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Evaluating Fitness-for-Service of Corroded Metal Pipelines: Structural Reliability Bases

机译:评估腐蚀金属管道的使用寿命:结构可靠性基础

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摘要

This paper presents a methodology for evaluating fitness-for-service (i.e., safety, serviceability, and reliability) of corroded metal pipelines. A model for predicting pipe failure pressure is developed from a series of nonlinear finite-element analyses of metal pipes of different diameters and wall thicknesses with corrosion defects of different sizes and depths. The strength limit state (burst) and service limit states (yield and leakage) both are investigated in the pipe fitness-for-service analyses. Uncertainties associated with in situ measurement of flaw size, pipe geometry, pipe material properties, operating pressures, and corrosion in exposure environments are considered in a time-dependent reliability analysis of pipe performance over a service life of 50 years. Engineering variables that have the most significant impact on the reliability of a corroded pipe are identified through Monte Carlo-based sensitivity studies. Finally, a set of simple reliability-based evaluation tools are presented for assessing pipeline safety. The procedure and the results presented in this paper can be used to support decisions related to continued safe operation of pipes, optimal pipe inspection intervals, and maintenance schedules.
机译:本文提出了一种评估腐蚀的金属管道的适用性(即安全性,可维修性和可靠性)的方法。通过对具有不同尺寸和深度的腐蚀缺陷的不同直径和壁厚的金属管进行一系列非线性有限元分析,建立了预测管道破坏压力的模型。强度极限状态(爆裂)和使用极限状态(屈服和泄漏)均在管道适用性分析中进行了研究。在对使用寿命长达50年的管道性能进行时间​​依赖性可靠性分析时,会考虑到与缺陷尺寸,管道几何形状,管道材料特性,工作压力和暴露环境中的腐蚀的原位测量相关的不确定性。通过基于蒙特卡洛的敏感性研究确定了对腐蚀管道的可靠性影响最大的工程变量。最后,提出了一套简单的基于可靠性的评估工具,用于评估管道安全性。本文介绍的过程和结果可用于支持与管道的持续安全运行,最佳管道检查间隔和维护计划有关的决策。

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