A review of crack growth models for near-neutral pH stress corrosion cracking on oil and gas pipelines

Author:

Sun Haotian,Zhou Wenxing,Kang Jidong

Abstract

AbstractThis paper presents a review of four existing growth models for near-neutral pH stress corrosion cracking (NNpHSCC) defects on buried oil and gas pipelines: Chen et al.’s model, two models developed at the Southwest Research Institute (SwRI) and Xing et al.’s model. All four models consider corrosion fatigue enhanced by hydrogen embrittlement as the main growth mechanism for NNpHSCC. The predictive accuracy of these growth models is investigated based on 39 crack growth rates obtained from full-scale tests conducted at the CanmetMATERIALS of Natural Resources Canada of pipe specimens that are in contact with NNpH soils and subjected to cyclic internal pressures. The comparison of the observed and predicted crack growth rates indicates that the hydrogen-enhanced decohesion (HEDE) component of Xing et al.’s model leads to on average reasonably accurate predictions with the corresponding mean and coefficient of variation (COV) of the observed-to-predicted ratios being 1.06 and 61.2%, respectively. The predictive accuracy of the other three models are markedly poorer. The analysis results suggest that further research is needed to improve existing growth models or develop new growth models to facilitate the pipeline integrity management practice with respect to NNpHSCC.

Funder

natural sciences and engineering research council of canada

Publisher

Springer Science and Business Media LLC

Reference66 articles.

1. National Conference of State Legislatures (2021) Making state gas pipelines safe and reliable: an assessment of state policy. https://www.ncsl.org/research/energy/state-gas-pipelines.aspx. accessed 18 May 2021

2. Natural Resources Canada (2020) Pipelines across Canada. https://www.nrcan.gc.ca/our-natural-resources/energy-sources-distribution/clean-fossil-fuels/pipelines/pipelines-across-canada/18856. accessed 17 Aug 2020

3. National Energy Board (1996) Stress corrosion cracking on Canadian oil and gas pipelines. MH-2-95, NEB, Calgary

4. Transportation Safety Board of Canada (2018) Pipeline transportation safety investigation report P18H0088: pipeline rupture and fire, Westcoast energy Inc., 36-inch transmission south mainline loop, Prince George, BC

5. Transportation Safety Board of Canada (2009) Pipeline investigation report P09H0074: natural gas pipeline rupture, TransCanada Pipeline Inc., 914-millimeter-diameter pipeline, line 2-MLV 107–2 + 6.031 km, near Englehart, ON

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