首页> 外文会议>International pipeline conference >INTEGRATION OF MULTIPLE ILI TECHNOLOGIES FOR ROBUST UNDERSTANDING OF UNIQUE ANOMALIES ON A PIPELINE
【24h】

INTEGRATION OF MULTIPLE ILI TECHNOLOGIES FOR ROBUST UNDERSTANDING OF UNIQUE ANOMALIES ON A PIPELINE

机译:多种ILI技术的集成,以便于管道上独特异常的鲁棒理解

获取原文

摘要

Pipeline operators have many choices when selecting inline inspection (ILI) vendors and technologies. No single technology has a one hundred percent probability of detection, identification, and sizing for all anomaly types. Operators must match the threats on their system to the existing capabilities of the ILI technologies to achieve the goals defined by the company's integrity management program. It is sometimes necessary to run multiple technologies to effectively assess all threats in a pipeline. Multiple technologies may be run during the same timeframe or they may be run at different times during the life of the pipeline to meet program goals. Shell Pipeline Company, LP (SPLC) has a pipeline that is comprised of low frequency electric resistance welded (LF-ERW) pipe from Youngstown Sheet and Tube, seamless pipe from National Tube, double submerged arc welded (DSAW) pipe from Kaiser, and high frequency electric resistance welded (HF-ERW) pipe. The LF-ERW pipe was installed in 1948 while the HF-ERW was installed during relatively recent replacement projects. The DSAW pipe was installed in 1952 with the seamless pipe being installed in both 1948 and 1952. From 2015 through 2018, SPLC executed an extensive integrity management program. This included: an axial magnetic flux leakage (AMFL) inspection, two circumferential magnetic flux leakage (CMFL) inspections, two deformation inspections, an electro-magnetic acoustic transducer (EMAT) inspection, an ultrasonic crack detection (UTCD) inspection, an ultrasonic wall measurement (UTWM) inspection, and a hydrotest. A dig campaign of nearly 100 excavations was completed as a result of these surveys. One of the focuses of the paper will be the comparison of EMAT to UTCD for Likely Cracks, Possible Cracks and Unlikely Cracks that have been field verified. This paper also shares some of the unique anomalies found through the dig campaign identifying the effectiveness of each technology and their combination for integrity purposes. The paper shows the benefits of combining ILI technologies to properly characterize, assess and mitigate reported anomalies and ensure there are no blind spots in the integrity management program. Case studies including dent with gouge (e.g. AMFL + Deformation), manufacturing, and cracking anomalies as well as the analytics of ILI versus field findings are presented and discussed in the paper. The paper concludes with the knowledge creation resulting from multiple ILI technology integration assisted with subject matter expert experience and analytics to provide a robust understanding of unique anomalies in pipelines.
机译:在选择内联检查(ILI)供应商和技术时,管道运营商有许多选择。没有单一技术对所有异常类型的检测,鉴定和尺寸均有百分之百。运营商必须将其系统的威胁与ILI技术的现有能力匹配,以实现公司的完整性管理计划所定义的目标。有时需要运行多种技术,以有效地评估管道中的所有威胁。在相同的时间帧期间可以运行多种技术,或者它们可以在流水线寿命期间的不同时间运行以满足节目目标。 Shell Pipeline公司LP(SPLC)的管道由扬声器和管,来自国家管的无缝管,来自Kaiser的双埋弧焊(DSAW)管道的无线电电阻焊接(LF-ERW)管道。高频电阻焊接(HF-ERW)管。 LF-ERW管道于1948年安装,而HF-ERW安装在相对近期的更换项目中。 DSAW管道于1952年安装,其中无缝管安装在1948和1952年。从2015到2018年,SPLC执行了广泛的完整性管理程序。其中:轴向磁通泄漏(AMFL)检查,两个周向磁通泄漏(CMFL)检查,两个变形检查,电磁声换能器(EMAT)检查,超声波裂纹检测(UTCD)检查,超声波壁测量(UTWM)检验,以及Hydrotest。由于这些调查,完成了近100个挖掘的挖掘活动。纸张的重点之一将是EMAT对UTCD的比较,以实现可能的裂缝,可能的裂缝和不太可能的裂缝已经验证。本文还分享了通过挖掘活动发现的一些独特的异常,确定了各种技术的有效性及其组合的完整性目的。本文展示了伊犁技术合并正确表征,评估和减轻报告的异常的好处,并确保诚信管理计划中没有盲点。案例研究包括凿孔(例如AMFL +变形),制造和破解异常以及ILI与域的分析,并在论文中讨论。本文的结论是,由多个ILI技术集成导致的知识创建,辅助主题专家经验和分析提供了对管道中独特异常的稳健理解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号