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Articles

Numerical investigation on dynamic ultimate strength of stiffened panels considering real loading scenarios

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Pages 374-386 | Received 23 Oct 2018, Accepted 25 Mar 2019, Published online: 05 Apr 2019

References

  • ABAQUS. 2017. Dassault Systemes Simulia Corp, Johnston (RI), USA.
  • Amlashi HK, Moan T. 2008. Ultimate strength analysis of a bulk carrier hull girder under alternate hold loading condition – a case study: part 1: nonlinear finite element modelling and ultimate hull girder capacity. Marine Struct. 21(4):327–352. doi: 10.1016/j.marstruc.2007.12.006
  • Andersen IMV, Jensen JJ. 2014. Measurements in a container ship of wave-induced hull girder stresses in excess of design values. Marine Struct. 37:54–85. doi: 10.1016/j.marstruc.2014.02.006
  • Bishop RE, Price WG. 1979. Hydroelasticity of ships. Cambridge University Press.
  • Branch MAI. 2008. Report on the investigation of the structural failure of MSC Napoli, English channel on 18 january 2007. Marine Accident Investigation Branch. Report No: 9/2008.
  • Bureau Veritas. 2018. Rules on materials and welding for the classification of marine units. Bureau Veritas.
  • Caldwell J. 1965. Ultimate longitudinal strength. Trans RINA. 107:411–430.
  • Choung J, Nam W, Lee JY. 2013. Dynamic hardening behaviors of various marine structural steels considering dependencies on strain rate and temperature. Marine Struct. 32:49–67. doi: 10.1016/j.marstruc.2013.02.001
  • ClassNK. 2014. Investigation report on structural safety of large container ships. ClassNK.
  • Cowper GR, Symonds PS. 1957. Strain-hardening and strain-rate effects in the impact loading of cantilever beams. Brown Univ Providence Ri. Report No: TR-C11-28.
  • Derbanne Q, Bigot F, de Hauteclocque G. 2012. Comparison of design wave approach and short term approach with increased wave height in the evaluation of whipping induced bending moment. In: ASME 2012 31st International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers. p. 299–308.
  • Derbanne Q, Malenica Š, Tuitman J, Bigot F, Chen X. 2010. Validation of the global hydroelastic model for springing & whipping of ships. In: 11th International Symposium on Practical Design of Ships and Other Floating Structures, Rio de Janeiro, p. 331–340.
  • Det Norske Veritas. 2018. Os-b101 metallic-materials. Det Norske Veritas.
  • Domnisoru L, Domnisoru D. 1998. The unified analysis of springing and whipping phenomena. Trans R Inst Naval Architect London. 140:19–36.
  • Euler L. 1759. Sur la force des colonnes. Memoires de L'Academie des Sci et Belles-Lett. 13:252–282.
  • Fujikubo M, Tatsumi A. 2017. Progressive collapse analysis of a container ship under combined longitudinal bending moment and bottom local loads. In: Proceedings of the 6th international conference on Marine Structures, Lisbon, Portugal. p. 235–242.
  • ISO E. 2009. 6892-1. metallic materials-tensile testing-part 1: Method of test at room temperature. International Organization for Standardization.
  • Jiang L, Zhang S, White N. 2012. Nonlinear finite element dynamic collapse analyses of stiffened panels. In: Proceedings of the Sixth International Conference on Hydroelasticity in Marine Technology, Tokyo, Japan, Sept. p. 19–21.
  • Jones N. 2011. Structural impact. Cambridge university press.
  • Khedmati MR, Zareei MR, Rigo P. 2010. Empirical formulations for estimation of ultimate strength of continuous stiffened aluminium plates under combined in-plane compression and lateral pressure. Thin-Walled Struct. 48(3):274–289. doi: 10.1016/j.tws.2009.10.001
