首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.2: Computer Technology >DEVELOPMENT OF A THREE-DIMENSIONAL GREEN'S FUNCTION AND ITS APPLICATION TO THE FATIGUE EVALUATION OF REACTOR PRESSURE VESSEL
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DEVELOPMENT OF A THREE-DIMENSIONAL GREEN'S FUNCTION AND ITS APPLICATION TO THE FATIGUE EVALUATION OF REACTOR PRESSURE VESSEL

机译:三维格林函数的发展及其在反应堆压力容器疲劳评估中的应用

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摘要

The design of major nuclear components for the prevention of fatigue failure has been achieved on the basis of ASME codes, which are usually very conservative. However, it is necessary to make it more accurate for the continued operation beyond the design life. In this paper, 3-dimensional stress and fatigue analyses reflecting entire geometry have been carried out. The number of operating transient data obtained from a monitoring system were filtered and analyzed. Then, Green's function which transfers temperature gradient into the corresponding thermal stress is proposed and applied to critical locations of a reactor pressure vessel. The validity of proposed Green's function is approved by comparing the result with corresponding 3-D finite element analysis results. Also, the amount of conservatism included in design transients in comparison with real transients is analyzed. The results for 3-D finite element analysis are also compared with corresponding 2-D finite element analysis results, and a considerable amount of difference was observed in terms of fatigue life. Therefore, it is expected that the proposed evaluation scheme adopting real operating data and Green's function can provide more accurate fatigue life evaluation for a reactor pressure vessel.
机译:根据ASME规范已经完成了用于预防疲劳失效的主要核组件的设计,而这些规范通常非常保守。但是,有必要使其在设计寿命之外的连续操作中更加准确。在本文中,已经进行了反映整个几何形状的3维应力和疲劳分析。从监视系统获得的运行瞬态数据的数量经过过滤和分析。然后,提出了将温度梯度转换为相应的热应力的格林函数,并将其应用于反应堆压力容器的关键位置。通过将结果与相应的3D有限元分析结果进行比较,可以证明所提出的格林函数的有效性。此外,分析了与实际瞬态相比设计瞬态中包含的保守性。还将3-D有限元分析的结果与相应的2-D有限元分析结果进行了比较,并且在疲劳寿命方面观察到了相当大的差异。因此,期望提出的采用实际运行数据和格林函数的评估方案能够为反应堆压力容器提供更准确的疲劳寿命评估。

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