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首页> 外文期刊>Annals of nuclear energy >Uncertainties propagation in the UAM numerical rod ejection benchmark
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Uncertainties propagation in the UAM numerical rod ejection benchmark

机译:UAM数值杆喷射基准中的不确定性传播

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This paper presents the execution and the results of a rod ejection benchmark inspired by the UAM benchmarks II-2b: cross sections uncertainties propagation during a rod ejection transient in a mini-core (3 x 3 PWR-type assemblies), without feedback. Performing transient computations in two groups time-dependent neutron diffusion approximation while starting from a steady-state power of 0.1409 MW, we obtained a mean power peak around 0.25 MW with a standard deviation of, nearly, 1.5%. The time-dependent standard deviation curve follows the time-dependent mean power curve and the relative standard deviation, in a percentage of the mean power, increases with the mean power peak value. We found, too, that the first-group diffusion coefficient and the first-group absorption cross section are, practically, the only contributors to the total power peak variance. Drawbacks and findings from the exercise provide essential input for uncertainty propagation in a further multi-physics simulation of a postulated rod ejection accident. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了由UAM基准II-2B启发的杆喷射基准的执行和结果:在磁芯(3 x 3 PWR型组件)中的杆喷射瞬态期间的横截面不确定性传播,无反馈。在从0.1409 MW的稳态功率开始的同时执行两组时间相关中子扩散近似的瞬态计算,我们获得的平均功率峰值约为0.25兆瓦,标准偏差接近,1.5%。时间依赖的标准偏差曲线遵循时间依赖性平均功率曲线和相对标准偏差,以平均功率的百分比,随着平均功率峰值的增加而增加。我们也发现,第一组扩散系数和第一组吸收横截面实际上是唯一的功率峰值方差的唯一贡献者。展示的缺点和发现提供了在假设杆喷射事故的进一步多物理模拟中的不确定度传播的基本输入。 (c)2020 elestvier有限公司保留所有权利。

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