Influence of Mean Load Pressure Fluctuations on Crack Growth Behavior in Steel Pipelines

Olayinka Tehinse, Weixing Chen, Karina Chevil, E. Gamboa, Lyndon Lamborn
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Abstract

Internal pressure fluctuations during pipeline operations could contribute to crack growth in steel pipelines. These pressure fluctuations create a variable amplitude loading condition with large amplitude cycles at near-zero stress ratio, R (minimum stress / maximum stress) and small amplitude cycles (minor cycles) at near +1 R ratio which can both affect crack propagation. Mean stresses fluctuate with pressure due to fluid friction losses proportional to the distance from the pump/compressor station. A deeper understanding of mean stress sensitivity on crack growth rate in steel pipelines is sought. The aim of this research is to retard crack growth in pipelines by prescribing pressure fluctuations, thus controlling mean stress effects on imperfection growth in steel pipelines under a near neutral pH environment. This study shows that prescriptive mean load pressure fluctuations can be used to reduce crack growth rates in steel pipelines, thus expanding pipeline integrity management methods.
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平均载荷压力波动对钢管裂纹扩展行为的影响
管道运行过程中的内部压力波动可能导致钢管道的裂纹扩大。这些压力波动产生了一种变幅加载条件,在接近零应力比R(最小应力/最大应力)时,振幅较大,而在接近+1 R比时,振幅较小(小循环),两者都可以影响裂纹扩展。由于流体摩擦损失与泵/压缩机站的距离成正比,平均应力随压力波动。对钢管裂纹扩展速率的平均应力敏感性进行了更深入的研究。本研究的目的是在接近中性的pH环境下,通过规定压力波动来延缓管道裂纹的扩展,从而控制平均应力对钢管道缺陷扩展的影响。该研究表明,规定的平均载荷压力波动可用于降低钢管道的裂纹扩展速率,从而扩展管道完整性管理方法。
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