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Non-destructive method by gamma sampling measurements for radiological characterization of a steam generator: Physical and numerical modeling for ANIMMA (23–27 June 2013)

机译:伽马采样测量的无损方法,用于蒸汽发生器的放射学表征:ANIMMA的物理和数值模型(2013年6月23日至27日)

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The radiological characterization of a steam generator consists of evaluating the global radiological activity in the tube bundle. In this paper, we present a non-destructive method and the results analysis of the gamma sampling measurements from a sample of U-tubes in the bundle. On site, the implementation of the methodology is fairly easy. But the analysis of the results is more complicated due to the long path of the gamma ray (from 60Co quite penetrating), and also the heterogeneous activity of U-tubes bundle, which have not the same life cycle. We explain why the periodic spatial arrangement complicates also the analysis. Furthermore, we have taken into account the environment of all tubes measured because of all the external influence activity of others U-tubes (the nearest, the most distant and potential hot spot). A great amount of independent influence coefficient had to be considered (roughly 18 million). Based on a physical and numerical modeling, and using a Cholesky algorithm solving the problem and saving time machine.
机译:蒸汽发生器的放射学特征包括评估管束中的总体放射学活动。在本文中,我们提出了一种非破坏性方法,并从捆绑中的U型管样品中进行了伽马采样测量的结果分析。在现场,该方法的实施相当容易。但是,由于伽玛射线的路径较长( 60 Co相当穿透),而且由于U形管束的寿命不同,因此结果的分析更为复杂。循环。我们解释了为什么周期性的空间排列也会使分析复杂化。此外,由于其他U形管的所有外部影响活动(最近,最远和潜在的热点),我们也考虑了所有被测管的环境。必须考虑大量的独立影响系数(大约1800万)。基于物理和数值建模,并使用Cholesky算法解决问题并节省机器时间。

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