Collapse pressure estimates and the application of a partial safety factor to cylinders subjected to external pressure

Yeon Sik Yoo, Nam Su Huh, Suhn Choi, Tae Wan Kim, Jong In Kim

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

The present paper investigates the collapse pressure of cylinders with intermediate thickness subjected to external pressure based on detailed elastic-plastic finite element (FE) analyses. The effect of the initial ovality of the tube on the collapse pressure was explicitly considered in the FE analyses. Based on the present FE results, the analytical yield locus, considering the interaction between the plastic collapse and local instability due to initial ovality, was also proposed. The collapse pressure values based on the proposed yield locus agree well with the present FE results; thus, the validity of the proposed yield locus for the thickness range of interest was verified. Moreover, the partial safety factor concept based on the structural reliability theory was also applied to the proposed collapse pressure estimation model, and, thus, the priority of importance of respective parameter constituting for the collapse of cylinders under external pressure was estimated in this study. From the application of the partial safety factor concept, the yield strength was concluded to be the most sensitive, and the initial ovality of tube was not so effective in the proposed collapse pressure estimation model. The present deterministic and probabilistic results are expected to be utilized in the design and maintenance of cylinders subjected to external pressure with initial ovality, such as the once-through type steam generator.

Original languageEnglish
Pages (from-to)450-459
Number of pages10
JournalNuclear Engineering and Technology
Volume42
Issue number4
DOIs
StatePublished - Aug 2010

Keywords

  • Advanced first-order second moment
  • Elastic instability
  • External pressure
  • Load and resistance factor design
  • Most probably point
  • Ovality
  • Partial safety factor
  • Plastic collapse
  • Target probability of failure
  • Yield locus

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