核电厂用智能压力变送器的加速寿命试验和性能评价

Yashasvi Chauhan, N. Shrestha, T. V. Santhosh, V. Shrivastava, P. Ramteke, G. Vinod, J. Chattopadhyay
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引用次数: 1

摘要

核电站需要对温度、压力、流量等各种工艺参数进行连续监测,以保证核电站的安全可靠运行。智能压力变送器(SPT)在核工业中越来越多地应用于传统压力变送器。智能压力变送器通过使用其先进功能,如自我诊断,现场通信的远程配置等,提供了提高核电厂安全性和可靠性的潜力。这同时增加了智能发射机的复杂性,并在可靠性方面增加了额外的挑战。因此,在安全关键系统中使用spt之前,对其可靠性进行评估是非常重要的。本文介绍了对智能压力变送器进行的加速寿命试验和性能评估研究的结果。在不同温度条件下(60°C、70°C和80°C)对9个spt进行了为期约4个月的加速热老化实验研究。研究主要集中在从校准、电源和负载变化效应、绝缘电阻测试中得出性能参数。测量的重要参数有精度、重复性、滞后等。从研究中观察到,由于其内部元件(如传感器、电子电路、绝缘退化等)的老化,spt的性能下降。基于测试所得的性能数据,建立了spt剩余使用寿命估计的退化模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accelerated Life Testing and Performance Evaluation of Smart Pressure Transmitters for use in Nuclear Power Plants
Nuclear power plants (NPP) require continuous monitoring of various process parameters such as temperature, pressure and flow etc. for safe and reliable operation of the plant. Smart pressure transmitters (SPT) are increasingly being used in the nuclear industry over conventional pressure transmitters. Smart pressure transmitter offers the potential to improve safety and reliability for NPP by use of their advance featuressuch as self-diagnosis, remote configuration for field communication, etc. This has simultaneously increased the complexity of the smart transmitter and added additional challenges in reliability area. Therefore, it is important to assess the reliability of SPTs before their use in safety critical systems. This paper represents the findings from accelerated life testing and performance evaluation study carried out on smart pressure transmitters. An experimental investigation of 9 SPTs has been carried out by subjecting to accelerated thermal ageing under different temperature conditions [60°C, 70°C and 80°C] for approximately 4 months. Thestudy focused mainly on deriving the performance parameters from calibration, power supply and load variation effect, insulation resistance tests. The important parameters measured are the accuracy, repeatability, hysteresis etc. It was observed from the study that the performance of SPTs degrades due to ageing of its internal components such as sensors, electronic circuits, insulation degradation, etc. Based on the performance data obtained from the testing, the degradation models have also been developed for remaining useful life estimation of SPTs.
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