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OPTIMIZING VALVE MAINTENANCE AND TESTING UTILIZING ACOUSTIC EMISSIONS (AE) TECHNOLOGY

机译:优化阀的维护并使用声发射(AE)技术进行测试

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The purpose of this paper is to highlight recent US nuclear power industry operating experience using high frequency acoustic emission (AE) valve leak detection technology to: 1. Troubleshoot LLRT boundaries 2. Identify internal through valve leakage 3. Limit personnel exposure 4. Limit outage schedule slippage 5. Optimize & prioritize work scopes 6. Eliminate unnecessary work orders 7. Supplement existing troubleshooting methods 8. Limit maintenance induced failures Several examples where AE technology has been successfully utilized to make intelligent decisions related to the maintenance and testing of valves in nuclear power plants are examined including the resulting savings in time, personnel exposure and cost. The specific examples discussed herein represent the experiences of different plants, reactor types, systems and process mediums. While utilizing acoustic or ultrasonic equipment as a troubleshooting tool for valves may not be considered groundbreaking, the acoustic emission system discussed in this paper was specifically designed for the early detection of leakage through a closed valve (sometimes known as "passing"). Because of the unique design of the AE sensor and associated electronics this new approach is essentially deaf to and thus unable to "hear" much of the background noise that has historically complicated use of existing general purpose acoustic or ultrasonic tools to reliably detect through valve leakage. As a consequence, it is now much easier for a novice technician to identify a leaking valve in a noisy operating plant environment. This new equipment was developed by a large UK based company as a result of experience with major oil and gas customers around the world where detection of through valve leakage in systems that contain explosive hydrocarbon products is a critical safety issue. This new technology has recently found a home in US nuclear power plants where it has been proven to quickly identify the location of leak paths during Appendix J leak rate testing, as a troubleshooting tool to identify or confirm suspected leaking valves and on the secondary side to identify costly steam losses.
机译:本文的目的是强调使用高频声发射(AE)阀门泄漏检测技术在美国核电行业的最新运行经验:1.对LLRT边界进行故障排除2.识别内部通过阀门泄漏3.限制人员暴露4.限制停机进度延误5.优化和确定工作范围的优先级6.消除不必要的工作订单7.补充现有的故障排除方法8.限制维护引起的故障成功利用AE技术做出与核电阀门维护和测试相关的智能决策的几个示例对发电厂进行了检查,包括节省的时间,人员和成本。本文讨论的具体示例代表了不同工厂,反应器类型,系统和过程介质的经验。尽管使用声学或超声波设备作为阀门的故障排除工具可能不会被认为是突破性的,但本文中讨论的声发射系统是专为早期检测通过关闭的阀门泄漏(有时称为“通过”)而设计的。由于AE传感器和相关电子设备的独特设计,这种新方法实质上无法充耳,因此无法“听到”许多背景噪音,而这些噪音在历史上曾使现有的通用声学或超声波工具复杂化,无法可靠地通过阀门泄漏进行检测。因此,对于新手技术人员而言,现在在嘈杂的工厂环境中识别泄漏的阀门要容易得多。这项新设备是由一家英国大型公司开发的,是基于与全球主要石油和天然气客户的经验而得出的,在这些客户中,检测包含爆炸性碳氢化合物产品的系统中的直通阀泄漏是至关重要的安全问题。这项新技术最近在美国核电站中发现了一个住所,已被证明可以在附录J泄漏率测试期间快速识别泄漏路径的位置,作为一种故障诊断工具,可以识别或确认可疑的泄漏阀,并且可以在次级侧进行检测。确定昂贵的蒸汽损失。

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