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Collapse of Corroded Pipelines under Combined Tension and External Pressure

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  • Hao Ye
  • Sunting Yan
  • Zhijiang Jin

Abstract

In this work, collapse of corroded pipeline under combined external pressure and tension is investigated through numerical method. Axially uniform corrosion with symmetric imperfections is firstly considered. After verifying with existing experimental results, the finite element model is used to study the effect of tension on collapse pressure. An extensive parametric study is carried out using Python script and FORTRAN subroutine to investigate the influence of geometric parameters on the collapse behavior under combined loads. The results are used to develop an empirical equation for estimating the collapse pressure under tension. In addition, the effects of loading path, initial imperfection length, yielding anisotropy and corrosion defect length on the collapse behavior are also investigated. It is found that tension has a significant influence on collapse pressure of corroded pipelines. Loading path and anisotropic yielding are also important factors affecting the collapse behavior. For pipelines with relatively long corrosion defect, axially uniform corrosion models could be used to estimate the collapse pressure.

Suggested Citation

  • Hao Ye & Sunting Yan & Zhijiang Jin, 2016. "Collapse of Corroded Pipelines under Combined Tension and External Pressure," PLOS ONE, Public Library of Science, vol. 11(4), pages 1-17, April.
  • Handle: RePEc:plo:pone00:0154314
    DOI: 10.1371/journal.pone.0154314
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