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Development of Active Neutron NDA Techniques for Nuclear Nonproliferation and Nuclear Security (1)Study on next generation DDA

机译:用于核不扩散和核保安的主动中子NDA技术的发展(1)下一代DDA研究

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Under the collaboration program with the EC Joint Research Centre, we are carrying out the R&D program "Development of active neutron NDA techniques for nuclear non-proliferation and nuclear security" with DDA (Differential Die-away Analysis), NRTA (Neutron Resonance Transmission Analysis), PGA (Prompt Gamma-ray Analysis) / NRCA (Neutron Resonance Capture Analysis) and DGS (Delayed Gamma-ray Spectroscopy). The purpose of this program is to update the NDA techniques for high radioactive nuclear materials such as spent fuel and next generation MA transmutation fuel. In this paper, we present the outline of the current activity and study on next generation DDA. The goal of this study is to establish the DDA technique for high radiation nuclear materials with small measurement uncertainty. The next generation DDA which is going to be developed in this program has mainly following features. (1) Fast neutron rich neutron field is generated in the cavity of the DDA system using a DT neutron generator and fast neutron reflector made of steel or stainless steel, (2) thermal neutrons in a target sample are produced using a neutron moderator made of HDPE etc. which surrounds the target sample, and (3) the amount of fissile materials is calculated by total fission neutron counts and dieaway time. In this manuscript, mainly the differences between generation Ⅰ, Ⅱ and Ⅲ of JAEA-type DDA is introduced, and simulation study on ideal and practical generation Ⅲ JAEA-type DDA systems is reported.
机译:在与EC联合研究中心的合作计划下,我们正在与DDA(差模消失分析),NRTA(中子共振传输分析)一起执行“开发用于核不扩散和核安全的有源中子NDA技术”的研发计划。 ),PGA(提示伽马射线分析)/ NRCA(中子共振捕获分析)和DGS(延迟伽马射线光谱)。该计划的目的是更新用于高放射性核材料(例如乏燃料和下一代MA mut变燃料)的NDA技术。在本文中,我们介绍了当前活动的概述并研究了下一代DDA。这项研究的目的是建立用于测量不确定性小的高辐射核材料的DDA技术。将在此程序中开发的下一代DDA主要具有以下功能。 (1)使用DT中子发生器和由钢或不锈钢制成的快速中子反射器,在DDA系统的腔中生成快速中子富集中子场;(2)使用由以下材料制成的中子减速器产生目标样品中的热中子:围绕目标样品的HDPE等;(3)通过总裂变中子计数和死亡时间计算出易裂变材料的量。本文主要介绍了JAEA型DDA的Ⅰ,Ⅱ和Ⅲ代之间的区别,并报道了理想和实用的ⅢJAEA型DDA系统的仿真研究。

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