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LONG TERM FATIGUE EVALUATION IN PRIMARY CIRCUIT COMPONENTS WITHIN NUCLEAR POWER PLANTS OPERATED BY E.ON

机译:E.ON经营的核电站内主要电路组件的长期疲劳评估

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Temperature-measuring thermocouples have been applied to various positions on primary circuit piping where most significant thermal loads were expected. Measuring positions were monitored and evaluated, leading to comprehensive information of existing thermal loadings like stratification and thermo shock events. During design of NPP (nuclear power plant) predicted cumulative fatigue usage factors (CUF) were defined based on specified transients. Conservative assumptions are part of this predicted end of life CUF. In comparison to detailed analysis based on real measured values, these predictions based on specified loads are leading to more conservative results in general. Evaluations underline the conservatism of design predictions in general and result in substantial progress in component integrity assessment knowledge. The range of methods to calculate component specific fatigue usage factors goes from conservative approaches based on the evaluation of the stress range of the specific events up to numerical Finite Element simulations. Based on the level of detail the conservatism decreases while the complexity of the model increases. An overview of monitoring measures of passive piping components in terms of thermal fatigue assessment is being applied in NPPs operated by E.ON Kernkraft GmbH. Evaluation methods will be discussed in detail and differences between these methods will be presented.
机译:测温热电偶已应用于一次回路管路中预计会有最大热负荷的各个位置。监测和评估测量位置,从而获得有关现有热负荷(例如分层和热冲击事件)的全面信息。在NPP(核电站)的设计过程中,根据指定的瞬变定义了预测的累积疲劳使用系数(CUF)。保守假设是该预期寿命终止CUF的一部分。与基于实际测量值的详细分析相比,基于指定载荷的这些预测通常会导致更为保守的结果。评估强调了总体上设计预测的保守性,并导致了组件完整性评估知识的实质性进步。计算组件特定疲劳使用因子的方法范围从基于对特定事件的应力范围进行评估的保守方法一直到数值有限元模拟。根据详细程度,保守性会降低,而模型的复杂性则会增加。由E.ON Kernkraft GmbH经营的核电厂已采用了根据热疲劳评估来监控被动管道组件的措施。将详细讨论评估方法,并将介绍这些方法之间的差异。

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