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Green's function method with consideration of temperature dependent material properties for fatigue monitoring of nuclear power plants

机译:考虑温度依赖材料特性的格林函数方法用于核电站疲劳监测

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摘要

In this paper, a method to consider temperature dependent material properties when using the Green's function method is proposed by using a numerical weight function approach. This is verified by using detailed finite element analyses for a pressurizer spray nozzle with various assumed thermal transient load cases. From the results, it is found that the temperature dependent material properties can significantly affect the maximum peak stresses and the proposed method can resolve this problem with the weight function approach. Finally, it is concluded that the temperature dependency of the material properties affects the maximum stress ranges for a fatigue evaluation. Therefore, it is necessary to consider this effect to monitor fatigue damage when using a Green's function method for the real operating conditions in a nuclear power plant.
机译:在本文中,提出了一种使用格林函数方法考虑温度依赖材料特性的方法。通过在各种假定的热瞬态载荷情况下对增压器喷嘴进行详细的有限元分析,可以验证这一点。从结果中发现,温度相关的材料性能会显着影响最大峰值应力,并且所提出的方法可以使用权函数方法解决此问题。最后得出结论,材料性能的温度依赖性会影响疲劳评估的最大应力范围。因此,在核电站的实际运行条件下使用格林函数方法时,有必要考虑这种影响以监测疲劳损伤。

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