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Transient analysis in the 3D nodal kinetics and thermal-hydraulics ANDES/COBRA coupled system

机译:3D节点动力学和热工ANDES / COBRA耦合系统中的瞬态分析

摘要

Neutron kinetics has been implemented in the 3D nodal solver ANDES, which has been coupled to the core thermal-hydraulics (TH) code COBRA-III for core transient analysis. The purpose of this work is, first, to discuss and test the ability of the kinetics solver ANDES to model transients; and second, by means of a systematic analysis, including alternate kinetics schemes, time step size, nodal size, neutron energy groups and spectrum, to serve as a basis for the development of more accurate and efficient neutronics/thermal-hydraulics tools for general transient simulations. The PWR MOX/UO2 transient benchmark provided by the OECD/NEA and US NRC was selected for these goals. The obtained ANDES/COBRA-III results were consistent with other solutions to the benchmark; the differences in the TH feedback led to slight differences in the core power evolution, whereas very good agreements were found in the other requested parameters. The performed systematic analysis highlighted the optimum kinetics iterative scheme, and showed that neutronics spatial discretization effects have stronger influence than time discretization effects, in the semi-implicit scheme adopted, on the numerical solution. On the other hand, the number of energy groups has an important influence on the transient evolution, whereas the assumption of using the prompt neutron spectrum for delayed neutrons is acceptable as it leads to small relative errors.
机译:中子动力学已在3D节点求解器ANDES中实现,该耦合器已与核心热工(TH)代码COBRA-III耦合以进行核心瞬态分析。这项工作的目的是,首先,讨论和测试动力学求解器ANDES对瞬态建模的能力;其次,通过系统分析,包括替代的动力学方案,时间步长,节点大小,中子能级和光谱,为开发更准确,有效的中子/热液工具用于一般瞬态提供基础模拟。为了实现这些目标,选择了OECD / NEA和美国NRC提供的PWR MOX / UO2瞬态基准。获得的ANDES / COBRA-III结果与基准的其他解决方案一致; TH反馈的差异导致核心功率的发展略有差异,而在其他要求的参数中却找到了很好的一致性。进行的系统分析突出了最佳动力学迭代方案,并表明在采用半隐式方案中,中子空间离散效应对时间离散效应的影响要大于时间离散效应。另一方面,能量组的数量对瞬态演化有重要影响,而对于延迟中子使用迅速中子谱的假设是可以接受的,因为它会导致较小的相对误差。

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