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TOWARDS A VALIDATED PIPELINE DENT INTEGRITY ASSESSMENT MODEL

机译:建立有效的管线凹痕完整性评估模型

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摘要

Detectable dents in buried pipelines can occur due to a number of potential causes; the pipe resting on rock, third party machinery strike, rock strikes during backfilling. The integrity of a dented pipeline segment is a complex function of a variety of parameters, including pipe geometry, indenter shape, dent depth, indenter support and pressure history at and following indentation. In order to estimate the safe remaining operational life of a dented pipeline, all of these factors must be accounted for in the analysis.rnThe following paper summarizes ongoing efforts to develop a validated pipeline dent integrity assessment model. The model under development makes use of experimental tests to validate a finite element model of the denting and re-rounding process for a variety of dent scenarios (i.e. depths, restraints, indenter sizes). The results of the finite element model are then used in conjunction with the estimated pressure-time history in an integrity assessment procedure to estimate the safe remaining operational life of the pipe segment. The paper presents a discussion of the full scale fatigue tests carried out on dented pipeline segments and the efforts under way to develop and validate a finite element model of the experimental specimens with the goal of estimating the experimental fatigue life.
机译:由于多种潜在原因,可能会在地下管道中出现可检测到的凹痕。搁在岩石上的管道,第三方机械撞击,回填期间的岩石撞击。凹陷的管道段的完整性是多种参数的复杂函数,包括管道几何形状,压头形状,压痕深度,压痕支撑和压痕前后的压力历史记录。为了评估凹痕管道的安全剩余使用寿命,必须在分析中考虑所有这些因素。下文总结了为开发经过验证的管道凹痕完整性评估模型所做的努力。正在开发的模型利用实验测试来验证各种凹痕场景(即深度,约束,压头尺寸)的凹陷和重新修整过程的有限元模型。然后,在完整性评估程序中将有限元模型的结果与估计的压力-时间历史一起使用,以估计管段的安全剩余使用寿命。本文讨论了在凹陷管道段上进行的全面疲劳测试,以及为估计实验疲劳寿命而正在开发和验证实验样品的有限元模型的工作。

著录项

  • 来源
  • 会议地点 Calgary(CA);Calgary(CA);Calgary(CA)
  • 作者单位

    BMT Fleet Technology Limited, Kanata, Ontario, Canada;

    BMT Fleet Technology Limited, Kanata, Ontario, Canada;

    BMT Fleet Technology Limited, 311 Legget Drive, Kanata, ON, Canada, K2K 1Z8;

    BMT Fleet Technology Limited, Kanata, Ontario, Canada;

    Stress Engineering Services, Houston, Texas, USA;

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  • 正文语种 eng
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