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QUANTIFYING PROBE COVERAGE ERROR IN FEEDER THINNING ASSESSMENT

机译:送料筛分评估中的探针覆盖率误差

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Estimating the actual minimum wall thickness of a feeder pipe is subject to uncertainties associated with the inspection data. The main objective of this study is to quantify the coverage error intrinsic to the 6-probe and 14-probe feeder inspection tools, based on the analysis of over 4,400 inspection scans from Darlington and Pickering reactors. To increase confidence in the results, a smaller subset of well characterized wall thickness profiles was selected as a reference for a simulation approach. The distribution of maximum probe coverage error was estimated in terms of numerous simulated probe passes over the reference profiles. The results of the simulation study show that the maximum probe coverage error ranges from 0 mm to over 0.2 mm in some cases, with the average errors equal to 0.042 mm and 0.065 mm for the 6-probe and 14-probe, respectively. The high variation in the results was due to a strong linear correlation of coverage error with the pattern of wall thinning, with lower values associated with general thinning and higher values applicable to more localized thinning profiles. The thinning patterns were characterized quantitatively using a patch area method, which allows the results to be used for uncertainty analysis and prediction of the actual minimum thickness in a general setting.
机译:估计进料管的实际最小壁厚是受与检查数据相关联的不确定性。这项研究的主要目的是量化覆盖误差固有的6探头和14个探头进纸器检测工具的基础上,从达灵顿和皮克林反应堆超过4,400检查扫描的分析。为了提高结果的可信度,良好表征的壁厚轮廓的较小子集被选择作为用于模拟方法的参考。最大探测覆盖误差分布在众多模拟探测方面,估计经过参考轮廓。的模拟研究表明,从0mm最大探针覆盖误差范围在某些情况下超过0.2毫米,平均误差等于0.042毫米和0.065毫米分别为6和探针14的探针,结果。在结果中高变动是由于覆盖误差的与壁变薄的图案,与一般变薄和适用于更多的局部变薄型材更高值相关值低一个强线性关系。打薄图案用一补片区域的方法,其允许的结果将被用于在一般环境不确定性分析和实际最小厚度的预测定量表征。

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