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Improved subgroup method for rim effect in resonance calculation

  • Harbin Engineering University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

To overcome the incapability of Bondarenko Iteration Method (BIM) and Resonance-Interference-Factor Method (RIFM) in solving rim effect problems and break the limit that Pseudo-Resonant-Nuclide Subgroup Method (PRNSM) cannot solve problems with number density spatial distribution, the subgroup method combined with Improved-Pseudo-Isotope-Model (IPIM) is proposed in this paper. This method generates subgroup parameters for fuel nuclides mixture in a reasonably chosen "base state" and the subgroup fixed source problem of pseudo-isotope is solved afterwards. Subsequently, the effect cross sections of all resonant nuclides in pellet with non-uniform number densities can be obtained by introducing a number density perturbation factor, which is stored in prebuilt tables interpolated by temperature and background cross sections. The numerical results show that subgroup method with IPIM hold an obvious advantage over BIM and RIFM in dealing with resonance interference and rim effect with number density spatial distribution.

Original languageEnglish
Title of host publicationInternational Conference on Physics of Reactors, PHYSOR 2018
Subtitle of host publicationReactor Physics Paving the Way Towards More Efficient Systems
PublisherSociedad Nuclear Mexicana, A.C.
Pages1880-1891
Number of pages12
ISBN (Electronic)9781713808510
StatePublished - 2018
Event2018 International Conference on Physics of Reactors: Reactor Physics Paving the Way Towards More Efficient Systems, PHYSOR 2018 - Cancun, Mexico
Duration: 22 Apr 201826 Apr 2018

Publication series

NameInternational Conference on Physics of Reactors, PHYSOR 2018: Reactor Physics Paving the Way Towards More Efficient Systems
VolumePart F168384-3

Conference

Conference2018 International Conference on Physics of Reactors: Reactor Physics Paving the Way Towards More Efficient Systems, PHYSOR 2018
Country/TerritoryMexico
CityCancun
Period22/04/1826/04/18

Keywords

  • Pseudo-isotope model
  • Resonance interference effect
  • Resonance self-shielding
  • Rim effect
  • Subgroup method

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