Analysis for the ARIANE BM1 and BM3 samples: nuclide inventory and decay heat

IF 0.9 Q3 NUCLEAR SCIENCE & TECHNOLOGY EPJ Nuclear Sciences & Technologies Pub Date : 2021-01-01 DOI:10.1051/epjn/2021017
D. Rochman, A. Vasiliev, H. Ferroukhi, M. Hursin
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引用次数: 5

Abstract

The Mixed Oxide samples (MOX) ARIANE Post Irradiation Examination samples BM1 and BM3 have been analyzed in this work, based on various two- and three-dimensional models. Calculated and measured nuclide inventories are compared based on CASMO5, SIMULATE and SNF simulations, and calculated values for the decay heat of the assembly containing the samples are also provided. For uncertainty propagation, the covariance information from three different nuclear data libraries are used. Uncertainties from manufacturing tolerances and operating conditions are also considered. The results from these two samples are compared with the ones from two UO2 samples, namely GU1 and GU3, also from the ARIANE program, applying the same calculation scheme and uncertainty assumptions. It is shown that a two-dimensional assembly model provides better agreement with the measurements than a two-dimensional single pin model, and that the full core three-dimensional model provides similar results compared to the assembly model, although no 148Nd normalization is applied for the full core model. For the MOX assembly decay heat, as expected, heavy actinides have a higher contribution compared to the cases with the UO2 samples; additionally, decay heat uncertainties are moderately smaller in the case of the MOX assembly.
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阿丽亚娜BM1和BM3样品的分析:核素库存和衰变热
本文基于各种二维和三维模型,对混合氧化物样品(MOX) ARIANE辐照后检测样品BM1和BM3进行了分析。基于CASMO5、simulation和SNF模拟,比较了核素库存的计算值和实测值,并给出了包含样品的组件的衰变热的计算值。对于不确定性传播,使用了来自三个不同核数据库的协方差信息。还考虑了制造公差和操作条件的不确定性。采用相同的计算方案和不确定性假设,将这两个样本的结果与同样来自ARIANE项目的两个UO2样本GU1和GU3的结果进行了比较。结果表明,二维装配模型比二维单针模型更符合测量结果,全岩心三维模型与装配模型的结果相似,尽管全岩心模型没有应用148Nd归一化。对于MOX组装衰变热,与UO2样品相比,重锕系元素的贡献更高;此外,在MOX组件的情况下,衰变热不确定性相对较小。
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来源期刊
EPJ Nuclear Sciences & Technologies
EPJ Nuclear Sciences & Technologies NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
1.00
自引率
20.00%
发文量
18
审稿时长
10 weeks
期刊最新文献
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