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Using the noise analysis technique to detect response time problems in the sensing lines of nuclear plant pressure transmitters

机译:使用噪声分析技术检测核电站压力变送器传感线中的响应时间问题

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Blockages, voids, and leaks contribute to nearly 70 percent of the age-related problems in the sensing lines that connect pressure, level, and flow transmitters in nuclear plants to the processes they measure, reducing their speed of response. Only the noise analysis technique provides an effective means for testing response times when a nuclear plant is operating. It also makes possible the simultaneous testing of response time of multiple pressure transmitters and is applicable for both force-balance and motion-balance transmitter types. The technique involves three steps - data acquisition, data qualification, and data analysis. Commercial signal-conditioning equipment is used to extract the noise from the transmitter output by removing the DC component of the signal and amplifying the AC component. The AC signal is then digitized; qualified for stationarity, linearity, and other abnormalities; and then analyzed in the frequency domain and/or time domain. Tests performed by the author has validated the accuracy of the noise analysis technique and yielded the following conclusions: Long sensing lines and blockages increase the response time of a pressure sensing system. Increases in response times caused by sensing-line length and blockages depend on the compliance of the transmitter. The response time of transmitters with larger compliances is more sensitive to sensing-line length and blockages than that of transmitters with small compliances. When noise analysis identifies a sensing-line blockage, the line must be purged (flushed) and noise tests repeated to ensure the problem is resolved.
机译:在将核电厂中的压力,液位和流量变送器连接到他们测量的过程的传感管线中,堵塞,空隙和泄漏造成了与年龄相关的问题的近70%,从而降低了响应速度。只有噪声分析技术才可以提供有效的手段来测试核电站运行时的响应时间。它还可以同时测试多个压力变送器的响应时间,并且适用于力平衡和运动平衡变送器类型。该技术涉及三个步骤-数据获取,数据鉴定和数据分析。商用信号调节设备用于通过去除信号的直流分量并放大交流分量来从发射机输出中提取噪声。然后将交流信号数字化;具有平稳性,线性和其他异常的资格;然后在频域和/或时域中进行分析。作者进行的测试验证了噪声分析技术的准确性,并得出以下结论:较长的传感线和堵塞物会增加压力传感系统的响应时间。由传感线长度和阻塞引起的响应时间增加取决于变送器的柔韧性。与柔量较小的发射机相比,柔量较大的发射机的响应时间对传感线长度和阻塞更敏感。当噪声分析发现传感线阻塞时,必须清除(冲洗)该线并重复进行噪声测试以确保问题得以解决。

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