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PIPELINE DENT MANAGEMENT PROGRAM

机译:管道凹痕管理计划

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摘要

Enbridge Pipelines Inc. operates the world's longest and most complex liquids pipeline network. As part of Enbridge's Integrity Management Program In-Line Inspections have been and will continue to be conducted on more than 15,000 km of pipeline. The Inspection Programs have included using the most technologically advanced geometry tools in the world to detect geometrical discontinuities such as ovality, dents, and buckles. During the past number of years, Enbridge Pipelines Inc. has been involved in developing a method of evaluating the suitability of dents in pipelines for continued service. The majority of the work involved the development of a method of modeling the stresses within a dent using Finite Element Analysis (FEA). The development and validation of this model was completed by Fleet Technology Limited (FTL) through several projects sponsored by Enbridge, which included field trials and comparisons to previously published data. This model combined with proven fracture mechanics theory provides a method of determining a predicted life of a dent based on either the past or future operating conditions of the pipeline. CSA Standard Z662 ― Oil and Gas Pipeline Systems provides criteria for the acceptability of dents for continued service. There have been occurrences, however, where dents that meet the CSA acceptability criteria have experienced failure. The dent model is being used to help define shape characteristics in addition to dent depth, the only shape factor considered by CSA, which contribute to dent failure. The dent model has also been utilized to validate the accuracy of current In-Line Inspection techniques. Typically a dent will lose some of its shape as the overburden is lifted from the pipeline and after the indentor is removed. Often there can be a dramatic "re-rounding" that will occur. The work included comparing the re-rounded dent shapes from a Finite Element model simulating the removal of the constraint on the pipe to the measured dent profile from a mold of the dent taken in the field after it has been excavated. This provided a measure of the accuracy of the tool. This paper will provide an overview of Enbridge's dent management program, a description of the dent selection process for the excavation program, and a detailed review of the ILI validation work.
机译:Enbridge Pipelines Inc.运营着世界上最长,最复杂的液体管道网络。作为Enbridge诚信管理计划的一部分,已经并且将继续对超过15,000公里的管道进行在线检查。检验程序包括使用世界上技术最先进的几何工具来检测几何不连续性,例如椭圆度,凹痕和弯曲。在过去的几年中,Enbridge Pipelines Inc.参与了开发一种评估管道中凹痕是否适合持续服务的方法。大多数工作涉及使用有限元分析(FEA)对凹痕内的应力进行建模的方法的开发。该模型的开发和验证是由Fleet Technology Limited(FTL)通过Enbridge赞助的几个项目完成的,其中包括实地试验和与以前发布的数据进行比较。该模型与久经考验的断裂力学理论相结合,提供了一种基于管道的过去或未来运行条件确定凹痕预计寿命的方法。 CSA Z662标准―石油和天然气管道系统为继续维修凹痕提供了可接受的标准。但是,已经发生了满足CSA可接受性标准的凹痕失败的情况。凹痕模型用于帮助定义除凹痕深度以外的形状特征,凹痕深度是CSA考虑的唯一会导致凹痕破坏的形状因素。凹痕模型也已用于验证当前在线检测技术的准确性。通常,随着上覆层从管线上抬起以及在移除压头之后,凹痕会失去其某些形状。通常,可能会发生戏剧性的“重新调整”。这项工作包括比较有限元模型中模拟的管道约束去除后的重新修整后的凹痕形状和在挖出凹痕后从现场取出的凹痕模具中测得的凹痕轮廓。这提供了工具精度的度量。本文将概述Enbridge的凹痕管理程序,对挖掘程序的凹痕选择过程的描述,以及对ILI验证工作的详细审查。

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