물이 접하는 상온에서 극저온에 이르는 광범위한 온도 분포에 따른 재료 물성치 변화를 유한요소 모델에 포함하였다. 이 유한요소 모델을 기반으로 파손 강도 평가 절차가 확립되었으며, 이 때 Mark III 방열 판 구조물의 파손 발생 여부를 판단하기 위해 Hashin, Hill, Hoffman, maximum stress, 그리고 Tsai-Wu와 같은 이방성 파손 기준들을 사용하였다. Mark III 방열 판 구조물의 전반적인 구조적 거동을 이해하였으며 이후 초기 파손 영역에서 강도 평가를 수행하여 파손이 발생되었을 때의 위치와 하중 등을 알 수 있었다.

Keywords

References

  1. American Bureau of Shipping (2006) Guidance notes on Strength Assessment of Membrane-type LNG Containment Systems under Sloshing Loads.
  2. Det Norske Veritas (2006) Classification notes on Sloshing Analysis of LNG Membrane Tanks.
  3. Han, S.M., Rim, C.W., Cho, H.K., Suh, Y.S., Lee, J.W., Lee, T.K. (2009) Experimental Study on the Structural Behavior of Secondary Barrier of Mark-III LNG CCS, Proceedings of 28th International Conference on Ocean, Offshore and Arctic Engineering, Hawaii, USA, pp.101-107.
  4. Jeong, H.K., Yang, Y.S. (2011) Structural Strength Assessment of Simplified Mark III CS Plate, Proceedings of Computational Structural Engineering Institute of Korea, Busan, Korea.
  5. Jeong, H.K., Yang, Y.S. (2014) Strength Assessment of LNG CCS using Strength Analysis Method for Composite Materials, J. Soc. Naval Archi. Korea, 51(2), pp.114-121. https://doi.org/10.3744/SNAK.2014.51.2.114
  6. Jeong, H.K., Yum, D.J. (2010) Structural Assessment of LNG CCS Panel using a Simplified Higher-Order Theory for Laminated Composite Plates, Proceedings of The Society of Naval Architects of Korea, Changwon, Korea.
  7. Kim, M.H., Lee, S.M., Lee, J.M., Noh, B.J., Kim, W.S. (2010) Fatigue Strength Assessment of MARKIII type LNG Cargo Containment System, Ocean Eng.., 37, pp.1243-1252. https://doi.org/10.1016/j.oceaneng.2010.05.004
  8. Korean Register of Shipping (2013) Guidance for the Classification of Sloshing Strength Assessment in Membrane LNG Carrier.
  9. Lee, J.W., Kim, T.W., Kim, M.H., Kim, W.S., Noh, B.J., Choe, I.H., Lee, J.M. (2007) Numerical Assessment of Dynamic Strength of Membrane Type LNG Carrier Insulation System, J. Soc. Naval Archi. Korea, 44(3), pp.305-313. https://doi.org/10.3744/SNAK.2007.44.3.305
  10. Lee, S.G., Hwang, J.O., Kim, W.S. (2008a) Wet Drop Impact Response Analysis of CCS in Membrane Type LNG Carriers I : Development of Numerical Simulation Analysis Technique through Validation, J. Soc. Naval Archi. Korea, 45(6), pp.726-734. https://doi.org/10.3744/SNAK.2008.45.6.726
  11. Lee, S.G., Hwang, J.O., Kim, W.S. (2008b) Wet Drop Impact Response Analysis of CCS in Membrane Type LNG Carriers II : Consideration of Effects on Impact Response Behaviors, J. Soc. Naval Archi. Korea, 45(6), pp.735-749. https://doi.org/10.3744/SNAK.2008.45.6.735
  12. Nho, I.S., Ki, M.S., Kim, S.C. (2011) A Study on Simplified Sloshing Impact Response Analysis for Membrane-Type LNG Cargo Containment System, J. Soc. Naval Archi. Korea,, 48(5), pp.451-456. https://doi.org/10.3744/SNAK.2011.48.5.451
  13. Ochoa, O.O., Reddy, J.N. (1990) Finite Element Analysis of Composite Laminates, Kluwer Academic Press.
  14. Pareto Securities (2012) Pareto Securities Report [Online] Available at www.paretosec.com.