...
首页> 外文期刊>Journal of Sound and Vibration >A spectral simulation approach to evaluate probabilistic measurement precision of a reactor coolant pump torsional vibration shaft crack monitoring system
【24h】

A spectral simulation approach to evaluate probabilistic measurement precision of a reactor coolant pump torsional vibration shaft crack monitoring system

机译:一种评估反应堆冷却剂泵扭转振动轴裂纹监测系统概率测量精度的频谱模拟方法

获取原文
获取原文并翻译 | 示例
           

摘要

A prototype torsional vibration monitoring system has been installed on two reactor coolant pumps at Tennessee Valley Authority Sequoyah Power Plant Unit 1 nuclear reactor for shaft crack monitoring. The system uses a change in torsional natural frequencies as a diagnostic feature since as a crack grows the shaft line torsional dynamics change commensurately. For effective diagnostic monitoring, it is critical to know the inherent feature variation resulting from the instrumentation and data processing. The integrated nature of the prototype hardware/software system and the inaccessibility of the equipment inside the reactor containment building make it impossible to evaluate the measurement capability in a traditional instrumentation chain approach. Hence, a simulation-based evaluation was performed to determine the cumulative effect of the measurement system on the uncertainty in the torsional natural frequency estimation. The identification algorithm operates on the measured torsional spectrum to estimate a natural frequency. All of the inherent measurement and data processing uncertainties ultimately affect the spectrum in some manner. Therefore, if the characteristics of the reactor coolant pump torsional spectrum can be replicated via a model; it can be used to assess the overall prototype system measurement uncertainty. The underlying premise is that the line shaft dynamics remain constant, in the absence of a fault, and hence any natural frequency variation is due strictly to the measurement system uncertainty. To this end, a single degree of freedom simulation model was first developed which matched the natural frequency and damping of a crack sensitive torsional mode in the reactor coolant pump. The model input was carefully selected such that the averaged spectral amplitude and variance from the ensembles matched the measured reactor coolant pump torsional vibration. The model was then used to create one hundred sample responses that replicated pump spectral response in a statistical sense. The same data processing routines used in the prototype system were applied to the simulation data thus creating sample populations of the natural frequency and damping. Statistical tolerance limits containing 99.9% of the sample population with a 99.9% probability were used to quantify the system's measurement uncertainty. The limits for the crack sensitive mode 3 of the reactor coolant pump were (1) natural frequency: ±0.04740 Hz and (2) damping ratio: ±0.00036.
机译:田纳西州谷管理局红杉电厂1号机组核反应堆的两个反应堆冷却剂泵上安装了扭转振动监测原型系统,用于监测轴裂。该系统使用扭转固有频率的变化作为诊断功能,因为随着裂纹的增长,轴的扭转动力学也会相应地变化。为了进行有效的诊断监控,至关重要的是要了解由仪器和数据处理引起的固有特征变化。原型硬件/软件系统的集成特性以及反应堆安全壳内部设备的不可访问性,使得无法通过传统的仪器链方法来评估测量能力。因此,进行了基于仿真的评估,以确定测量系统对扭转固有频率估计中不确定性的累积影响。识别算法对测得的扭转频谱进行操作,以估计固有频率。所有固有的测量和数据处理不确定性最终都会以某种方式影响频谱。因此,如果可以通过模型来复制反应堆冷却剂泵扭转谱的特性,则可以;它可用于评估整个原型系统测量的不确定性。基本前提是,在没有故障的情况下,线轴动力学保持恒定,因此,任何自然频率变化都严格地取决于测量系统的不确定性。为此,首先开发了一个单自由度仿真模型,该模型与反应堆冷却剂泵中裂纹敏感扭转模式的固有频率和阻尼相匹配。仔细选择模型输入,以使集合的平均频谱幅度和方差与测得的反应堆冷却剂泵扭转振动相匹配。然后,使用该模型创建一百个样本响应,以统计学意义复制泵光谱响应。将原型系统中使用的相同数据处理例程应用于仿真数据,从而创建固有频率和阻尼的样本群体。统计容限以99.9%的概率包含99.9%的样本人群,用于量化系统的测量不确定度。反应堆冷却剂泵的裂纹敏感模式3的限制为(1)固有频率:±0.04740 Hz和(2)阻尼比:±0.00036。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号