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EVALUATION OF FATIGUE IN GAS PIPELINES

机译:天然气管道的疲劳评估

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There is a commonly held belief that internal operational pressure fluctuations of a gas pipeline is less likely to result in fatigue cracking than a liquid pipeline. A defensible engineering analysis process, demonstrating that this observation remains valid for all gas pipeline systems regardless of operation (i.e. transmission, bi-directional flow at storage facilities), existing features (i.e. dents or preexisting cracks), material properties(i.e. pipe vintage, grade) and pipeline geometry, needs to be developed. The work reported in this paper describes the work sponsored by the Interstate Natural Gas Association of America (INGAA) to support gas pipeline operators in completing Integrity Verification Programs (IVP) by defining which pipeline segments can reasonably be considered to be at risk of fatigue damage accumulation and which are not. This paper presents an overview of the work completed to develop a defensible approach to demonstrate the conditions under which pipeline pressure fluctuation induced fatigue is not a concern. The development of this approach, presented in this paper, considers the results of a survey of the range of cyclic severities experienced by gas pipeline operators, typical feature types and sizes that could exist in a pipeline system (i.e. mechanical damage, cracking) and the role of material properties on these assessments. The paper includes the development of directions as to the collection and analysis of SCADA pressure data to produce a pressure spectrum severity indicator (SSI) characterizing the fatigue damage potential of an operational history. This SSI is used along with fatigue susceptibility tables indicating the conditions for which fatigue would not be a concern for a pipeline segment. The susceptibility criterion relates a pipelines operation, in terms of SSI to the maximum feature size that can exist in the system before fatigue is considered a threat to pipeline integrity. The information presented in this paper would be of interest to pipeline operators, maintainers, consultants and regulators. The technical work presented in this paper was completed to support compliance with regulatory requirements and may also be used to influence the application of integrity management regulatory requirements on gas pipeline systems by providing information and processes to eliminate the need to consider fatigue as a damage accumulation process or integrity threat.
机译:人们普遍认为,与液体管道相比,天然气管道的内部工作压力波动不太可能导致疲劳破裂。可辩护的工程分析过程,表明该观察结果对所有天然气管道系统均有效,无论其运行(例如,传输,存储设施的双向流动),现有特征(例如,凹痕或预先存在的裂缝),材料特性(例如,管道的使用寿命,等级)和管道几何形状,需要进行开发。本文报道的工作描述了由美国州际天然气协会(INGAA)赞助的工作,该工作通过定义哪些管道段可以合理地认为存在疲劳损坏风险,从而支持天然气管道运营商完成完整性验证计划(IVP)。积累与否。本文介绍了完成可开发的方法的工作概述,该方法可以论证在什么条件下管道压力波动引起的疲劳是无关紧要的。本文介绍的这种方法的发展,考虑了对天然气管道运营商所经历的周期性严重程度范围,典型的特征类型和管道系统中可能存在的特征(即机械损伤,破裂)以及材料性能在这​​些评估中的作用。本文包括有关收集和分析SCADA压力数据以产生压力频谱严重性指示器(SSI)的方向的开发,该指示器表征了运行历史的潜在疲劳破坏。该SSI与疲劳敏感性表一起使用,该表指示了对于管道段而言疲劳不会引起关注的条件。敏感性标准将管道操作(根据SSI)与在认为疲劳对管道完整性的威胁之前系统中可能存在的最大特征尺寸相关联。本文中介绍的信息将使管道运营商,维护者,顾问和监管机构感兴趣。本文提出的技术工作已完成,以支持对法规要求的遵守,并且还可以通过提供信息和过程来消除将疲劳视为损害累积过程的需要,从而影响完整性管理法规要求在天然气管道系统上的应用。或完整性威胁。

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