首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Investigations of active interrogation techniques to detect special nuclear material in maritime environments: Standoff interrogation of small- and medium-sized cargo ships
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Investigations of active interrogation techniques to detect special nuclear material in maritime environments: Standoff interrogation of small- and medium-sized cargo ships

机译:侦查海上环境中特殊核材料的主动讯问技术的研究:中小型货船的僵持讯问

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In this work, several active interrogation (AI) sources are evaluated to determine their usefulness in detecting the presence of special nuclear material (SNM) in fishing trawlers, small cargo transport ships, and luxury yachts at large standoff distances from the AI source and detector. This evaluation is performed via computational analysis applying Monte Carlo methods with advanced variance reduction techniques. The goal is to determine the AI source strength required to detect the presence of SNM. The general conclusion of this study is that AI is not reliable when SNM is heavily shielded and not tightly coupled geometrically with the source and detector, to the point that AI should not be considered a via interrogation option in these scenarios. More specifically, when SNM is shielded by hydrogenous material large AI source strengths are required if detection is based on neutrons, which is not surprising. However, if the SNM is shielded by high-Z material the required AI source strengths are not significantly different if detection is based on neutrons or photons, which is somewhat surprising. Furthermore, some of the required AI source strengths that were calculated are very large. These results coupled with the realities of two ships moving independently at sea and other assumptions made during this analysis make the use of standoff AI in the maritime environment impractical.
机译:在这项工作中,对几个主动询问(AI)源进行了评估,以确定它们在侦查拖网渔船,小型货物运输船和豪华游艇中与AI源和检测器相距较远距离时是否存在特殊核材料(SNM)的有用性。 。该评估是通过采用蒙特卡洛方法和高级方差减少技术的计算分析来执行的。目的是确定检测SNM存在所需的AI源强度。这项研究的总体结论是,当SNM被严重屏蔽且未与源和检测器几何紧密耦合时,AI不可靠,以至于在这些情况下,不应将AI视为通过询问选项。更具体地说,如果SNM被含氢材料屏蔽,则如果检测基于中子,则需要较大的AI源强度,这不足为奇。但是,如果SNM被高Z材料屏蔽,则如果基于中子或光子进行检测,则所需的AI源强度不会显着不同,这有点令人惊讶。此外,计算出的某些所需AI源强度非常大。这些结果,加上两艘船舶在海上独立移动的现实,以及在此分析过程中做出的其他假设,使得在海洋环境中使用僵持的AI不切实际。

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