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Characteristics of Muon Computed Tomography of Used Fuel Casks Using Algebraic Reconstruction

机译:用代数重建对用过的燃料箱进行Muon计算机断层扫描的特征

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Cosmic raymuons passing through matter lose energy from inelastic collisions with electrons and are deflected from nuclei due to multiple Coulomb scattering (MCS). The recent developments in position sensitive muon detectors that can measure incoming and outgoing trajectories of individual muons indicate that MCS could be an excellent candidate for spent nuclear fuel imaging. The main purpose of this paper is to evaluate tomographic scanning of spent nuclear fuel stored within vertical and horizontal dry storage casks. A quantitative analysis of the characteristics of images obtained with filtered back projection (FBP) and algebraic reconstruction techniques (ART) are presented herein, as such a comparison has not been carried out in the past. FBP is a fast tool to determine object boundaries. ART can include muon path models and prior knowledge that can improve resolution and reduce measurement time. The results demonstrate that missing fuel assemblies can be identified with more than 5 projections and that use of muon momentum significantly increases image resolution. It is expected that MCS can be used to successfully reconstruct the dry cask contents and allow identification of all described scenarios in hours. It is also expected that when total variation minimization and a non-local mean filter are applied, ART may yield much better image quality than FBP.
机译:穿过物质的宇宙射线通过与电子的非弹性碰撞而失去能量,并由于多重库仑散射(MCS)而从原子核偏转。可以测量单个μ子的进出轨迹的位置敏感型μ子探测器的最新发展表明,MCS可能是乏核燃料成像的极佳选择。本文的主要目的是评估存储在垂直和水平干燥存储桶中的乏核燃料的断层扫描。本文介绍了使用滤波反投影(FBP)和代数重建技术(ART)获得的图像特征的定量分析,因为过去从未进行过这种比较。 FBP是确定对象边界的快速工具。 ART可以包括介子路径模型和可以提高分辨率并减少测量时间的先验知识。结果表明,可以用5个以上的投影来识别缺少的燃料组件,并且使用μon动量可显着提高图像分辨率。可以预期,MCS可用于成功地重建干桶内容物,并允许在数小时内识别所有描述的方案。还可以预期,当应用总变化最小化和非局部均值滤波器时,ART可以产生比FBP更好的图像质量。

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