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Development of a web-based aging monitoring system for an integrity evaluation of the major components in a nuclear power plant

机译:开发基于网络的老化监测系统,以对核电厂的主要组件进行完整性评估

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Structural and mechanical components in a nuclear power plant are designed to operate for its entire service life. Recently, a number of nuclear power plants are being operated beyond their design life to produce more electricity without shutting down. The critical issue in extending a lifetime is to maintain the level of safety during the extended operation period while satisfying the international regulatory standards. However, only a small portion of these components are of great importance for a significant aging degradation which would deeply affect the long-term safety and reliability of the related facilities. Therefore, it is beneficial to build a monitoring system to measure an aging status. While a number of integrity evaluation systems have been developed for NPPs, a real-time aging monitoring system has not been proposed yet [1-8]. This paper proposes an expert system for the integrity evaluation of nuclear power plants based on a Web-based Reality Environment (WRE). The proposed system provides the integrity assessment for the major mechanical components of a nuclear power plant under concurrent working environments. In the WRE, it is possible for users to understand a mechanical system such as its size, geometry, coupling condition etc. In conclusion, it is anticipated that the proposed system can be used for a more efficient integrity evaluation of the major components subjected to an aging degradation.
机译:核电站的结构和机械组件被设计为在其整个使用寿命内运行。最近,许多核电厂正在运行,超出其设计寿命,以在不关闭的情况下产生更多的电力。延长使用寿命的关键问题是在延长运行期间保持安全水平,同时满足国际法规标准。但是,这些组件中只有一小部分对于显着的老化退化非常重要,而老化会严重影响相关设施的长期安全性和可靠性。因此,建立监测系统来测量老化状态是有益的。虽然已经为核电厂开发了许多完整性评估系统,但尚未提出实时老化监测系统[1-8]。本文提出了一种基于Web的现实环境(WRE)的核电厂完整性评估专家系统。拟议的系统为并发工作环境下的核电厂主要机械部件提供完整性评估。在WRE中,用户有可能了解机械系统,例如其尺寸,几何形状,耦合条件等。总之,可以预期,所提出的系统可以用于对经受以下操作的主要组件进行更有效的完整性评估。老化退化。

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