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2008 | Special Issue |

Tytuł artykułu

Numerical calculations of behaviour of ship double-bottom structure during grouning

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The idea of the CORET project consists in adding, to the existing construction, special polymer-concrete coatings intended for the increasing of ship’s capability against losing structural tightness during collision or grounding. In order to correctly design the protective barriers, to perform relevant numerical simulations is necessary. The elaborating of numerical models of ship structure behaviour during collision is very complicated and requires auxiliary simulations (on submodels) to be performed. This paper is devoted to elaborating a numerical model of a fragment of ship double-bottom structure. On the basis of experimental tests it was possible to verify and calibrate the numerical model which may be used in further design work aimed at the increasing of crashworthiness of structure during collisio

Słowa kluczowe

Wydawca

-

Rocznik

Opis fizyczny

p.22-26,fig.,ref.

Twórcy

autor
  • Faculty of Ocean Engineering and Ship Technology, Gdansk University of Technology, Narutowicza 11/12, 80-952 Gdansk, Poland

Bibliografia

  • 1. Simonsen B. C., Lauridsen L. P.: Energy absorption and ductile failure in metal sheets under lateral indentation by a sphere. Int. J. Impact Eng. England, 2000
  • 2. Tornqvist R.: Numerical prediction of ultimate strength of steel structures. Department of Naval Architecture and Offshore Engineering, England, 2000
  • 3. Wu F., Spong R., Wang G.:Using numerical simulation to analyze ship collision. International Conference on Collision and Grounding of Ships 2004, Japan
  • 4. Zhang A., Suzuki K.: Numerical simulation the bottom structure grounding test by LS-DYNA. 5th European LS-DYNA Users Conference, Convention Centre in Birmingham, United Kingdom, May 2005
  • 5. HELCOM: Maritime Transport in the Baltic Sea. Draft HELCOM Thematic Assessment in 2006. Stakeholder Conference on the Baltic Sea Action Plan, Helsinki, Finland, 07.03.2006
  • 6. Germanischer Lloyd: Rules for Classification and Construction: Ship Technology, Part-1 Seagoing Ships, Chapter 1 Hull Structures, Section 33 Strengthening against Collisions. Hamburg, Germany, 1992
  • 7. Alsos H.S., Amdahl J.: Intentional grounding of disabled ships. Marine 2005 Conference on Computational Methods in Marine Engineering, Oslo, Norway, 27-29 June 2005
  • 8. Hu Z., Gu Y., Gao Z.: Research on crashworthiness of Y-shape side structure design for FPSO. International Offshore and Polar Engineering Conference (ISOPE), Seoul, South Korea, June 2005
  • 9. Brown A.J.: Modelling Structural Damage in Ship Collisions. SSC-422, Ship
  • 10. Sajdak, J., Brown, A.J.: (2005). Modeling longitudinal damage in ship collisions, Report SSC-437/SR-1426, Ship Structure Committee 2004

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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