首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Investigation of active interrogation techniques to detect special nuclear material in maritime environments: Boarded search of a cargo container ship
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Investigation of active interrogation techniques to detect special nuclear material in maritime environments: Boarded search of a cargo container ship

机译:调查主动侦查技术以检测海洋环境中的特殊核材料:登上货船的搜查

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The detonation of a terrorist nuclear weapon in the United States would result in the massive loss of life and grave economic damage. Even if a device was not detonated, its known or suspected presence aboard a cargo container ship in a U.S. port would have major economic and political consequences. One possible means to prevent this threat would be to board a ship at sea and search for the device before it reaches port. The scenario considered here involves a small Coast Guard team with strong intelligence boarding a container ship to search for a nuclear device. Using active interrogation, the team would nonintrusively search a block of shipping containers to locate the fissile material. Potential interrogation source and detector technologies for the team are discussed. The methodology of the scan is presented along with a technique for calculating the required interrogation source strength using computer simulations. MCNPX was used to construct a computer model of a container ship, and several search scenarios were simulated. The results of the simulations are presented in terms of the source strength required for each interrogation scenario. Validation measurements were performed in order to scale these simulation results to expected performance. Interrogations through the short (2.4 m) axis of a standardized shipping container appear to be feasible given the entire range of container loadings tested. Interrogations through several containers at once or a single container through its long (12.2 m) axis do not appear to be viable with a portable interrogation system.
机译:美国恐怖分子核武器的爆炸将导致人员伤亡和严重的经济损失。即使未爆炸装置,在美国港口的货船上已知或怀疑存在该装置也将产生重大的经济和政治后果。防止这种威胁的一种可能方法是在海上登船并在到达港口之前搜索设备。这里考虑的方案涉及一个海岸警卫队较小的小组,该小组有强大的情报登上一艘集装箱船以寻找核装置。通过主动审问,该小组将以非侵入方式搜索一批运输集装箱来查找易裂变材料。讨论了该小组的潜在询问源和检测器技术。提出了扫描方法以及使用计算机模拟计算所需询问源强度的技术。 MCNPX用于构建集装箱船的计算机模型,并模拟了几种搜索方案。仿真结果以每种讯问场景所需的源强度表示。为了将这些仿真结果缩放到预期的性能,执行了验证测量。考虑到测试的整个集装箱装载范围,通过标准运输集装箱的短轴(2.4 m)进行询问似乎是可行的。一次通过多个容器的询问或通过其长轴(12.2 m)的单个容器的询问对于便携式询问系统似乎不可行。

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