Complex Circumferential Stress Corrosion Cracking: Identification, Sizing and Consequences for the Integrity Management Program

Brett Johnson, Bereket Tesfaye, Cory Wargacki, T. Hennig, E. Suarez
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Abstract

Since the late 1980’s Ultrasonic tools have been used for the detection and sizing of crack like indications. ILI service providers developed inspection technologies for liquid and gas lines that are widely used nowadays. In comparison to axial cracking, circumferential cracking is not a prevalent risk to most pipelines and therefore is not as well understood. Nevertheless, pipeline Operators observe from time to time circumferentially oriented defects, often in combination with circumferential welds or local stress/strain accumulations. These are often caused by pipeline movement, which may especially occur in mountain areas. With the introduction of Ultrasonic circumferential crack inspection tools in the late 2000’s the knowledge has steadily increased over time. Extensive data collected from in-ditch NDE validations has provided NDT Global with an increased knowledge of the morphology of single cracking and stress corrosion cracking defects both in the axial and circumferential orientations. Field verifications have shown that not all features have the same morphology. Some of the challenges with circumferential cracking are for features that fall outside of the industry standard specifications. These types of features can exhibit characteristics such as being sloped, skewed or tilted. In 2016 NDT Global was approached by Plains Midstream Canada to complete inspections utilizing the 10″ Ultrasonic Circumferential crack inspection technology. The pipeline system spans 188km within Canada and consists of 2 segments. The pipeline traverses several elevation changes and crosses several creeks and roads. Circumferential cracking was identified during dig campaigns performed for other threats, therefore the need to inspect each pipeline segment with the Ultrasonic circumferential technology was identified. Plains Midstream Canada and NDT Global formed a close collaboration to assess the severity of circumferential crack features in this line. This paper will discuss integrity aspects from an Operator and Vendor perspective. Challenges identified due to the morphology of the circumferential crack like indications and derived analysis rules and interpretation methodologies to optimize characterization and sizing are presented. Finally, potential opportunities to maintain the integrity of similar assets by applying some of the findings and enhance the management and decision making process are suggested.
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复杂环向应力腐蚀裂纹:完整性管理程序的识别、尺寸和后果
自20世纪80年代末以来,超声波工具已被用于检测和确定裂纹迹象。ILI服务提供商开发了目前广泛使用的液体和气体管道检测技术。与轴向裂缝相比,环向裂缝对大多数管道来说并不是一个普遍的风险,因此也没有被很好地理解。然而,管道操作人员不时会观察到周向缺陷,通常与周向焊缝或局部应力/应变积累结合在一起。这些通常是由管道运动引起的,尤其是在山区。随着超声周向裂纹检测工具在2000年后期的引入,随着时间的推移,知识稳步增加。从沟内无损检测验证中收集的大量数据为NDT Global提供了更多关于轴向和周向单裂纹和应力腐蚀裂纹缺陷形态的知识。实地验证表明,并非所有特征都具有相同的形态。圆周开裂的一些挑战是针对不属于行业标准规范的特性。这些类型的特征可以表现出倾斜、歪斜或倾斜等特征。2016年,加拿大Plains Midstream公司与NDT Global公司接洽,利用10″超声周向裂纹检测技术完成检测。该管道系统在加拿大境内全长188公里,由两段组成。这条管道穿越了几处海拔变化,穿过了几条小溪和道路。在其他威胁的挖掘过程中发现了周向裂缝,因此确定了使用超声周向技术检查每个管道段的必要性。Plains Midstream Canada和NDT Global形成了密切的合作,以评估这条线圆周裂纹特征的严重程度。本文将从运营商和供应商的角度讨论完整性问题。提出了由于周向裂纹的形态特征和衍生的分析规则和解释方法而确定的挑战,以优化表征和尺寸。最后,提出了通过应用一些调查结果来保持类似资产完整性并加强管理和决策过程的潜在机会。
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