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Integrated online condition monitoring system for nuclear power plants

机译:核电站在线状态综合监测系统

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摘要

Online condition monitoring or online monitoring (OLM) uses data acquired while a nuclear power is operating to continuously assess the health of the plant's sensors, processes, and equipment; to measure the dynamic performance of the plant's process instrumentation; to verify in-situ the calibration of the process instrumentation; to detect blockages, voids, and leaks in the pressure sensing lines; to identify core flow anomalies; to extend the life of neutron detectors and other sensors; and to measure the vibration of reactor internals. Both the steady-state or DC output of plant sensors and their AC signal or noise output can be used to assess sensor health, depending on whether the application is monitoring a rapidly changing (e. g., core barrel motion) or a slowly changing (e. g., sensor calibration) process. The author has designed, developed, installed, and tested OLM systems (comprised of software/ hardware-based data acquisition and data processing modules) that integrate low-frequency (1 mHz to 1 Hz) techniques such as RTD cross-calibration, pressure transmitter calibration monitoring, and equipment condition monitoring and high-frequency (1 Hz to 1 kHz) techniques such as the noise analysis technique. The author has demonstrated the noise analysis technique's effectiveness for measuring the dynamic response-time of pressure transmitters and their sensing lines; for performing predictive maintenance on reactor internals; for detecting core flow anomalies; and for extending neutron detector life. Integrated online condition monitoring systems can combine AC and DC data acquisition and signal processing techniques, can use data from existing process sensors during all modes of plant operation, including startup, normal operation, and shutdown; can be retrofitted into existing PWRs, BWRs, and other reactor types and will be integrated into next-generation plants.
机译:在线状态监视或在线监视(OLM)使用核电运行时获取的数据来连续评估工厂传感器,过程和设备的运行状况;衡量工厂过程仪表的动态性能;现场验证过程仪表的校准;检测压力感测管线中的堵塞,空隙和泄漏;识别核心流异常;延长中子探测器和其他传感器的寿命;并测量反应堆内部的振动。工厂传感器的稳态或直流输出以及它们的交流信号或噪声输出均可用于评估传感器的健康状况,具体取决于应用程序是监视快速变化的(例如堆芯运动)还是缓慢变化的(例如,传感器校准)过程。作者已经设计,开发,安装和测试了集成了低频(1 mHz至1 Hz)技术(例如RTD交叉校准,压力变送器)的OLM系统(包括基于软件/硬件的数据采集和数据处理模块)。校准监控,设备状态监控以及高频(1 Hz至1 kHz)技术,例如噪声分析技术。作者已经证明了噪声分析技术对于测量压力变送器及其传感线的动态响应时间的有效性。用于对反应堆内部进行预测性维护;用于检测岩心流异常;并延长中子探测器的使用寿命。集成的在线状态监控系统可以将交流和直流数据采集与信号处理技术相结合,可以在工厂运行的所有模式(包括启动,正常运行和关闭)中使用来自现有过程传感器的数据;可以改装到现有的压水堆,压水堆和其他反应堆类型中,并将集成到下一代工厂中。

著录项

  • 来源
    《Kerntechnik》 |2010年第5期|p.231-242|共12页
  • 作者

    Hashem M. Hashemian;

  • 作者单位

    Analysis and Measurement Services Corporation, AMS Technology Center 9119 Cross Park Drive. Knoxville, TN 37923;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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