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HTGR FUEL ELEMENT DEPLETION BENCHMARK: STAGE THREE RESULTS

机译:HTGR燃料消耗量基准测试:第3阶段结果

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Recently, a new numerical benchmark exercise for High Temperature Gas Cooled Reactor (HTGR) fuel depletion was defined. The purpose of this benchmark is to provide a comparison basis for different codes and methods applied to the burnup analysis of HTGRs. The benchmark specifications include three different models: (1) an infinite lattice of tristructural isotropic (TRISO) fuel particles, (2) an infinite lattice of fuel pebbles, and (3) a prismatic fuel including fuel and coolant channels. In this paper, we present the results of the third stage of the benchmark obtained with MCNP based depletion code BGCore and deterministic lattice code HELIOS 1.9. The depletion calculations were performed for three-dimensional model of prismatic fuel with explicitly described TRISO particles as well as for two-dimensional model, in which double heterogeneity of the TRISO particles was eliminated using reactivity equivalent physical transformation (RPT). Generally, good agreement in the results of the calculations obtained using different methods and codes was observed.
机译:最近,定义了高温气冷堆(HTGR)燃料消耗的新数值基准测试。该基准的目的是为应用于HTGRs燃耗分析的不同代码和方法提供比较依据。基准规格包括三种不同的模型:(1)三结构各向同性(TRISO)燃料颗粒的无限晶格,(2)燃料卵石的无限晶格,以及(3)包括燃料和冷却剂通道的棱柱形燃料。在本文中,我们介绍了使用基于MCNP的耗尽代码BGCore和确定性晶格代码HELIOS 1.9获得的基准测试第三阶段的结果。对于具有明确描述的TRISO颗粒的棱柱形燃料的三维模型以及二维模型进行了耗竭计算,在二维模型中,TRIOS颗粒的双重异质性使用了反应当量物理变换(RPT)消除了。通常,在使用不同方法和代码获得的计算结果中观察到了很好的一致性。

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