首页> 外文会议>International Symposium on Safety and Structural Integrity; 20051208-10; Jeju(KR) >Development of Web-based Fatigue Life Evaluation System for Reactor Pressure Vessel
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Development of Web-based Fatigue Life Evaluation System for Reactor Pressure Vessel

机译:基于Web的反应堆压力容器疲劳寿命评估系统开发

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While the demand on electric power is consistently increasing, public concerns and regulations for the construction of new nuclear power plants are getting restrict, and also operating nuclear power plants are gradually ageing. For this reason, the interest on lifetime extension for operating nuclear power plants by applying lifetime management system is increasing. The 40-year design life concept was originally introduced on the basis of economic and safety considerations. In other words, it was not determined by technological evaluations. Also, the transient design data which were applied for fatigue damage evaluation were overly conservative in comparison with actual transient data. Therefore, the accumulation of fatigue damage may result in a big difference between the actual data and the design data. The lifetime of nuclear power plants is mostly dependent on the fatigue life of a reactor pressure vessel, and thus, the exact evaluation of fatigue life on a reactor pressure vessel is a crucial factor in determining the extension of operating life. The purpose of this paper is to introduce a real-time fatigue monitoring system for an operating reactor pressure vessel which can be used for the lifetime extension. In order to satisfy the objectives, a web-based transient acquisition system was developed, thereby, real-time thermal-hydraulic data were reserved for 18 operating reactor pressure vessels. A series of finite element analyses was carried out to obtain the stress data due to actual transient. The fatigue life evaluation has been performed based on the stress analysis results and, finally, a web-based fatigue life evaluation system was introduced by combining analysis results and on-line monitoring system. Comparison of the stress analysis results between operating transients and design transients showed a considerable amount of benefits in terms of fatigue life. Therefore, it is anticipated that the developed web-based system can be utilized as an efficient tool for fatigue life estimation of reactor pressure vessel.
机译:在对电力的需求持续增长的同时,公众对建造新核电站的关注和法规越来越受到限制,而且正在运行的核电站也在逐渐老化。因此,对于通过应用寿命管理系统来延长运行中的核电厂的寿命的兴趣正在增加。 40年设计寿命概念最初是出于经济和安全考虑而引入的。换句话说,它不是由技术评估确定的。而且,与实际瞬态数据相比,用于疲劳损伤评估的瞬态设计数据过于保守。因此,疲劳损伤的累积可能导致实际数据与设计数据之间的差异很大。核电站的寿命主要取决于反应堆压力容器的疲劳寿命,因此,准确评估反应堆压力容器的疲劳寿命是决定使用寿命的关键因素。本文的目的是为运行中的反应堆压力容器引入实时疲劳监测系统,该系统可用于延长使用寿命。为了满足这些目标,开发了基于网络的瞬态采集系统,从而为18个运行中的反应堆压力容器保留了实时热工水力数据。进行了一系列有限元分析,以获取实际瞬态引起的应力数据。根据应力分析结果进行了疲劳寿命评估,最后结合分析结果和在线监测系统,引入了基于网络的疲劳寿命评估系统。对工作瞬态和设计瞬态之间的应力分析结果进行比较,显示出在疲劳寿命方面的大量好处。因此,可以预期,所开发的基于网络的系统可以用作估计反应堆压力容器的疲劳寿命的有效工具。

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