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Cosmic ray muon computed tomography of spent nuclear fuel in dry storage casks

机译:干储存桶中乏核燃料的宇宙射线μon计算机断层扫描

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Radiography with cosmic ray muon scattering has proven to be a successful method of imaging nuclear material through heavy shielding. Of particular interest is monitoring dry storage casks for diversion of plutonium contained in spent reactor fuel. Using muon tracking detectors that surround a cylindrical cask, cosmic ray muon scattering can be simultaneously measured from all azimuthal angles, giving complete tomographic coverage of the cask interior. This paper describes the first application of filtered back projection algorithms, typically used in medical imaging, to cosmic ray muon scattering imaging. The specific application to monitoring spent nuclear fuel in dry storage casks is investigated via GEANT4 simulations. With a cylindrical muon tracking detector surrounding a typical spent fuel cask, simulations indicate that missing fuel bundles can be detected with a statistical significance of ~18σ in less than two days exposure and a sensitivity at lσ to a 5% missing portion of a fuel bundle. Potential detector technologies and geometries are discussed.
机译:带有宇宙射线μ子散射的射线照相术已被证明是通过重型屏蔽对核材料成像的成功方法。特别令人关注的是监视干燥储存桶中乏反应堆燃料中所含p的转移。使用围绕圆柱桶的μ子跟踪检测器,可以同时从所有方位角测量宇宙射线μ子的散射,从而对整个桶内部进行完整的层析成像。本文介绍了通常在医学成像中使用的滤波反投影算法在宇宙射线μ子散射成像中的首次应用。通过GEANT4模拟研究了监测干式储存桶中乏核燃料的具体应用。使用圆柱形的μon跟踪探测器围绕典型的乏燃料桶,模拟表明,在不到两天的暴露时间内,可以检测到燃料束丢失的统计显着性为〜18σ,对燃料束中5%的丢失部分的灵敏度为lσ。 。讨论了潜在的检测器技术和几何形状。

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