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Monte Carlo study of detection systems of explosives and illicit substances using a D-D neutron generator

机译:使用D-D中子发生器的炸药和非法物质检测系统的蒙特卡洛研究

摘要

Prompt gamma neutron activation analysis (PGNAA) using a Deuterium-Deuterium (D-D) neutron generator, is one of the most promising method to detect explosives and illicit substances. Using Monte Carlo methods with MCNP6 code, a model of a DD Generator (DD-110 Adelphi Technology [1]) has been built with one or two NaI(Tl) detectors of 1.5" x 1" size in order to determine an optimal configuration. Several calculations have been performed to analyse the detection power for samples of different explosives: RDX, Ammonium Nitrate, land mines, military and homemade explosives, have been selected. Different models have been made varying moderator and shielding thicknesses (polyethylene and lead) and we conclude that the configuration with 10 cm thickness of polyethylene, is the best configuration to obtain a neutron thermal flux appropriate for detection of these simulated samples of explosives
机译:使用氘-氘(D-D)中子发生器的快速γ中子活化分析(PGNAA)是检测爆炸物和非法物质的最有前途的方法之一。使用带有MCNP6代码的蒙特卡洛方法,已经构建了DD发生器(DD-110 Adelphi技术[1])的模型,该模型使用一个或两个1.5“ x 1”大小的NaI(Tl)检测器来确定最佳配置。已经进行了一些计算来分析不同炸药样品的检测能力:已选择了RDX,硝酸铵,地雷,军事炸药和自制炸药。已经制成了不同的模型,从而改变了慢化剂和屏蔽层的厚度(聚乙烯和铅),我们得出的结论是,聚乙烯厚度为10厘米的构型是获得适于检测这些爆炸物模拟样品的中子热通量的最佳构型

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