首页> 外文会议>International conference on mathematics, computational methods reactor physics;MC 2009 >DESIGN OF A NEUTRON DETECTOR ARRAY FOR SNM OPTIMIZED BY RADIATION TRANSPORT METHODS
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DESIGN OF A NEUTRON DETECTOR ARRAY FOR SNM OPTIMIZED BY RADIATION TRANSPORT METHODS

机译:辐射传输法优化的SNM中子探测器阵列设计

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The research work presented here includes our efforts to develop a useful neutron detection device using He-3 detectors, a standard neutron detection methodology widely used in homeland security applications. The design of a He-3 neutron spectroscopy system, simulated entirely via computational methods, is proposed to resolve the spectra from Special Nuclear Materials (SNM) neutron sources of high interest. We incorporate a unique ability to effectively perform robust large-scale radiation transport simulations for SNM detection, using parallel computing methods. To demonstrate our methodology, we present the optimally detected spectral differences between SNM materials (Plutonium and Uranium), metal and oxide, using ideal filter materials. Specific focus was made to establish the limits of He-3 spectroscopy using ideal filter materials. The proposed design was then determined by replacing ideal filters with real materials, and comparing reaction rates with similar data from the ideal material suite. In our approach, we considered various configurations of moderating and attenuating materials placed around neutron sensitive detectors with a goal of isolating different parts of the neutron spectrum. To accomplish this, neutron transport simulations were performed among a suite of moderators and detectors in a "transport optimized" detector array; this enabled an optimum neutron interactions to facilitate positive detection and characterization of the incident neutrons.
机译:这里介绍的研究工作包括我们努力开发使用He-3探测器的有用中子探测装置的方法,He-3探测器是在国土安全应用中广泛使用的标准中子探测方法。提出了通过计算方法完全模拟的He-3中子光谱系统的设计,以解决来自特殊核材料(SNM)中子源的光谱问题。我们采用了独特的功能,可以使用并行计算方法有效地执行强大的大规模辐射传输模拟,以进行SNM检测。为了证明我们的方法,我们介绍了使用理想的滤光片材料在SNM材料(P和铀),金属和氧化物之间最佳检测到的光谱差异。我们特别关注使用理想的过滤材料来确定He-3光谱的极限。然后,通过用实际材料替换理想的过滤器,并将反应速率与理想材料套件中的相似数据进行比较,来确定拟议的设计。在我们的方法中,我们考虑了围绕中子敏感探测器放置的各种缓和和衰减材料配置,目的是隔离中子谱的不同部分。为此,在“运输优化”探测器阵列中的一组减速器和探测器之间进行了中子输运模拟。这实现了最佳的中子相互作用,有助于对入射中子进行积极的检测和表征。

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