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Generation of Exact Discontinuity Factors for NEM Calculations with Two-by-Two Division per Fuel Assembly

机译:每个燃料组件用两副两分行的NEM计算产生确切的不连续因子

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摘要

This paper suggests novel approaches to generate exact discontinuity factors (DFs) for transverse-integrated nodal analyses with a two-by-two node configuration in a homogenized fuel assembly (FA). We have shown that the conventional DF calculation scheme cannot generate exact DFs with the nodal expansion method (NEM) calculation when a FA is subdivided into two-by-two nodes due to the inherent discrepancy between the transport-based heterogeneous analysis and the diffusion-based NEM calculation. In order to overcome the difference, an iterative, two-node NEM sweeping method is proposed. In addition, three different formulations to define a single representative DF per assembly surface for the two-by-two NEM are suggested for convenient application for the existing nodal codes while maintaining enough accuracy. Numerical assessments with a colorset model and small modular reactor cores with 16 x by x 16 FAs show that the iterative two-node NEM sweep method successfully corrects the error caused by an inherent discrepancy between the transport and the diffusion method. Among the candidates of a single representative DF, the net current weighted average DFs are found to be the most adequate.
机译:本文建议在均质燃料组件(FA)中具有双两个节点配置的横向集成的节点分析来产生精确的不连续因子(DFS)的新方法。我们已经表明,由于传输基于的异构分析与扩散之间的固有差异,传统的DF计算方案不能使用节点扩展方法(NEM)计算来产生精确的DFS,并且当基于传输的异构分析和扩散之间的固有的差异,将FA细分为两倍的节点。基于NEM计算。为了克服差异,提出了一种迭代的双节点NEM扫描方法。另外,三种不同的配方用于定义每个组装表面的单个代表性DF,用于双两个NEM,以便在保持足够的准确度的同时适用于现有的节点代码。使用带有16 x的ColoreSet模型和小型模块化反应器核心的数值评估显示,迭代两节点NEM扫描方法成功校正了传输和扩散方法之间固有的差异引起的误差。在单个代表性DF的候选者中,发现净流量加权平均DFS是最充分的。

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