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Developing the Californium Interrogation Prompt Neutron Technique to Measure Fissile Content and to Detect Diversion in Spent Nuclear Fuel Assemblies

机译:开发the询问中子技术,以测量可裂变含量并检测乏核燃料组件中的转移

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摘要

~(252)Cf Interrogation with Prompt Neutron (CIPN) detection is one of the fourteen nondestructive assay (NDA) techniques researched under the Next Generation Safeguards Initiative effort. CIPN is a relatively low-cost and lightweight instrument, and it looks like a Fork detector combined with an active interrogation source. This study of CIPN evaluates its capability of measuring fissile content and detecting diversion of fuel pins in commercial spent nuclear fuel assemblies. The design and the underlying physics of the CIPN detector are described. The response of CIPN to a series of virtual spent fuel assemblies were quantified using MCNPX simulations. The net signal of CIPN is mainly due to multiplication of the Cf source neutrons; this multiplication is dependent on both the fissile content and the neutron absorbers present in spent fuel. Two novel corrections have been introduced to account for the absorption caused by neutron absorbers. With the help of empirical fitting developed in this work, the fissile content in a target spent fuel assembly can be determined from the CIPN signal. CIPN is also tested in a series of hypothesized diversion cases. Preliminary results show that CIPN can detect the replacement of at least eight fuel pins (3 percent of total mass) with depleted uranium provided the count rate of baseline case was previously measured. In short, CIPN shows promising capability for measuring fissile content.
机译:〜(252)Cf询问中子快速提示(CIPN)检测是在下一代保障计划的努力下研究的十四种无损检测(NDA)技术之一。 CIPN是一种成本相对较低,重量轻的仪器,它看起来像是一个带有主动询问源的前叉探测器。 CIPN的这项研究评估了其测量裂变含量和检测商用乏核燃料组件中燃料销的转移的能力。描述了CIPN检测器的设计和基本物理原理。使用MCNPX模拟对CIPN对一系列虚拟乏燃料组件的响应进行了量化。 CIPN的净信号主要是由于Cf源中子的倍增。这种倍增取决于乏燃料中存在的易裂变含量和中子吸收剂。为了解决由中子吸收剂引起的吸收,引入了两种新颖的校正方法。借助这项工作中建立的经验拟合,可以从CIPN信号确定目标乏燃料组件中的易裂变含量。 CIPN还在一系列假设的转移案例中进行了测试。初步结果表明,只要事先测量了基准案例的计数率,CIPN就能检测到用贫铀替代至少八个燃料销(占总质量的3%)。简而言之,CIPN展现出了测量裂变含量的有前途的能力。

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  • 来源
    《Journal of Nuclear Materials Management》 |2012年第3期|p.49-57|共9页
  • 作者单位

    Nuclear Nonproliferation Division, Los Alamos National Laboratory, Los Alamos, New Mexico USA;

    Nuclear Nonproliferation Division, Los Alamos National Laboratory, Los Alamos, New Mexico USA;

    Nuclear Nonproliferation Division, Los Alamos National Laboratory, Los Alamos, New Mexico USA;

    Nuclear Nonproliferation Division, Los Alamos National Laboratory, Los Alamos, New Mexico USA;

    Nuclear Nonproliferation Division, Los Alamos National Laboratory, Los Alamos, New Mexico USA;

    Nuclear Nonproliferation Division, Los Alamos National Laboratory, Los Alamos, New Mexico USA;

    Nuclear Nonproliferation Division, Los Alamos National Laboratory, Los Alamos, New Mexico USA;

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