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Preliminary study of nuclear fuel element testing based on coded source neutron imaging

机译:基于编码源中子成像的核燃料元件测试的初步研究

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Neutron radiography (NR) is one of the most important nondestructive testing methods, which is sensitive to low density materials. Especially, Neutron transfer imaging method could be used to test radioactivity materials refraining from y effect, but it is difficult to realize tomography. Coded source neutron imaging (CSNI) is a newly NR method developed fast in the last several years. The distance between object and detector is much longer than traditional NR, which could be used to test radioactivity materials. With pre-reconstruction process from fold-cover projections, CSNI could easily realize tomography. This thesis carries out preliminary study on the nuclear fuel element testing by coded source neutron imaging. We calculate different enrichment, flaws and activity in nuclear fuel elements tested by CSNI with Monte-Carlo simulation. The results show that CSNI could be a useful testing method for nuclear fuel element testing.
机译:中子射线照相(NR)是最重要的无损检测方法之一,它对低密度材料很敏感。特别地,中子转移成像方法可以用于测试不受y效应影响的放射性材料,但是难以实现层析成像。编码源中子成像(CSNI)是最近几年快速发展的一种新的NR方法。物体与探测器之间的距离比传统的NR长得多,传统的NR可用于测试放射性物质。借助折叠式投影的预重建过程,CSNI可以轻松实现断层扫描。本文对通过编码源中子成像技术进行的核燃料元素测试进行了初步研究。我们通过蒙特卡洛模拟法计算了CSNI测试的核燃料元素的不同富集度,缺陷和活度。结果表明,CSNI可能是核燃料元素测试的一种有用的测试方法。

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