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High-intensity power-resolved radiation imaging of an operational nuclear reactor

机译:运行中核反应堆的高强度功率分辨辐射成像

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摘要

Knowledge of the neutron distribution in a nuclear reactor is necessary to ensure the safe and efficient burnup of reactor fuel. Currently these measurements are performed by in-core systems in what are extremely hostile environments and in most reactor accident scenarios it is likely that these systems would be damaged. Here we present a compact and portable radiation imaging system with the ability to image high-intensity fast-neutron and gamma-ray fields simultaneously. This system has been deployed to image radiation fields emitted during the operation of a TRIGA test reactor allowing a spatial visualization of the internal reactor conditions to be obtained. The imaged flux in each case is found to scale linearly with reactor power indicating that this method may be used for power-resolved reactor monitoring and for the assay of ongoing nuclear criticalities in damaged nuclear reactors.
机译:必须了解核反应堆中的中子分布,以确保安全有效地燃烧反应堆燃料。当前,这些测量是在极端恶劣的环境中由堆芯系统执行的,并且在大多数反应堆事故情况下,这些系统很可能会损坏。在这里,我们提出了一种紧凑且便携式的放射线成像系统,它能够同时对高强度的快速中子和伽马射线场进行成像。该系统已被部署用于对TRIGA测试反应堆运行期间发出的辐射场进行成像,从而可以对内部反应堆条件进行空间可视化。发现在每种情况下成像的通量均与反应堆功率成线性比例,表明该方法可用于功率分辨反应堆监测以及用于分析受损核反应堆中正在进行的核临界状态的方法。

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