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Probabilistic Fracture Mechanics Analyses of Reactor Pressure Vessel under PTS Transients

机译:PTS瞬态下反应堆压力容器的概率断裂力学分析

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The probabilistic fracture mechanics (PFM) analysis code PASCAL has been developed in JAERI. This code can evaluate the conditional probabilities of crack initiation and fracture of a reactor pressure vessel (RPV) under transient conditions such as pressurized thermal shock (PTS). Based on the temperature and stress distributions in the vessel wall for four cases of PTS transients in a typical 3-loop PWR, parametric PFM analyses were performed using PASCAL on the variables such as pre-service inspection method, crack geometry, fracture toughness curve and irradiation embrittlement prediction equation. The results showed that the Arakawa's model for a pre-service inspection had a significant effect on the fracture probability and reduced it by more than 3 orders of magnitude compared with no inspection case. The fracture probability calculated by the fracture toughness estimation method in Japan was about 2 orders of magnitude lower than that by the USA method. It was found that the treatment of a semi-elliptical crack after its initiation in PASCAL reduced the conservatism in a conventional method where it is transformed into an infinite length crack.
机译:JAERI中已经开发了概率断裂力学(PFM)分析代码PASCAL。该代码可以评估在瞬态条件下(如加压热冲击(PTS))反应堆压力容器(RPV)的裂纹萌生和破裂的条件概率。根据典型3回路PWR中4种PTS瞬变情况的容器壁温度和应力分布,使用PASCAL对变量进行参数PFM分析,这些变量包括使用前检查方法,裂纹几何形状,断裂韧性曲线和辐照脆化预测方程。结果表明,与没有检查的情况相比,荒川的维修前检查模型对断裂概率有显着影响,并将其降低了3个数量级以上。在日本,通过断裂韧性估算方法计算出的断裂概率比美国方法低约2个数量级。已发现,在PASCAL中对半椭圆形裂纹进行处理后,传统方法将其转变为无限长的裂纹,从而降低了保守性。

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