An Assessment of Persistent Acoustic Monitoring of a Nuclear Reactor during Full Power Generation

IF 1.3 Q3 ACOUSTICS
E. Cárdenas, Samuel K. Takazawa, M. Garcés, D. Chichester, R. Hunley, Chris Young
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引用次数: 1

Abstract

Persistent low-frequency (<180 Hz) acoustic detection took place within the boundaries of Oak Ridge National Laboratory to monitor full power operations of the High Flux Isotope Reactor. Three acoustic sensors were installed at distances of 69, 101, and 914 m from the northeast corner of the cooling towers to monitor and assess four reactor power generation cycles. Features were extracted from power spectral density calculations where data were collected during reactor on and off operations. Diverse spectral features were present during full reactor power, including a 21.4 Hz fundamental frequency and ascending harmonics. Using bandpass filters, these related frequencies were isolated and summed, and the root mean square energy was calculated. The method of isolating and summing characteristic features provided a significant improvement in identifying acoustic behavior related to reactor power when the raw signals were obscured by noise.
核反应堆满功率运行期间持续声学监测的评估
在橡树岭国家实验室的边界内进行了持续的低频(<180 Hz)声学检测,以监测高通量同位素反应堆的满功率运行。在距离冷却塔东北角69101和914米处安装了三个声学传感器,以监测和评估四个反应堆发电循环。特征是从功率谱密度计算中提取的,其中数据是在反应堆开启和关闭操作期间收集的。在反应堆满功率期间,出现了各种频谱特征,包括21.4Hz的基频和上升谐波。使用带通滤波器,对这些相关频率进行分离和求和,并计算均方根能量。当原始信号被噪声遮挡时,隔离和求和特征特征的方法在识别与反应堆功率相关的声学行为方面提供了显著的改进。
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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来源期刊
CiteScore
3.70
自引率
0.00%
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0
审稿时长
11 weeks
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