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Development of wall thinning screening system and its application to a commercial nuclear power plant

机译:薄壁筛分系统的开发及其在商业核电站中的应用

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摘要

A new non-destructive evaluation (NDE) method has been developed for metal pipes for the detection wall thinning. The method has been showed to be suitable for applications to electric power generation plants where flow accelerated corrosion (FAC) of carbon steel piping is a significant cause of increased maintenance and plant personnel casualty. The wall thinning screening system (WalSS) was developed in two major phases. In the first phase, the equipotential switching direct current potential drop (ES-DCPD) method was developed for piping wall (Ryu et al., 2008a, 2010). In the second phase, in this paper, a quantitative detection criteria was developed. The relative ES-DCPD change of 3.8% has been defined as the screening criteria for wall thinning schematization. This criteria means that the component with measured ES-DCPD change greater than 3.8% is called for a more comprehensive examination. In the criteria development, all variables were taken into consideration based on commercial plant piping inspection data such as initial thickness distributions, wall thinning shape and nominal thickness. The developed WalSS based on ES-DCPD was applied to a moisture separator reheater (MSR) drain line of a commercial nuclear power plant (NPP) during a scheduled overhaul. The measured ES-DCPD change was 2.16%, which is lower than the ES-DCPD criteria, identifying the pipe having adequate wall thickness. This is confirmed by site thickness inspection using ultrasonic technique (UT).
机译:已经开发了一种用于检测壁变薄的金属管道的新无损评估(NDE)方法。该方法已被证明适用于发电厂,在该发电厂中,碳钢管道的流动加速腐蚀(FAC)是增加维护和工厂人员伤亡的重要原因。壁薄筛分系统(WalSS)分两个主要阶段开发。在第一阶段,开发了用于管道壁的等电位开关直流电势下降(ES-DCPD)方法(Ryu等人,2008a,2010)。在第二阶段,本文提出了定量检测标准。 3.8%的ES-DCPD相对变化已被定义为壁变薄方案的筛选标准。此标准意味着需要对ES-DCPD测得的变化大于3.8%的组件进行更全面的检查。在标准制定过程中,基于商业工厂管道检查数据(例如初始厚度分布,壁变薄形状和标称厚度)考虑了所有变量。在计划的检修期间,基于ES-DCPD开发的WalSS被应用于商业核电站(NPP)的水分分离器再热器(MSR)排水管线。测得的ES-DCPD变化为2.16%,低于ES-DCPD标准,表明管道具有足够的壁厚。通过使用超声波技术(UT)进行现场厚度检查可以确认这一点。

著录项

  • 来源
    《Nuclear Engineering and Design 》 |2013年第12期| 591-598| 共8页
  • 作者单位

    Korea Institute of Machinery and Materials, Daejeon, Republic of Korea;

    Seoul National University, Seoul, Republic of Korea;

    Ulsan National Institute of Science and Technology, Ulsan, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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