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ASSESSMENT OF THERMAL FATIGUE IN MIXING TEE BY FSI ANALYSIS

机译:基于FSI分析的混合三通热疲劳评估。

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Thermal fatigue is a significant long-term degradation mechanism in nuclear power plants. In particular, as operating plants become older and life time extension activities are initiated, operators and regulators need screening criteria to exclude risks of thermal fatigue and methods to determine significant fatigue relevance. In general, the common thermal fatigue issues are well understood and controlled by plant instrumentation at fatigue susceptible locations. However, incidents indicate that certain piping system Tee connections are susceptible to turbulent temperature mixing effects that cannot be adequately monitored by common thermocouple instrumentations. Therefore, in this study thermal fatigue evaluation of piping system Tee-connections is performed using the fluid-structure interaction (FSI) analysis. From the thermal hydraulic analysis, the temperature distributions are determined and their results are applied to the structural model of the piping system to determine the thermal stress. Using the rain-flow method the fatigue analysis is performed to generate fatigue usage factors. The procedure for improved load thermal fatigue assessment using FSI analysis shown in this study will supply valuable information for establishing a methodology on thermal fatigue.
机译:热疲劳是核电站中重要的长期降解机制。尤其是,随着运营工厂的老化和寿命延长活动的开始,运营商和监管机构需要筛选标准以排除热疲劳风险,并确定重要的疲劳相关性方法。一般而言,常见的热疲劳问题已通过在易受疲劳影响的位置的工厂仪器很好地理解和控制。但是,事故表明某些管道系统的Tee连接容易受到湍流温度混合的影响,而普通的热电偶仪器无法充分监测这些影响。因此,在本研究中,使用流固耦合(FSI)分析对管道系统三通进行热疲劳评估。通过热力水力分析确定温度分布,并将其结果应用于管道系统的结构模型以确定热应力。使用雨流法进行疲劳分析以生成疲劳使用系数。本研究中显示的使用FSI分析的改进的负载热疲劳评估程序将为建立热疲劳方法提供有价值的信息。

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