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Simplified elastic-plastic analysis procedure for strain-based fatigue assessment of nuclear safety class 1 components under severe seismic loads

机译:严重地震载荷下核安全型核安全​​型组分的应变疲劳评估简化弹塑性分析程序

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This paper proposes a simplified elastic-plastic analysis procedure using the penalty factors presented in the Code Case N-779 for strain-based fatigue assessment of nuclear safety class 1 components under severe seismic loads such as safety shutdown earthquake and beyond design-basis earthquake. First, a simplified elastic-plastic analysis procedure for strain-based fatigue assessment of nuclear safety class 1 components under the severe seismic loads was proposed based on the analysis result for the simplified elastic-plastic analysis procedure in the Code Case N-779 and the stress categories corresponding to normal operation and seismic loads. Second, total strain amplitude was calculated directly by performing finite element cyclic elastic-plastic seismic analysis for a hot leg nozzle in pressurizer surge line subject to combined loading including deadweight, pressure, seismic inertia load, and seismic anchor motion, as well as was derived indirectly by applying the proposed analysis procedure to the finite element elastic stress analysis result for each load. Third, strain-based fatigue assessment was implemented by applying the strain-based fatigue acceptance criteria in the ASME B&PV Code, Sec. III, Subsec. NB, Article NB-3200 and by using the total strain amplitude values calculated. Last, the total strain amplitude and the fatigue assessment result corresponding to the simplified elastic-plastic analysis were compared with those using the finite element elastic-plastic seismic analysis results. As a result of the comparison, it was identified that the proposed analysis procedure can derive reasonable and conservative results.
机译:本文提出了一种简化的弹性塑性分析程序,使用代码案例N-779中的罚款因素进行核安全性1组分的核心疲劳评估,在严重地震载量下,如安全关闭地震等设计基地地震。首先,基于在代码案例N-779中的简化弹性塑性分析程序的分析结果,提出了一种简化的弹性塑料分析程序,用于严重地震载量下的核安全等级1组分。应力类别对应于正常操作和地震载荷。其次,通过对加压管道中的热腿喷嘴进行有限元循环弹性塑料地震分析,直接计算总应变幅度,该循环循环弹性塑料地震分析,该加压型在电压型喘载线上进行组合加载,包括可重量载,压力,地震惯性载荷和地震锚运动,以及衍生间接通过将所提出的分析程序应用于每个负载的有限元弹性应力分析结果。第三,通过在ASME B&PV码中应用基于菌株的疲劳验收标准来实施基于菌株的疲劳评估。 III,子公司。 Nb,第Nb-3200和使用计算的总应变幅度值。最后,将与使用有限元弹性塑料地震分析结果进行比较的总应变幅度和对应于简化弹性塑性分析的疲劳评估结果。由于比较,确定所提出的分析程序可以推出合理和保守的结果。

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