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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Californium interrogation prompt neutron (CIPN) instrument for non-destructive assay of spent nuclear fuel-Design concept and experimental demonstration
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Californium interrogation prompt neutron (CIPN) instrument for non-destructive assay of spent nuclear fuel-Design concept and experimental demonstration

机译:乏核燃料无损检测用inter探询中子(CIPN)仪器-设计概念和实验演示

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摘要

This paper presents results of the first experimental demonstration of the Californium Interrogation Prompt Neutron (CIPN) instrument developed within a multi-year effort launched by the Next Generation Safeguards Initiative Spent Fuel Project of the United States Department of Energy. The goals of this project focused on developing viable non-destructive assay techniques with capabilities to improve an independent verification of spent fuel assembly characteristics. For this purpose, the CIPN instrument combines active and passive neutron interrogation, along with passive gamma-ray measurements, to provide three independent observables. This paper describes the initial feasibility demonstration of the CIPN instrument, which involved measurements of four pressurized-water-reactor spent fuel assemblies with different levels of burnup and two initial enrichments. The measurements were performed at the Post-Irradiation Examination Facility at the Korea Atomic Energy Institute in the Republic of Korea. The key aim of the demonstration was to evaluate CIPN instrument performance under realistic deployment conditions, with the focus on a detailed assessment of systematic uncertainties that are best evaluated experimentally. The measurements revealed good positioning reproducibility, as well as a high degree of insensitivity of the CIPN instrument's response to irregularities in a radial burnup profile. Systematic uncertainty of individual CIPN instrument signals due to assembly rotation was found to be < 4.5%, even for assemblies with fairly extreme gradients in the radial burnup profile. These features suggest that the CIPN instrument is capable of providing a good representation of assembly average characteristics, independent of assembly orientation in the instrument.
机译:本文介绍了由美国能源部的“下一代保障计划”乏燃料项目发起的多年努力中开发的“ Inter讯询问中子”(CIPN)仪器的首次实验演示结果。该项目的目标集中在开发可行的无损分析技术上,该技术具有改善乏燃料组件特性的独立验证能力。为此,CIPN仪器将主动和被动中子询问与被动伽马射线测量结合起来,提供了三个独立的观测值。本文介绍了CIPN仪器的初步可行性演示,该仪器涉及对具有不同燃耗水平和两次初始浓缩的四个压水反应堆乏燃料组件的测量。测量是在大韩民国韩国原子能研究所的辐照后检查设施中进行的。演示的主要目的是评估CIPN仪器在实际部署条件下的性能,重点是对系统不确定性进行详细评估,最好通过实验来评估。测量结果显示了良好的定位再现性,以及CIPN仪器对径向燃尽曲线中的不规则性的高度不敏感性。即使对于径向燃耗曲线中具有相当大的梯度的组件,由于组件旋转而导致的单个CIPN仪器信号的系统不确定性也被发现小于<4.5%。这些特征表明,CIPN仪器能够很好地表示装配平均特性,而与装配中的装配方向无关。

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