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首页> 外文期刊>Annals of nuclear energy >Accurate full superfine group resonance self-shielding method with fission source and upscattering effects in thermal lattice
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Accurate full superfine group resonance self-shielding method with fission source and upscattering effects in thermal lattice

机译:精确的全超细组共振自屏自屏,具有裂变源和热晶格中的凹凸效果

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This paper focused upon an approach to the promotion of the resonance self-shielding treatment to overwhelm the reaction rates deviation that mitigating frequent assumption of the ultrafine energy group method. Our first major finding is implementation of both the dependency of the fission source on incident neutron energy and thermal upscattering matrix at desired energy mesh on effective cross section. Moreover, the escape cross section correction (EC) method reflecting geometrical effect of 2D lattice is proposed to revise 1D cylindrical model on coarse group cross section collapsing by SPH method. After verifying the superfine library generation module, called UFEMR, various benchmark calculations for pin cell and fuel assembly are tested against the results of corresponding Monte Carlo solutions. The average relative error of the reaction rates by developed cross section generation module and use of the proposed superfine group structure is around 0.74%. The regionwise flux and reaction rates are in good agreement with Monte Carlo reference solutions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文集中于促进共振自屏的方法,以压倒反应速率偏差,这些反应率偏差频繁假设超细能量组方法。我们的第一次主要发现是在有效横截面上的所需能量网上实施裂变来源对入射中子能量的依赖性和热伪装矩阵。此外,提出了反映了2D晶格的几何效果的逃生横截面校正(EC)方法,以通过SPH法折叠粗组横截面上的1D圆柱形模型。在验证SuperFINE库生成模块之后,称为UFEMR,针对相应的蒙特卡罗解决方案的结果测试针脚电池和燃料组件的各种基准计算。通过开发的横截面产生模块的反应速率的平均相对误差和所提出的超细组结构的使用约为0.74%。区域通量和反应率与蒙特卡罗参考溶液吻合良好。 (c)2019 Elsevier Ltd.保留所有权利。

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