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A comprehensive framework for evaluation of piping reliability due to erosion-corrosion for risk-informed inservice inspection

机译:评估因腐蚀而导致的管道可靠性的全面框架,以进行有风险的在役检查

摘要

Risk-Informed In-Service Inspection (RI-ISI) aims at prioritizing the components for inspection within the permissible risk level therebyavoiding unnecessary inspections. The two main factors that go into the prioritization of components are failure frequency and theconsequence of the failure of these components. The study has been focused on piping component as presented in this paper. Failurefrequency of piping is highly influenced by the degradation mechanism acting on it and these frequencies are modified as and whenmaintenance/ISI activities are taken up. In order to incorporate the effects of degradation mechanism and maintenance activities, a Markovmodel has been suggested as an efficient method for realistic analysis. Emphasis has been given to the erosion–corrosion mechanism, whichis dominant in Pressurized Heavy Water Reactors. The paper highlights an analytical model for estimating the corrosion rates and also forfinding the failure probability of piping, which can be further used in RI-ISI.
机译:风险知情的服务中检查(RI-ISI)的目的是在允许的风险级别内对要检查的组件进行优先级排序,从而避免不必要的检查。优先考虑组件的两个主要因素是故障频率和这些组件的故障后果。该研究集中于本文介绍的管道组件。管道的失效频率受作用于其上的降解机制的高度影响,并且在进行维护/ ISI活动时会修改这些频率。为了合并降级机制和维护活动的影响,提出了马尔可夫模型作为进行现实分析的有效方法。重点是在重水加压反应堆中占主导地位的腐蚀-腐蚀机理。本文着重介绍了一种用于估计腐蚀速率并确定管道失效概率的分析模型,该模型可进一步用于RI-ISI。

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