Impact of Fuel Enrichment on Key Naval Reactor Characteristics and Non-Proliferation Concerns

IF 0.7 Q3 INTERNATIONAL RELATIONS Science & Global Security Pub Date : 2020-05-02 DOI:10.1080/08929882.2020.1757827
E. Mané
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Abstract

Abstract This work reports on a notional compact naval reactor core running at 50 MWt full power—designed to investigate core life, reactivity margins and plutonium inventory for different levels of enrichment. A simplified computer model was constructed with the OpenMC neutron transport code and coupled to ONIX to calculate depletion of the initial fuel load—uranium dioxide mixed with gadolinia. It is shown that a notional low enriched uranium naval core could sustain criticality for 5–7 years at full-power and overcome xenon poison transients. Self-shielding of the burnable poison has been found to be significant in the radial direction and should be considered in such core design. Negative Doppler and moderator coefficients have been found for the low enriched cores. The plutonium inventory of the spent fuel produced at the end of life as a function of enrichment is also investigated. This study bears direct implications for the nonproliferation regime by suggesting that it may be possible to reduce the technical incentives for the use of highly enriched uranium on naval reactors.
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燃料浓缩对海军关键反应堆特性的影响及防扩散问题
摘要:本文报道了一种以50mwt全功率运行的小型海军反应堆堆芯,旨在研究不同浓缩水平下堆芯寿命、反应性裕度和钚库存。利用OpenMC中子输运程序建立了简化的计算机模型,并与ONIX进行了耦合,计算了初始燃料负荷二氧化铀混合钆的损耗。结果表明,一种设想的低浓缩铀海军堆芯可以在全功率下维持5-7年的临界状态,并克服氙中毒瞬变。可燃毒物在径向上具有显著的自屏蔽性,在设计中应予以考虑。低富集岩心存在负多普勒系数和慢化系数。在寿命结束时产生的乏燃料的钚库存作为浓缩的函数也进行了研究。这项研究对核不扩散制度有直接影响,因为它表明,有可能减少在海军反应堆上使用高浓缩铀的技术激励。
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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