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Articles

Effect of solid rubber fenders on the structural damage due to collisions between a ship-shaped offshore installation and an offshore supply vessel

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Pages 1037-1059 | Received 05 Nov 2021, Accepted 15 Jul 2022, Published online: 27 Jul 2022

References

  • ASTM. 2021. Standard test methods for vulcanized rubber and thermoplastic elastomers-tension. ASTM D412-16. West Conshohocken, PA: ASTM International.
  • Cowper GR, Symonds PS. 1957. Strain-hardening and strain-rate effects in the impact loading of cantilever beams. Technical Report No. 28. Providence, RI: Division of Applied Mathematics, Brown University.
  • Fan W, Zhang Z, Huang X, Sun W. 2020. A simplified method to efficiently design steel fenders subjected to vessel head-on collisions. Marine Structures. 74:102840.
  • Fernandez JM, Vaz MA, Cyrino JCR. 2021. Numerical study on the collision of platform supply vessel and floating production storage and offloading platform. Ships Offsh Struct. doi:10.1080/17445302.2021.1932022.
  • Jones N. 2012. Structural impact. Second edition. Cambridge: Cambridge University Press.
  • Ko YG, Kim SJ, Paik JK. 2018a. Effects of a deformable striking ship’s bow on the structural crashworthiness in ship–ship collisions. Ships Offsh Struct. 13(sup1):S228–S250.
  • Ko YG, Kim SJ, Sohn JM, Paik JK. 2018b. A practical method to determine the dynamic fracture strain for the nonlinear finite element analysis of structural crashworthiness in ship–ship collisions. Ships Offsh Struct. 13(4):412–422.
  • Mujeeb-Ahmed MP, Ince ST, Paik JK. 2020. Computational models for the structural crashworthiness analysis of a fixed-type offshore platform in collisions with an offshore supply vessel. Thin-Walled Struct. 154:106868.
  • Mujeeb-Ahmed MP, Paik JK. 2019. A probabilistic approach to determine design loads for collision between an offshore supply vessel and offshore installations. Ocean Eng. 173:358–374.
  • Mujeeb-Ahmed MP, Paik JK. 2021. Quantitative collision risk assessment of a fixed-type offshore platform with an offshore supply vessel. Structures. 29:2139–2161.
  • Mullins L. 1969. Softening of rubber by deformation. Rubber Chem Technol. 42(1):339–362.
  • Ogden RW. 1972. Large deformation isotropic elasticity–on the correlation of theory and experiment for incompressible rubberlike solids. Proc. R. Soc. A. 326(1567):565–584.
  • Ozguc O. 2020a. Collision damage analysis of FPSO hull caisson protection structure. Trans. Marit. Sci. 9(2):130–149.
  • Ozguc O. 2020b. Numerical assessment of FPSO platform behaviour in ship collision. Trans. Marit. Sci. 9(2):161–186.
  • Paik JK. 2007a. Practical techniques for finite element modeling to simulate structural crashworthiness in ship collisions and grounding (part I: theory). Ships Offsh Struct. 2(1):69–80.
  • Paik JK. 2007b. Practical techniques for finite element modeling to simulate structural crashworthiness in ship collisions and grounding (part II: verification). Ships Offsh Struct. 2(1):81–85.
  • Paik JK. 2018. Ultimate limit state analysis and design of plated structures. Second edition. Chichester, UK: John Wiley & Sons.
  • Paik JK. 2020. Advanced structural safety studies: with extreme conditions and accidents. Singapore: Springer.
  • Paik JK. 2022. Ship-shaped offshore installations: design, construction, operation, healthcare and decommissioning. Second edition. Cambridge, UK: Cambridge University Press.
  • Paik JK, Kim KJ, Lee JH, Jung BG, Kim SJ. 2017. Test database of the mechanical properties of mild, high-tensile and stainless steel and aluminium alloy associated with cold temperatures and strain rates. Ships Offsh Struct. 12(sup1):S230–S256.
  • Paik JK, Pedersen PT. 1995. On design of double hull tankers against collisions. Proceedings of 6th International Symposium on Practical Design of Ships and Mobile Units, 17-22 September, Seoul, Korea.
  • Paik JK, Thayamballi AK. 2007. Ship-shaped offshore installations: design, building, and operation. Cambridge, UK: Cambridge University Press.
  • Park SM, Kim HJ, Cho HR, Kong KH, Park DK, Paik JK. 2022. Effect of pneumatic rubber fenders on the prevention of structural damage during collisions between a ship-shaped offshore installation and a shuttle tanker working side-by-side. Ships Offsh Struct. doi:10.1080/17445302.2022.2085898.
  • Pedersen PT, Zhang S. 1998. On impact mechanics in ship collisions. Marine Structures. 11(10):429–449.
  • Wierzbicki T, Abramowicz W. 1983. On the crushing mechanics of thin-walled structures. J Appl Mech. 50(4a):727–734.

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