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IMPROVEMENT OF PIPELINE FATIGUE LIFE ESTIMATION

机译:管道疲劳寿命估算的改进

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Fracture mechanics methodologies for calculating fatigue lives have been successfully applied by pipeline operators to estimate integrity reassessment intervals. Their application in the definition of pipeline system fatigue lives has been overly conservative in actual practice. The source and magnitude of the conservatism inherent in the calculated fatigue life estimates needs to be identified so operators have a better indicator of when reassessments should take place. The pipe life estimation is especially critical for Electric Resistance Weld (ERW) and Electric Flash Weld (EFW) pipeline systems with longitudinally oriented defects. Prior work on improving fatigue life was initiated through studies completed by Pipeline Research Council International, Inc. (PRCI) to evaluate the sources of differences between fatigue life estimates produced by industry fatigue analysis software and different metallurgists. Two significant sources of conservatism in the fatigue life estimation process were identified: the fatigue crack growth rate (da/dN) and the bulging correction factor applied to axial surface flaws. The experimental and numerical simulation techniques considering the impact of these factors on rate of fatigue crack growth of pipeline axially oriented defects are described in this paper. Finite element modeling was used to simulate pipe bulging in the presence of axial flaws. The effect of the pipe thickness, diameter and flaw geometry was compared with treatments included in existing defect assessment standards. The results illustrate that for longer and deeper flaws existing treatments over represent the local bending due to pipe wall bulging. This results in unnecessarily conservative (shorter) fatigue life estimates. The crack growth rate (da/dN) was measured in a compact tension specimen material fatigue testing program. The test results included a range of ERW and EFW pipe materials with varying vintages and grades. The measured fatigue crack growth rate for the materials tested was found to be lower than that recommended by existing industry standards. This adds to the over conservatism of current approaches. The numerical simulation and materials testing results and related recommendations presented in this paper are compared to existing codified treatments to quantify the level of conservatism inherent in the current state of practice. Recommendations are provided to enhance the precision and better manage conservatism in fatigue crack growth rate calculations. Increased accuracy serves to improve integrity management and would be of interest to pipeline operators, consultants and regulators.
机译:用于计算疲劳寿命的断裂力学方法已被管道运营商成功地应用于估计完整性重新评估间隔。在实际实践中,它们在定义管道系统疲劳寿命中的应用过于保守。需要确定计算得出的疲劳寿命估算中固有的保守性的来源和严重程度,以便操作人员更好地指示何时应该进行重新评估。对于具有纵向缺陷的电阻焊(ERW)和电闪光焊(EFW)管道系统,管道寿命的估算尤为关键。改善疲劳寿命的先前工作是通过国际管道研究理事会(PRCI)完成的研究启动的,以评估由工业疲劳分析软件和不同冶金学家得出的疲劳寿命估算值之间的差异。确定了疲劳寿命估算过程中的两个重要的保守性来源:疲劳裂纹扩展率(da / dN)和应用于轴向表面缺陷的凸出校正因子。本文介绍了考虑这些因素对管道轴向缺陷的疲劳裂纹扩展速率的影响的实验和数值模拟技术。有限元建模用于在存在轴向缺陷的情况下模拟管道膨胀。将管道厚度,直径和缺陷几何形状的影响与现有缺陷评估标准中包括的处理方法进行了比较。结果表明,对于更长,更深的缺陷,现有的处理方法代表了由于管壁凸起而引起的局部弯曲。这导致不必要的保守(较短)疲劳寿命估算。裂纹扩展率(da / dN)是在紧凑的拉伸试样材料疲劳测试程序中测量的。测试结果包括各种不同的年份和等级的ERW和EFW管材。发现所测试材料的测量的疲劳裂纹增长率低于现有行业标准所建议的增长率。这增加了当前方法的过度保守性。将本文提供的数值模拟和材料测试结果以及相关建议与现有的编码处理进行比较,以量化当前实践状态中固有的保守性水平。提供了一些建议,以提高疲劳裂纹增长率计算中的精度并更好地管理保守性。准确性的提高有助于改善完整性管理,并且管道运营商,顾问和监管机构将对此感兴趣。

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