Evaluation of Fuel Rod Response Using Principal Component Analysis

Ibrahim Gad-el-Hak, N. Mureithi, K. Karazis
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引用次数: 4

Abstract

This study pertains to an experimental analysis on the effects of the transverse jet flow geometry on the stability of a 6 × 6 square rod bundle. The experimental work represents a reduced scale fuel assembly subjected to localized cross flow conditions. This type of complex system is typically found in the nuclear industry (pressurized water reactor cores). The goal of the experimental study is to investigate the onset and characterize rod instability as it relates to the intensity and diameter of the jet cross-flow. The rod response was recorded using a high-speed camera in the vibration plane. From image processing, rod vibration amplitudes, and power spectral densities are acquired in both stream-wise and transverse directions. The results indicate that by increasing the jet nozzle diameter ratio, the critical flow velocity is reduced, however, the maximum vibration amplitude in the bundle decreases as the jet diameter ratio increases. The experimental datasets produced by all three sets of experiments were analyzed by Principal Component Analysis (PCA). The method obtained the orbit plots of the rod bundle undergoing fluid-elastic instability due to the transverse jet flow penetration for each set of experiments. A significant outcome of this research is the relation of acceleration ratio when the nozzle diameter is increased.
用主成分分析法评价燃料棒响应
本文研究了横向射流几何形状对6 × 6方棒束稳定性影响的实验分析。实验工作代表了局部交叉流动条件下的缩小尺寸的燃料组件。这种类型的复杂系统通常在核工业(压水堆堆芯)中发现。实验研究的目的是研究与射流横流强度和直径有关的杆不稳定性的发生和特征。在振动平面上使用高速摄像机记录杆的响应。通过图像处理,获得了沿流方向和横向方向的杆振动幅值和功率谱密度。结果表明:随着喷嘴直径比的增大,临界流速降低,但束内最大振动幅值随着喷嘴直径比的增大而减小;采用主成分分析(PCA)对三组实验产生的实验数据集进行分析。该方法获得了每组实验中由于横向射流穿透而发生流体弹性失稳的杆束轨道图。本文研究的一个重要结果是增大喷嘴直径时加速度比的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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