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ESTIMATING RESIDUAL LIFE OF ALLOY 600 RPV PENETRATIONS

机译:估计合金600 RPV渗透的残余寿命

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Primary water stress corrosion cracking (PWSCC) of Alloy 600 penetrations in reactor pressure vessel (RPV) heads has become a significant economic concern worldwide. PWSCC of these penetrations has led to extended maintenance outages, expensive inspections and repairs, and in some cases, replacement of the entire vessel head. This paper describes methodology developed to predict the remaining life of Alloy 600 penetrations in reactor vessel heads. Predictions of remaining life are an important input to planning models used by utilities to select a strategy for responding to the PWSCC issue at the lowest life cycle cost with an acceptably low risk of leakage. The remaining life of RPV penetrations is determined using the results of inspections of penetrations and statistical methods to predict future degradation. The analysis takes into account the effects of material properties, welding residual stresses, and operating temperature on PWSCC initiation and growth. The probability of developing cracks of various depths is assessed using Monte Carlo methods which provide for uncertainties in the input assumptions. For plants which have not yet performed inspections, remaining life predictions are based on inspection results from similar plants which have performed inspections with corrections made for known differences in design details, material properties and operating conditions.
机译:反应堆压力容器(RPV)头部的合金600渗透的初级水应激腐蚀裂解(PWSCC)已成为全球性的重大经济问题。这些渗透的PWSCC导致了延长了维护中断,昂贵的检查和维修,在某些情况下更换整个船头。本文介绍了用于预测反应堆船头中的合金600渗透剩余寿命的方法。剩余生命的预测是对公用事业公司使用的规划模型的重要输入,以选择响应PWSCC问题的策略,以最低的生命周期成本,具有可接受的泄漏风险。使用渗透和统计方法的检查结果确定RPV穿透的剩余寿命,以预测未来的降级。分析考虑了材料性能,焊接残余应力和工作温度对PWSCC发育和生长的影响。使用Monte Carlo方法评估各种深度的裂缝的概率,该方法提供输入假设中的不确定性。对于尚未进行检查的植物,剩余的寿命预测基于类似植物的检查结果,该植物已经进行了针对设计细节,材料特性和操作条件的已知差异所做的校正。

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