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Neutronic Simulation of Fuel Assembly Vibrations in a Nuclear Reactor

机译:核反应堆燃料组件振动的中性模拟

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The mechanical vibrations of core internals such as fuel assemblies (FAs) cause oscillations in the neutron flux that require in some circumstances nuclear power plants to operate at a reduced power level. This work simulates and analyzes the changes of the neutron flux throughout a nuclear core due to the oscillation of a single FA without considering thermal-hydraulic feedback. The amplitude of the FA vibration is bounded to a few millimeters, and this implies the use of fine meshes and accurate numerical solvers due to the different scales of the problem. The results of the simulations show a main oscillation of the neutron flux with the same frequency as the FA vibration along with other harmonics at multiples of the vibration frequency much smaller in amplitude. Also, this work compares time domain analysis and frequency domain analysis of the mechanical vibrations. Numerical results show a close match between these two approaches for the fundamental frequency.
机译:诸如燃料组件(FAS)的核心内部构件的机械振动导致中子磁通量中的振荡,这在某些情况下需要核电站以降低的功率水平运行。这项工作模拟并分析了由于单个FA的振荡而在整个核核心中的变化,而无需考虑热液压反馈。 FA振动的幅度界定为几毫米,这意味着由于问题的不同尺度,使用细网格和精确的数值求解器。模拟结果显示中子磁通的主振荡,与振动频率的倍数倍数的倍数与其他谐波一起具有与FA振动相同的频率。此外,该工作比较了机械振动的时域分析和频域分析。数值结果显示这两种用于基波频率的方法之间的良好匹配。

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