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REACTOR NOISE ANALYSIS APPLICATIONS IN ONTARIO HYDRO: A STATISTICAL MEASUREMENT TECHNIQUE USED FOR VALIDATING SYSTEM DYNAMICS

机译:反应堆噪声分析在水工中的应用:用于验证系统动力学的统计测量技术

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Reactor noise analysis is a non-intrusive statistical technique regularly used in surveillance and diagnostics tasks. Valuable information on reactor system dynamics can be extracted from the fluctuations of instrumentation signals measured during steady-state operation. The small and measurable fluctuations of process signals are the results of stochastic effects inherent in physical processes, such as heat transfer, boiling, coolant flow turbulence, fission process, structural vibrations and pressure oscillations. The goal of reactor noise analysis is to monitor and assess the conditions of technological processes and their instrumentation in the nuclear reactor in a non-intrusive passive way. The noise measurements are usually performed at steady-state operation, while the availability of the signals in their respected systems (e.i. shutdown systems, regulating system) is not interrupted. This paper concentrates on recent applications of reactor noise analysis in Ontario Hydro's CANDU stations, related to the dynamics of in-core flux detectors (ICFDs) and ion chambers. These applications include (1) detecting anomalies in the dynamics of ICFDs and ion chambers, (2) estimating the effective prompt fractions of ICFDs in power rundown tests and in noise measurements, (3) detecting the mechanical vibration of ICFD instrument tubes induced by moderator flow, (4) detecting the mechanical vibration of fuel channels induced by coolant flow, (5) identifying the cause of excessive signal fluctuations in certain flux detectors, (6) validating the dynamic coupling between liquid zone control signals, (7) estimating the response time and the dynamic transfer functions of flow transmitters and temperature detectors.
机译:反应堆噪声分析是一种非侵入性统计技术,通常用于监视和诊断任务。可从稳态运行期间测量的仪器信号波动中提取有关反应堆系统动力学的重要信息。过程信号的微小且可测量的波动是物理过程固有的随机效应的结果,例如传热,沸腾,冷却剂流动湍流,裂变过程,结构振动和压力振荡。反应堆噪声分析的目标是以非侵入性的方式监测和评估核反应堆中工艺过程及其仪器的状况。噪声测量通常是在稳态操作下进行的,而相关系统(例如关机系统,调节系统)中信号的可用性却不会中断。本文重点关注安大略水电公司CANDU站中反应堆噪声分析的最新应用,涉及堆芯通量检测器(ICFD)和离子室的动力学。这些应用包括(1)检测ICFD和离子室动力学中的异常情况;(2)估算功率下降测试和噪声测量中ICFD的有效瞬变分数;(3)检测由主持人引起的ICFD仪器管的机械振动。流量;(4)检测由冷却剂流量引起的燃料通道的机械振动;(5)识别某些通量检测器中信号波动过大的原因;(6)验证液体区域控制信号之间的动态耦合;(7)估算流量流量变送器和温度检测器的响应时间以及动态传递函数。

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