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Study of core support barrel vibration monitoring using ex-core neutron noise analysis and fuzzy logic algorithm

机译:基于堆芯中子噪声分析和模糊逻辑算法的堆芯支承筒振动监测研究

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The application of neutron noise analysis (NNA) to the ex-core neutron detector signal for monitoring the vibration characteristics of a reactor core support barrel (CSB) was investigated. Ex-core flux data were generated by using a nonanalog Monte Carlo neutron transport method in a simulated CSB model where the implicit capture and Russian roulette technique were utilized. First and third order beam and shell modes of CSB vibration were modeled based on parallel processing simulation. A NNA module was developed to analyze the ex-core flux data based on its time variation, normalized power spectral density, normalized cross-power spectral density, coherence, and phase differences. The data were then analyzed with a fuzzy logic module to determine the vibration characteristics. The ex-core neutron signal fluctuation was directly proportional to the CSB's vibration observed at 8?Hz and 15?Hz in the beam mode vibration, and at 8?Hz in the shell mode vibration. The coherence result between flux pairs was unity at the vibration peak frequencies. A distinct pattern of phase differences was observed for each of the vibration models. The developed fuzzy logic module demonstrated successful recognition of the vibration frequencies, modes, orders, directions, and phase differences within 0.4?ms for the beam and shell mode vibrations.
机译:研究了中子噪声分析(NNA)在堆芯中子探测器信号上的应用,以监测反应堆堆芯支撑筒(CSB)的振动特性。在模拟CSB模型中使用非模拟蒙特卡洛中子输运方法生成了核外通量数据,其中利用了隐式捕获和俄罗斯轮盘技术。基于并行处理仿真,对CSB振动的一阶和三阶梁和壳模式进行了建模。开发了一个NNA模块,用于根据其时间变化,归一化功率谱密度,归一化跨功率谱密度,相干性和相位差来分析核外磁通数据。然后用模糊逻辑模块分析数据以确定振动特性。核外中子信号波动直接与CSB的振动成正比,在波束模式振动中为8?Hz和15?Hz,在壳模式振动中为8?Hz。在振动峰值频率下,磁通对之间的相干结果是一致的。对于每个振动模型,观察到明显的相位差模式。所开发的模糊逻辑模块演示了成功识别光束和壳模振动的振动频率,模式,阶数,方向和相位差在0.4µms以内的情况。

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