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Structural integrity analysis of containers lost at sea using finite element method

  • Selda Oterkus
  • , Bingquan Wang
  • , Erkan Oterkus
  • , Yakubu Kasimu Galadima
  • , Margot Cocard
  • , Stefanos Mokas
  • , Jami Buckley
  • , Callum McCullough
  • , Dhruv Boruah
  • , Bob Gilchrist
  • University of Strathclyde
  • Buckley Yacht Design Ltd
  • M Subs Limited
  • Oceanways Technologies Ltd

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

Unlike traditional transportation, container transportation is a relatively new logistics transportation mode. Shipping containers lost at sea have raised safety concerns. In this study, finite element analysis of containers subjected to hydrostatic pressure, using commercial software ANSYS APDL was performed. A computer model that can reasonably predict the state of an ISO cargo shipping container was developed. The von Mises stress distribution of the container was determined and the yield strength was adopted as the failure criterion. Numerical investigations showed that the conventional ship container cannot withstand hydrostatic pressure in deep water conditions. A strengthened container option was considered for the container to retain its structural integrity in water conditions.

Original languageEnglish
Pages (from-to)11-17
Number of pages7
JournalSustainable Marine Structures
Volume4
Issue number2
DOIs
StatePublished - Jul 2022

Keywords

  • Container
  • Finite element method
  • Sea
  • Structural integrity

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