首页> 外文会议>ASME Pressure Vessels and Piping conference >OPTIMIZING MAINTENANCE STRATEGY OF A REACTOR PRESSURE VESSEL USING 3D-CFD AND FEM BASED PROBABILISTIC PRESSURIZED THERMAL SHOCK ANALYSIS
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OPTIMIZING MAINTENANCE STRATEGY OF A REACTOR PRESSURE VESSEL USING 3D-CFD AND FEM BASED PROBABILISTIC PRESSURIZED THERMAL SHOCK ANALYSIS

机译:基于3D-CFD和FEM的概率压力热冲击分析优化反应堆压力容器的维护策略

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The structural integrity of a reactor pressure vessel (RPV) is important for the safety of a nuclear power plant. When the emergency core cooling system (ECCS) is operated and the coolant water is injected into the RPV due to a loss-of-coolant accident (LOCA), the pressurized thermal shock (PTS) loading takes place. With the neutron irradiation, PTS loading may lead a RPV to fracture. Therefore, it is necessary to evaluate the performance of RPV during PTS loading to keep the reactor safety. In the present study, optimization of RPV maintenance is considered, where two different attempts are made to investigate the RPV integrity during PTS loading by employing the deterministic and probabilistic methodologies. For the deterministic integrity evaluation, 3D-CFD and finite element method (FEM) simulations are performed, and stress intensity factors (SIFs) are obtained as a function of crack position inside the RPV. As to the probabilistic integrity evaluation, on the other hand, a more accurate spatial distribution of SIF on the RPV is calculated. By comparing the distribution thus obtained with the fracture toughness included as a part of the master curve, the dependence of fracture probabilities on the position inside the RPV is obtained. Using the spatial distribution of fracture probabilities in RPV, the priority of the inspection and maintenance is finally discussed.
机译:反应堆压力容器(RPV)的结构完整性对于核电厂的安全至关重要。当应急堆芯冷却系统(ECCS)运行并且由于冷却液流失事故(LOCA)将冷却剂水注入RPV时,就会发生加压热冲击(PTS)负载。在中子辐照下,PTS负载可能导致RPV破裂。因此,有必要在PTS加载过程中评估RPV的性能,以保持反应堆的安全性。在本研究中,考虑了RPV维护的优化,其中通过采用确定性和概率方法,进行了两种不同的尝试来研究PTS加载期间的RPV完整性。为了进行确定性完整性评估,执行了3D-CFD和有限元方法(FEM)模拟,并获得了应力强度因子(SIF)作为RPV内部裂纹位置的函数。另一方面,关于概率完整性评估,计算了RPV上SIF的更准确的空间分布。通过将这样获得的分布与作为主曲线一部分的断裂韧性进行比较,可以获得断裂概率对RPV内部位置的依赖性。利用RPV中裂缝概率的空间分布,最后讨论了检查和维护的优先级。

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