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首页> 外文期刊>Annals of nuclear energy >Modeling of the FFTF isothermal physics tests with the Serpent and DYN3D codes
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Modeling of the FFTF isothermal physics tests with the Serpent and DYN3D codes

机译:使用Serpent和DYN3D代码对FFTF等温物理测试进行建模

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In this study, the isothermal physics tests performed on the fully loaded core of the Fast Flux Test Facility are analyzed with the Monte Carlo code Serpent and with the deterministic core simulator DYN3D. The selected tests comprise two neutron spectra measurements and a multitude of reactivity measurements (32 cases with control rod movements and one case for isothermal temperature coefficient). While the flux spectra are calculated only with Serpent, the reactivity effects are evaluated with the both codes. The homogenized few-group cross sections for DYN3D calculations are generated with Serpent. The obtained numerical results are in a very good agreement as compared to the experimental data. Additionally, a comparison of radial power distributions is presented between DYN3D and Serpent calculations, demonstrating an adequate performance of the nodal code DYN3D. This paper provides an additional contribution to the validation of both codes for neutronic analyses of Sodium cooled Fast Reactor cores. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,使用Monte Carlo代码Serpent和确定性核心模拟器DYN3D分析了在快速通量测试设备的满负荷核心上执行的等温物理测试。选择的测试包括两个中子谱测量和多个反应性测量(32个控制杆运动的情况和一个等温温度系数的情况)。虽然仅使用蛇计算通量谱,但使用两个代码评估反应性效果。用Serpent生成用于DYN3D计算的均匀化的少数组截面。与实验数据相比,所得数值结果非常吻合。另外,在DYN3D和Serpent计算之间提供了径向功率分布的比较,表明节点代码DYN3D具有足够的性能。本文为验证钠冷却快堆堆芯的中子学两个代码提供了额外的帮助。 (C)2019 Elsevier Ltd.保留所有权利。

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