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A New Embedded Analysis with Pinwise Discontinuity Factors for Pin Power Reconstruction

机译:一种新的嵌入式分析,针对PIN功率重建的PONWED不连续因子

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摘要

Based on embedded analysis, an accurate pin power reconstruction (PPR) method is proposed for conventional nodal analysis. Unlike the common form function (FF) method, the new PPR method, named the embedded pin power reconstruction (EPPR) method, directly solves a two-group fixed-source problem that is defined with pinwise homogenized group constants (HGCs) and coarse-mesh incoming partial currents on the boundary. In the EPPR scheme, the pinwise HGCs including the pinwise discontinuity factor are predetermined from single-assembly lattice calculations, and the boundary partial currents are obtained from two-step nodal analyses. Two EPPR approaches are proposed: One is a 3×3 extended color-set configuration, and the other is a smaller one considering the half-thickness of the surrounding fuel assemblies. The performance of the EPPR methods is evaluated with various benchmark problems including partially mixed oxide-loaded pressurized water reactor cores, and the results are compared with the conventional FF method. Comprehensive results of this work demonstrate that the new EPPR method can provide much better accuracy than the conventional FF-based PPR method.
机译:基于嵌入式分析,提出了一种精确的引脚功率重构(PPR)方法用于常规节点分析。与常见的形式功能(FF)方法不同,新的PPR方法命名为嵌入式引脚功率重建(EPPR)方法,直接解决了用PARVESE均质组常量(HGC)和粗略定义的两组固定源问题。在边界上的网格传入的部分电流。在EPPR方案中,包括松动不连续因子的松动HGC从单组件晶格计算预先确定,并且边界部分电流是从两步节点分析获得的。提出了两个EPPR方法:一个是3×3扩展的颜色设定配置,另一个是考虑周围燃料组件的半厚度的较小者。通过各种基准问题评估EPPR方法的性能,包括部分混合的氧化氧化物加压水反应器核心,并将结果与​​常规FF方法进行比较。这项工作的综合结果表明,新的EPPR方法可以提供比传统的基于FF的PPR方法更好的准确性。

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