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Review of hydrogen-assisted cracking models for application to service lifetime prediction and challenges in the oil and gas industry

机译:回顾氢气辅助开裂模型,用于应用终身预测和石油和天然气工业中的挑战

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摘要

The present manuscript reviews state-of-the art models of hydrogen-assisted cracking (HAC) with potential for application to remaining life prediction of oil and gas components susceptible to various forms of hydrogen embrittlement (HE), namely, hydrogen-induced cracking (HIC), sulfide stress cracking (SSC), and HE-controlled stress corrosion cracking (SCC). Existing continuum models are compared in terms of their ability to predict the threshold stress intensity factor and crack growth rate accounting for the complex couplings between hydrogen transport and accumulation at the fracture process zone, local embrittlement, and subsequent fracture. Emerging multiscale approaches are also discussed, and studies relative to HE in metals and especially steels are presented. Finally, the challenges that hinder the application of existing models to component integrity assessment and remaining life prediction are discussed with respect to identification of model parameters and limitations of the fracture similitude, which paves the way to new directions for further research.
机译:目前的手稿评价氢气辅助开裂(HAC)的最新模型,其潜在的应用于剩余的油气成分的寿命预测易受各种形式的氢脆化(HA),即氢诱导的裂缝( HIC),硫化物应力裂化(SSC),以及他控制的应力腐蚀裂解(SCC)。在其预测阈值应力强度因子和裂纹增长率的能力方面进行了比较现有的连续型模型,该裂缝在骨折过程区,局部脆化和随后的骨折之间进行氢输送和积聚之间的复合偶联。还讨论了新兴的多尺度方法,并提出了相对于金属,特别是钢材的研究。最后,妨碍了对组件完整性评估和剩余寿命预测的危害的挑战是关于识别模型参数和裂缝和裂缝的限制,这为进一步研究的新方向铺平了道路。

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