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首页> 外文期刊>Annals of nuclear energy >Stabilization of multi-group neutron transport with transport-corrected cross-sections
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Stabilization of multi-group neutron transport with transport-corrected cross-sections

机译:具有运输校正横截面的多组中子运输的稳定化

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摘要

Many deterministic neutron transport solvers rely on the source iteration method to solve the multi-group neutron transport equation. Often, these solvers rely on transport corrected cross-sections for accurate prediction of the neutron flux distribution. Transport corrected within-group scattering cross sections can become negative, and if these negative cross-sections are large in magnitude, source iteration can become unstable and fail to converge for certain cases. In this study, we present evidence of this convergence issue for the method of characteristics (MOC) on full-core PWR problems with common transport correction schemes. A theoretical discussion is presented to illustrate the reason for the convergence issues. Previously established stabilization methods are compared with a newly proposed stabilization method. Results show that the new stabilization method allows for faster convergence than previous techniques. In addition, the effect of Coarse Mesh Finite Difference (CMFD) acceleration on stability is analyzed, showing that CMFD acceleration with full-group structure can overcome the convergence issues, but a stabilization technique is necessary for convergence when a condensed group structure is used. (C) 2018 Published by Elsevier Ltd.
机译:许多确定性中子输运求解器依靠源迭代法来求解多组中子输运方程。通常,这些求解器依靠运输校正的横截面来准确预测中子通量分布。经过输运校正的组内散射截面可能会变为负值,并且如果这些负截面值很大,则源迭代可能会变得不稳定,并且在某些情况下无法收敛。在这项研究中,我们为采用通用传输校正方案的全核PWR问题的特征方法(MOC)提供了这一收敛问题的证据。进行理论讨论以说明收敛问题的原因。将先前建立的稳定方法与新提出的稳定方法进行比较。结果表明,新的稳定方法比以前的技术具有更快的收敛速度。此外,分析了粗网格有限差分(CMFD)加速度对稳定性的影响,表明具有全组结构的CMFD加速度可以克服收敛问题,但是当使用凝聚组结构时,稳定技术对于收敛是必需的。 (C)2018由Elsevier Ltd.发布

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