  • Kirchoff G. 1850. Uber das gleichgewicht und die bewegung einer elastischen scheibe. J fur die reine und angewandte Mathematik (Crelle's J). 40:51–88. doi: 10.1515/crll.1850.40.51
  • Lin Y. 1985. Structural longitudinal ship modelling [dissertation]. Department of Naval Architecture and Ocean Engineering, University of Glasgow Scotland.
  • Manjoine M. 1945. Influence of rate of strain and temperature on yield stresses of mild steel. J Appl Mech Trans ASME. 12(3):A186.
  • Matsumoto T, Shigemi T, Kidogawa M, Ishibashi K, Sugimoto K. 2016. Examination of effect of lateral loads on the hull girder ultimate strength of large container ships. In: ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers.
  • Paik JK. 2018. Ultimate limit state design of steel-plated structures. 2nd ed. Wiley.
  • Paik J, Chung J. 1999. A basic study on static and dynamic crushing behavior of a stiffened tube. KSAE Trans. 1:219–238.
  • Paik JK, Kim BJ. 2002. Ultimate strength formulations for stiffened panels under combined axial load, in-plane bending and lateral pressure: a benchmark study. Thin-Walled Struct. 40(1):45–83. doi: 10.1016/S0263-8231(01)00043-X
  • 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 Offshore Struct. 12(sup1):230–256. doi: 10.1080/17445302.2016.1262729
  • Paik JK, Seo JK. 2009a. Nonlinear finite element method models for ultimate strength analysis of steel stiffened-plate structures under combined biaxial compression and lateral pressure actions-part i: plate elements. Thin-Walled Struct. 47(8–9):1008–1017. doi: 10.1016/j.tws.2008.08.005
  • Paik JK, Seo JK. 2009b. Nonlinear finite element method models for ultimate strength analysis of steel stiffened-plate structures under combined biaxial compression and lateral pressure actions-part ii: stiffened panels. Thin-Walled Struct. 47(8):998–1007. doi: 10.1016/j.tws.2008.08.006
  • Rolfe ST, Rhea DM, Kuzmanovic BO. 1974. Fracture-control guidelines for welded steel ship hulls. Washington: Kansas University Lawrence. Report No: 244.
  • Seng S. 2012. Slamming and whipping analysis of ships [dissertation]. DTU Mechanical Engineering.
  • Shu Z, Moan T. 2012. Ultimate hull girder strength of a bulk carrier under combined global and local loads in the hogging and alternate hold loading condition using nonlinear finite element analysis. J Marine Sci Technol. 17(1):94–113. doi: 10.1007/s00773-011-0147-9
  • Smith CS. 1977. Influence of local compressive failure on ultimate longitudinal strength of a ship's hull. Proc Int Sym Practical Design Shipbuilding. 1977:73–79.
  • Smith CS, Davidson P, Chapman J. 1988. Strength and stiffness of ships'plating under in-plane compression and tension. R Inst Naval Architect Trans. 130:277–296.
  • Soreide T, Moan T, Nordsve N. 1978. On the behavior and design of stiffened plates in ultimate limit state. J Ship Res. 22(4):238–244.
  • Tuitman J, Malenica Š. 2009. Fully coupled seakeeping, slamming, and whipping calculations. Proc Inst Mech Eng Part M: J Eng Maritime Environ. 223(3):439–456.
  • Turner M. 1956. Stiffness and deflection analysis of complex structures. J Aeronaut Sci. 23(9):805–823. doi: 10.2514/8.3664
  • von Kármán T. 1910. Untersuchungen über knickfestigkeit. In: Mitteilungen über forschungsarbeiten auf dem gebiete des ingenieurwesens insbesondere aus den laboratorien der technischen hochschulen. Springer; p. 1–44.
  • Zhang S. 2016. A review and study on ultimate strength of steel plates and stiffened panels in axial compression. Ships Offshore Struct. 11(1):81–91.
  • Zhang S, Jiang L. 2014. A procedure for non-linear structural collapse analysis. In: ASME 2014 33rd International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers. p. 19–21.

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