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DEVELOPMENT AND IMPLEMENTATION OF AN IN-SITU CABLE CONDITION MONITORING METHOD FOR NUCLEAR POWER PLANTS

机译:核电厂原位电缆状态监测方法的开发与实现

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The sustainability of the existing fleet of nuclear power reactors depends on utilities' ability to manage the aging of key components that cannot easily or economically be replaced or upgraded. Cables, metals, and concrete structures are among the major and key components that the industry and government are working on to ensure the long term reliability and safety of nuclear plants. To ensure that these key components continue to meet their performance requirements, new testing and condition monitoring technologies must be developed that are capable of identifying and quantifying degradation in these materials. The work presented in this paper focuses on the development and implementation of an in-situ condition monitoring method for nuclear power plant cables. This cable condition monitoring method is based on the frequency-domain reflectometry (FDR) technique, which is a non-destructive in-situ electrical test that uses the principle of transmission line theory to locate and quantify impedance changes in a cable circuit. Through extensive research, development, and validation, the FDR test technique has been adapted as a cable condition monitoring method that trends with increasing cable degradation. In addition, the FDR data has been correlated to the industry standard elongation at break (EAB) test to quantify the degree of localized degradation in nuclear plant cable insulation material caused by long term exposure to high temperatures and radiation. By correlating FDR to EAB. the aging condition of cables routed through harsh environments can be better understood in relation to its ability to perform its intended function.
机译:现有核动力反应堆船队的可持续性取决于公用事业管理无法轻易或经济地更换或升级的关键组件老化的能力。电缆,金属和混凝土结构是行业和政府为确保核电站的长期可靠性和安全性而努力的主要组成部分。为了确保这些关键组件继续满足其性能要求,必须开发能够识别和量化这些材料中降解的新测试和状态监视技术。本文提出的工作集中于核电厂电缆现场状态监测方法的开发和实施。这种电缆状态监视方法基于频域反射法(FDR)技术,该技术是一种非破坏性的现场电测试,它使用传输线理论的原理来定位和量化电缆电路中的阻抗变化。通过广泛的研究,开发和验证,FDR测试技术已被改编为一种电缆状态监测方法,该方法会随着电缆退化的加剧而发展。此外,FDR数据已与行业标准断裂伸长率(EAB)测试相关联,以量化核电站电缆绝缘材料中长期暴露于高温和辐射下引起的局部降解程度。通过将FDR与EAB相关联。相对于其执行预期功能的能力,可以更好地理解穿过恶劣环境的电缆的老化条件。

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