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Characterising encapsulated nuclear waste using cosmic-ray muon tomography

机译:使用宇宙射线μ子层析成像表征封装的核废料

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Tomographic imaging techniques using the Coulomb scattering of cosmic-ray muons have been shown previously to successfully identify and characterise low- and high-Z materials within an air matrix using a prototype scintillating-fibre tracker system. Those studies were performed as the first in a series to assess the feasibility of this technology and image reconstruction techniques in characterising the potential high-Z contents of legacy nuclear waste containers for the U.K. Nuclear Industry. The present work continues the feasibility study and presents the first images reconstructed from experimental data collected using this small-scale prototype system of low- and high-Z materials encapsulated within a concrete-filled stainless-steel container. Clear discrimination is observed between the thick steel casing, the concrete matrix and the sample materials assayed. These reconstructed objects are presented and discussed in detail alongside the implications for future industrial scenarios.
机译:以前已经显示了使用宇宙射线μ子的库仑散射的层析成像技术,可以使用原型闪烁光纤跟踪器系统成功地识别和表征空气​​基质中的低Z和高Z材料。这些研究是系列研究中的第一项研究,目的是评估该技术和图像重建技术在表征英国核工业遗留核废料容器中潜在的高Z含量方面的可行性。本工作将继续进行可行性研究,并提供从使用低和高Z材料的小型原型系统收集的实验数据中重建的第一张图像,这些原型系统封装在混凝土填充的不锈钢容器中。在厚钢外壳,混凝土基质和被测样品材料之间观察到明显的区别。这些重建对象将对未来工业场景的含义进行详细介绍和讨论。

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