快堆冷却剂核动力学

IF 0.4 4区 工程技术 Q4 NUCLEAR SCIENCE & TECHNOLOGY
E. F. Seleznev, A. M. Boldyrev, E. P. Lyapin
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引用次数: 0

摘要

在 BN-600 和 BN-800 Beloyarskaya 核反应堆核素动力学计算程序的现代化过程中,使用各种方法(包括不确定性分析)开发了燃料和裂变产物、吸收棒中的核素以及结构材料和冷却剂中的杂质的核素动力学计算程序。对吸收棒中 116 种核素的浓度进行了监测。对结构材料(包括杂质)和冷却剂分别监测了 503 和 210 个核素。所有核素浓度的确定都考虑了工业标准对杂质的限制。为了计算反应堆内冷却剂的移动情况,我们开发了一种独创的计算算法,本文将详细介绍该算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coolant nuclid kinetics for fast reactors

Within the modernization of programs for calculating nuclide kinetics of BN-600 and BN-800 Beloyarskaya NPP reactors, programs for calculating nuclide kinetics of the fuel and fission products, nuclides in absorbing rods, as well as impurities in structural materials and the coolant, were developed using various methods including the possibility of an uncertainty analysis. The concentration of 116 nuclides is monitored for absorbing rods. For structural materials, including impurities, as well as for the coolant, 503 and 210 nuclides are monitored, respectively. All nuclide concentrations are determined taking into account the restrictions on impurities established by industrial standards. In order to account the coolant movement in the reactor, an original calculation algorithm was developed whose details are provided in this article.

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来源期刊
Atomic Energy
Atomic Energy 工程技术-核科学技术
CiteScore
1.00
自引率
20.00%
发文量
100
审稿时长
4-8 weeks
期刊介绍: Atomic Energy publishes papers and review articles dealing with the latest developments in the peaceful uses of atomic energy. Topics include nuclear chemistry and physics, plasma physics, accelerator characteristics, reactor economics and engineering, applications of isotopes, and radiation monitoring and safety.
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