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Group condensation method for the transport calculation of PWR with dispersed-particle fuel

  • Xiang Li
  • , Zhouyu Liu
  • , Siyu Yi
  • , Zhao Tian
  • , Shunhong Wang
  • , Longwen Jiang
  • , Liangzhi Cao
  • , Hongchun Wu
  • Xi'an Jiaotong University

科研成果: 期刊稿件文章同行评审

摘要

A new group condensation method for pressurized water reactor (PWR) with dispersed-particle fuel is proposed. This method utilizes the neutron current method to evaluate Dancoff correction factors for different pin-cells, after which equivalent 1-D models are built by preserving the Dancoff correction factor. The Hébert model is employed to calculate the energy spectrum of fuel particles and matrix based on the equivalent model to condense the 69-fine-group cross-sections to ∼ 20 groups. This new method can accurately evaluate the double heterogeneity effect which originates from the macro heterogeneity between fuel rods and the micro heterogeneity between particles. Verification calculations for fuel assembly and JRR-3 plate-type reactor show that this group condensation method can cut the CPU time spent on transport calculation by about 60 % while ensuring that the reactivity error is less than 65 pcm and the maximum error in assembly powers is within 1.10 % with a proper broad-group structure.

源语言英语
文章编号111806
期刊Annals of Nuclear Energy
226
DOI
出版状态已出版 - 2月 2026

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