PSI - Issue 80

Alok Negi et al. / Procedia Structural Integrity 80 (2026) 203–211

211

AlokNegi / Structural Integrity Procedia 00 (2023) 000–000

9

stresses above this threshold led to predicted failure (burst) events. This finding underscores the significant role that even moderate residual stresses can play in promoting SSC.

Acknowledgements

The authors acknowledge the financial support provided by Abu Dhabi National Oil Company (ADNOC) under grant no. S.O. 9100000617 / KUX 8434000453.

References

Venkatesh, A., Ellis, P., Moore, P., 2012. Evaluation of the Accuracy of the ISO TR 10400 Failure Assessment Diagram Through Full Scale Testing of Pipe Containing Surface Imperfections. API PRAC II Project final report. API TR 5C3, 2019. API Technical Report 5C3: Calculating Performance Properties of Pipe Used as Casing or Tubing. American Petroleum Institute. Negi, A., Barsoum, I. and AlFantazi, A., 2023. Predicting sulfide stress cracking in a sour environment: A phase-field finite element study. Theo retical and Applied Fracture Mechanics, 127, p.104084. Negi, A., Elkhodbia, M., Barsoum, I. and AlFantazi, A., 2024. Coupled analysis of hydrogen di ff usion, deformation, and fracture: a review. International Journal of Hydrogen Energy, 82, pp.281-310. Elkhodbia, M., Negi, A., Mubarak, G., Barsoum, I. and AlFantazi, A., 2023. Review on sulfide stress cracking in sour service for OCTG and recent advances in modeling of hydrogen-assisted fracture. Geoenergy Science and Engineering, 230, p.212174. Negi, A. and Barsoum, I., 2025. E ff ect of residual stress on sulfide stress cracking and fracture toughness in carbon steel: A phase-field modeling approach. Theoretical and Applied Fracture Mechanics, 138, p.104911. Long, X. and Moore, P.W., 2018, April. The study on residual stresses in OCTG and its e ff ect on pipe sour cracking (SSC) performances. In Nace corrosion (pp. NACE-2018). NACE. Cupertino-Malheiros, L., Mandal, T.K., The´bault, F. and Mart´ınez-Pan˜eda, E., 2024. On the suitability of single-edge notch tension (SENT) testing for assessing hydrogen-assisted cracking susceptibility. Engineering Failure Analysis, 162, p.108360. Miehe, C., Hofacker, M. and Welschinger, F., 2010. A phase field model for rate-independent crack propagation: Robust algorithmic implementation based on operator splits. Computer Methods in Applied Mechanics and Engineering, 199(45-48), pp.2765-2778. Zhang, Z., Zheng, Y., Hou, D., Zhang, H., Li, Y. and Zhang, L., 2020. The influence of hydrogen sulfide on internal pressure strength of carbon steel production casing in the gas well. Journal of Petroleum Science and Engineering, 191, p.107113. ANSI / NACE TM0177, 2016. Laboratory Testing of Metals for Resistance to Sulfide Stress Cracking and Stress Corrosion Cracking in H2S Environments. NACE International. Jun, H., Srivastava, V., Ma, N., Sarosi, P. and Neeraj, T., 2019, June. Measuring crack propagation resistance of linepipe steels in sour service-a comparative study of test methods and materials response. In ISOPE International Ocean and Polar Engineering Conference (pp. ISOPE-I). ISOPE. Trillo, E., Dante, J., Chambers, B., Gonzalez, M., Somerday, B., Miller, M.A. and Long, X., 2019, March. Hydrogen permeation and binding energy study on octg high strength steel. In NACE CORROSION (pp. NACE-2019). NACE. Chambers, B., Long, X. and Gonzalez, M., 2021, April. The e ff ect of mill scale on OCTG sour cracking resistance. In NACE CORROSION (p. D011S001R005). NACE. Sales, D.G., Ne´el, G., Oliveira, J. and The´bault, F., 2018, June. Sulfide stress cracking resistance of 95 and 110 ksi octg sour service grades under high partial pressure of h2s-a contribution to corrosion mechanism understanding. In SPE International Oilfield Corrosion Conference and Exhibition (p. D012S006R006). SPE. Cancio, M.J., Perez, T.E. and Collet-Lacoste, J.R., 2010, March. Environmental and metallurgical parameters a ff ecting sulfide stress cracking resistance of high strength steels. In NACE CORROSION (pp. NACE-10283). NACE. Liu, L. and Case, R., 2022. The influence of H2S on hydrogen absorption and sulfide stress cracking resistance of high strength low alloy carbon steel C110. Journal of Natural Gas Science and Engineering, 99, p.104418. Amor, H., Marigo, J.J. and Maurini, C., 2009. Regularized formulation of the variational brittle fracture with unilateral contact: Numerical experi ments. Journal of the Mechanics and Physics of Solids, 57(8), pp.1209-1229. API 579, 2007. API 579-1 / ASME FFS-1 Fitness-For-Service. American Society of Mechanical Engineers. Nawathe, S., Panico, M., Baker, D. and Huang, W., 2016, March. E ff ect of residual stresses on causing sour burst pressure. In NACE CORROSION (pp. NACE-2016). NACE. Elkhodbia, M., Barsoum, I., Negi, A. and AlFantazi, A., 2024. Machine learning augmentation of the failure assessment diagram methodology for enhanced tubular structures integrity evaluation. Engineering Fracture Mechanics, 307, p.110318.

Made with FlippingBook - Online catalogs