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Moderator design studies for a new neutron reference source based on the D-T fusion reaction

机译:基于D-T聚变反应的新中子参考源主持人设计研究

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The radioactive isotope Californium-252 (Cf-252) is relied upon internationally as a neutron calibration source for ionizing radiation dosimetry because of its high specific activity. The source may be placed within a heavy-water (D2O) moderating sphere to produce a softened spectrum representative of neutron fields common to commercial nuclear power plant environments, among others. Due to termination of the U.S. Department of Energy loan/lease program in 2012, the expense of obtaining Cf-252 sources has undergone a significant increase, rendering high output sources largely unattainable. On the other hand, the use of neutron generators in research and industry applications has increased dramatically in recent years. Neutron generators based on deuteriumtritium (D-T) fusion reaction provide high neutron fluence rates and, therefore, could possibly be used as a replacement for Cf-252. To be viable, the 14 MeV D-T output spectrum must be significantly moderated to approximate common workplace environments. This paper presents the results of an effort to select appropriate moderating materials and design a configuration to reshape the primary neutron field toward a spectrum approaching that from a nuclear power plant workplace. A series of Monte-Carlo (MCNP) simulations of single layer high- and low-Z materials are used to identify initial candidate moderators. Candidates are refined through a similar series of simulations involving combinations of 2-5 different materials. The simulated energy distribution using these candidate moderators are rated in comparison to a target spectrum. Other properties, such as fluence preservation and/or enhancement, prompt gamma production and other characteristics are also considered. (C) 2016 Elsevier Ltd. All rights reserved.
机译:放射性同位素Cali 252(Cf-252)因其高比活度而在国际上被用作电离辐射剂量法的中子校准源。可以将源放置在重水(D2O)调节球内,以产生代表商业核电站环境共有的中子场的软化光谱。由于2012年美国能源部的贷款/租赁计划终止,获得Cf-252光源的费用已显着增加,使得高输出光源在很大程度上无法实现。另一方面,近年来,中子发生器在研究和工业应用中的使用急剧增加。基于氘tri(D-T)聚变反应的中子发生器提供高中子注量速率,因此有可能被用作Cf-252的替代品。为了可行,必须显着降低14 MeV D-T的输出频谱,以近似常见的工作环境。本文介绍了选择合适的缓和材料并设计配置以将主中子场重塑到接近核电站工作场所光谱的努力成果。单层高Z和低Z材料的一系列蒙特卡洛(MCNP)模拟用于识别初始候选主持人。通过一系列类似的模拟(包括2-5种不同材料的组合)来完善候选对象。与目标频谱相比,使用这些候选主持人的模拟能量分布进行了评级。还考虑了其​​他性质,例如通量保存和/或增强,快速伽马产生和其他特征。 (C)2016 Elsevier Ltd.保留所有权利。

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