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Bayesian analysis of flaw sizing data of the NESC III exercise

机译:NESC III运动缺陷数据的贝叶斯分析

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Non-destructive inspections are performed to give confidence of the non-existence of flaws exceeding a certain safe limit in the inspected structural component. The principal uncertainties related to these inspections are the probability of not detecting an existing flaw larger than a given size, the probability of a false call, and the uncertainty related to the sizing of a flaw. Inspection reliability models aim to account for these uncertainties. This paper presents the analysis of sizing uncertainty of flaws for the results of the NESC III Round Robin Trials on defect-containing dissimilar metal welds. Model parameters are first estimated to characterize the sizing capabilities of various teams. A Bayesian updating of the flaw depth distribution is then demonstrated by combining information from measurement results and sizing performance.
机译:进行非破坏性检查,以施加不存在的缺陷的置信度超过所检查的结构组分的某种安全限制。 与这些检查有关的主要不确定性是没有检测到大于给定大小的现有缺陷的概率,虚假呼叫的概率以及与缺陷的尺寸相关的不确定性。 检验可靠性模型旨在考虑这些不确定性。 本文介绍了缺陷缺陷不同金属焊缝中NESC III循环试验的缺陷的不确定性的分析。 首先估计模型参数,以表征各个团队的大小尺寸。 然后通过将信息与测量结果和大小的性能相结合来展示探伤深度分布的贝叶斯更新。

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