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Multi-ring Subgroup Method in Characterising Highly Self-shielded Gadolinia Burnable Poison Pins for the UK EPR Nuclear Fuel Assembly

  • University of Southampton
  • Ctr Elect Frontiers

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Precisely modelling burnup behavior of Gadolinia burnable poison pins in a nuclear reactor is tricky, as it is a very strong absorber of thermal neutrons. The highly self-shielded burnable poison depletes largely from outermost zones inwards, presenting strong flux gradients around the pin. Classic modelling methods are based on equivalence theory, tracking pin-averaged cross sections, and collapsing all radial rings down. However, the subdivision of the whole pin into multiple radial zones is ineffective, as each zone is still represented by the same cross sections in 172 groups. To capture the self-shielding effect, a subgroup method is employed in this work to accurately account for the ring effect in Gadolinia-bearing pins. Deterministic code (WIMS) is used for producing homogenised cross sections for Gadolinia-zoning assemblies, obtaining lattice power distributions, the results of which are benchmarked against a Monte Carlo code (Serpent) for model verifications.
源语言英语
主期刊名2020 International Conference On Computing, Electronics & Communications Engineering (iccece
编辑MH Miraz, PS Excell, A Ware, S Soomro, M Ali
出版商IEEE
196-200
页数5
ISBN(电子版)978-1-7281-6330-7
DOI
出版状态已出版 - 23 10月 2020
已对外发布
活动3rd International Conference on Computing, Electronics and Communications Engineering (iCCECE) -
期限: 17 8月 202018 8月 2020

会议

会议3rd International Conference on Computing, Electronics and Communications Engineering (iCCECE)
时期17/08/2018/08/20

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