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DEVELOPMENT OF A PROBABILISTIC FRACTURE MECHANICS CODE FOR PRIMARY SYSTEM PIPES AND APPLICATION FOR RI-ISI

机译:主要系统管道概率断裂力学代码的开发及其在RI-ISI中的应用

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Recently, the use of risk information in regulatory decision as well as operation and maintenance of nuclear power plant has been gradually increased. Application of risk information to optimize the inservice inspection of nuclear piping system has been one of such an attempt in Korea. An accurate evaluation of the risk, or failure probability for each pipe subcomponent is essential to the application of the risk-informed inservice inspection. For this purpose, a probabilistic fracture mechanics code based on Monte Carlo simulation techniques was developed to handle various flaw shapes and orientations in nuclear piping system. Then, the failure probabilities of various subcomponents of the main coolant loop in a pressurized water reactor were calculated, and the relative risk ranking was determined using the plant's data. Also, the effects of in-service inspection and frequency on the risk were investigated. Finally, the application of the probabilistic fracture mechanics methods to the risk-informed inservice inspection of nuclear piping system was discussed.
机译:最近,逐渐增加了在监管决策以及核电厂运行和维护中使用风险信息的能力。在韩国,尝试使用风险信息来优化核管道系统的在役检查是一种尝试。对每个管道子组件的风险或失败概率的准确评估对于应用风险告知的在役检查至关重要。为此,开发了基于蒙特卡洛模拟技术的概率断裂力学代码,以处理核管道系统中的各种缺陷形状和方向。然后,计算压水堆中主冷却剂回路的各个子组件的故障概率,并使用工厂数据确定相对风险等级。此外,还研究了在役检查和频率对风险的影响。最后,讨论了概率断裂力学方法在风险告知下的核管道系统在役检查中的应用。

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