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A predictive approach to fitness-for-service assessment of pitting corrosion

机译:一种点蚀腐蚀适应性评估的预测方法

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Pitting corrosion is a localized corrosion that often causes leak and failure of process components. The aim of this work is to present a new fitness-for-service (FFS) assessment methodology for process equipment to track and predict pitting corrosion. In this methodology, pit density is modeled using a non-homogenous Poisson process and induction time for pit initiation is simulated as the realization of a Weibull process. The non-homogenous Markov process is used to estimate maximum pit depth, considering that only the current state of the damage influences its future development. Subsequently, the distributions of the operating pressure and the estimated burst pressure of the defected component are integrated with Monte Carlo simulations and First Order Second Moment (FOSM) method to calculate the reliability index and probability of failure. This methodology provides a more realistic failure assessment and enables consideration of uncertainty associated with estimating pit characteristics. The practical application of the proposed model is demonstrated using a piping case study. (C) 2015 Elsevier Ltd. All rights reserved.
机译:点蚀是一种局部腐蚀,通常会导致过程部件泄漏和故障。这项工作的目的是为工艺设备提供一种新的适用性(FFS)评估方法,以跟踪和预测点蚀。在这种方法中,使用非均匀的泊松过程对凹坑密度进行建模,并且将凹坑萌生的诱导时间模拟为威布尔过程的实现。考虑到仅损伤的当前状态会影响其未来的发展,因此使用非均匀的马尔可夫过程来估计最大凹坑深度。随后,将缺陷部件的工作压力分布和估计的爆破压力分布与蒙特卡洛模拟和一阶第二矩(FOSM)方法集成在一起,以计算可靠性指标和故障概率。这种方法提供了更实际的失效评估,并可以考虑与估计凹坑特性相关的不确定性。通过管道案例研究证明了所提出模型的实际应用。 (C)2015 Elsevier Ltd.保留所有权利。

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