Verifying North Korea’s Plutonium Production with Nuclear Archaeology

IF 0.7 Q3 INTERNATIONAL RELATIONS Science & Global Security Pub Date : 2021-09-02 DOI:10.1080/08929882.2021.1999054
J. D. T. D. Lanversin, M. Kütt
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引用次数: 2

Abstract

Abstract North Korea produced weapon-grade plutonium in its graphite-moderated 5-MWe reactor. Estimating the total production of fissile materials provides an important baseline for denuclearization efforts. Nuclear archaeology can improve such production estimates by measuring isotope ratios in the graphite moderator of the reactor. The accumulation of certain trace isotopes in the graphite enables to accurately estimate life-time reactor fluence which can then be related to plutonium production. This article uses the open-source reactor physics software ONIX to simulate the operation of the 5-MWe reactor. It discusses consolidated estimates of plutonium production from 1986 to 2020 based on publicly available operation history data. An updated mathematical framework to relate isotope ratio uncertainties to fluence uncertainties and its implementation in a special ONIX module for nuclear archaeology are also presented. The module is used to identify which isotope ratios should be measured in the 5-MWe reactor to minimize uncertainties on plutonium estimation.
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用核考古学验证朝鲜的钚生产
朝鲜在其石墨慢化的5mwe反应堆中生产了武器级钚。估计裂变材料的总产量为无核化努力提供了一个重要的基准。核考古可以通过测量反应堆中石墨慢化剂的同位素比率来改进这种产量估计。石墨中某些痕量同位素的积累使人们能够准确地估计反应堆寿命的影响,从而与钚的生产有关。本文使用开源的反应堆物理软件ONIX来模拟5mwe反应堆的运行。它讨论了1986年至2020年钚产量的综合估计,这是基于公开的运行历史数据。本文还介绍了一个更新的数学框架,将同位素比率不确定性与影响不确定性联系起来,并在核考古的特殊ONIX模块中实现。该模块用于确定在5mwe反应堆中应测量哪些同位素比率,以尽量减少钚估算的不确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Science & Global Security
Science & Global Security INTERNATIONAL RELATIONS-
CiteScore
1.00
自引率
14.30%
发文量
8
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