首页> 外文会议>ASME Pressure Vessels and Piping Conference >DEVELOPMENT OF PROBABILISTIC FRACTURE MECHANICS ANALYSIS CODES FOR REACTOR PRESSURE VESSELS CONSIDERING RECENT EMBRITTLEMENT MODEL AND CALCULATION METHOD OF SIF - PROGRESS OF THE WORK
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DEVELOPMENT OF PROBABILISTIC FRACTURE MECHANICS ANALYSIS CODES FOR REACTOR PRESSURE VESSELS CONSIDERING RECENT EMBRITTLEMENT MODEL AND CALCULATION METHOD OF SIF - PROGRESS OF THE WORK

机译:考虑近期脆性模型的电抗器压力容器概率断裂力学分析码及SIF - 工作进展计算方法

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It is widely recognized that the state of knowledge and data for the probabilistic calculations which had been proposed in the early 1980s made a conservative treatment of several key factors and models. Recently, applications of some new radiation embrittlement model, material database, calculation method of stress intensity factors and others which can improve fracture mechanics assessment of reactor pressure vessel (RPV) are introduced. This improvement on the accuracy and reliability of the probabilistic fracture mechanics (PFM) analysis necessitated changes in PFM analysis procedures and calculations. Modification and application of newly developed models and calculation methods are the main target of developing a probabilistic fracture mechanics analysis code based on the structure of existing R-PIE and VISA computer code to reflect the latest technical basis. Failure probabilities of reactor pressure vessel under pressurized thermal shock (PTS) conditions were calculated through finite difference method (FDM) and Monte Carlo simulation techniques with user friendly graphic interface. Moreover, various radiation embrittlement models and calculation methods of stress intensity factor at crack tip based on AFCEN code are applied and verified in the present work.
机译:众所周知,在20世纪80年代初提出的概率计算的知识和数据的状态是对几个关键因素和模型的保守治疗。最近,介绍了一些新的辐射脆性模型,材料数据库,应力强度因子和其他可以改善反应器压力容器(RPV)断裂力学评估的其他新的辐射脆性型号,材料数据库,计算方法。这种提高了概率骨折力学(PFM)分析的准确性和可靠性(PFM)分析需要改变PFM分析程序和计算。新开发的模型和计算方法的修改和应用是基于现有R-PIE和VISA计算机代码的结构开发概率骨折力学分析码的主要目标,以反映最新的技术基础。通过有限差分法(FDM)和具有用户友好图形界面的有限差分方法(FDM)和Monte Carlo仿真技术计算了加压热冲击(PTS)条件下的反应器压力容器的失效概率。此外,在当前工作中施加并验证了基于AFCEN代码的裂缝尖端处的各种辐射脆性模型和应力强度因子的计算方法。

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