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A Modeling of BWR-MOX Assemblies Based on the Characteristics Method Combined with Advanced Self-Shielding Models

机译:基于特征方法和高级自屏蔽模型的BWR-MOX组件建模

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Calculations based on the characteristics method and different self-shielding models are presented for 9 × 9 boiling water reactor (BWR) assemblies fully loaded with mixed-oxide (MOX)fuel. The geometry of these assemblies was recovered from the BASALA experimental program. We have focused our study on three configurations simulating the different voiding conditions that an assembly can undergo in a BWR pressure vessel. A parametric study was carried out with respect to the spatial discretization, the tracking parameters, and the anisotropy order. Comparisons with Monte Carlo calculations in terms of k_(eff), radiative capture, and fission rates were performed to validate the computational tools. The results are in good agreement between the stochastic and deterministic approaches. The mutual self-shielding model recently introduced within the framework of the Ribon extending self-shielding method appears to be useful for this type of assemblies. Indeed, in the calculation of these MOX benchmarks, the overlapping of resonances, especially between ~(238)U and ~(240)Pu, ploys an important role due to the spectral strengthening of the flux as the voiding percentage is increased. The method of characteristics is shown to be adequate to perform accurate calculations handling a fine spatial discretization.
机译:提出了基于特征方法和不同自屏蔽模型的计算,该模型针对满载混合氧化物(MOX)燃料的9×9沸水反应堆(BWR)组件进行了计算。这些组件的几何形状是从BASALA实验程序中恢复的。我们将研究重点放在了三种配置上,以模拟组件在BWR压力容器中可能经历的不同排空条件。关于空间离散,跟踪参数和各向异性阶数进行了参数研究。与k_(eff),辐射捕获和裂变率方面的蒙特卡洛计算进行了比较,以验证计算工具的有效性。结果在随机方法和确定性方法之间具有很好的一致性。最近在Ribon扩展自屏蔽方法框架内引入的相互自屏蔽模型似乎对于此类装配很有用。确实,在这些MOX基准的计算中,尤其是在〜(238)U和〜(240)Pu之间的共振重叠,由于通量的谱增强随着空隙率的增加而发挥了重要作用。显示的特征方法足以执行处理精细的空间离散化的精确计算。

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