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Review of the finite element models for a structural integrity evaluation of the sodium-cooled fast reactor high temperature piping

机译:钠冷快堆高温管道结构完整性评估的有限元模型综述

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We compared the structural analysis feature of finite element (FE) models for the structural integrity evaluation of the sodium-cooled fast reactor (SFR) high temperature piping and to evaluate the structural integrity against the typical duty cycle event. To evaluate the structural integrity of the high temperature piping per ASME Subsection NH rules, the structural analysis should be carried out first by using a 3-dimensional structural model. The object FE models under consideration in this study are pipe element model, 3-D full model, and 3-D simplified model. The pipe element model is based on the 3-D beam element and effective in understanding overall deformation but less favorable to the detailed stress distribution. The 3-D full model consists of solid structure as well as the contained coolant inside the piping structure with the fluid element. The 3-D simplified model consists of structure shape only, but its material properties are recalculated to reflect the coolant weight effect. The loading conditions for the structural analyses are the mechanical load including dead weight and steady state thermal load. From the analysis results, the piping element model shows the smallest stress intensity, and the required time for FE analysis is also the shortest. The 3-D simplified model shows the most conservative stress intensity output but its calculation time is less than the 3-D full model.
机译:我们比较了有限元(FE)模型的结构分析功能,以评估钠冷快堆(SFR)高温管道的结构完整性,并针对典型的占空比事件评估了结构完整性。要根据ASME子节NH规则评估高温管道的结构完整性,应首先使用3维结构模型进行结构分析。本研究中考虑的对象有限元模型是管道元素模型,3-D完整模型和3-D简化模型。管单元模型基于3-D梁单元,可以有效地理解整体变形,但不利于详细的应力分布。 3-D完整模型由实体结构以及带流体元件的管道结构内部包含的冷却剂组成。 3-D简化模型仅由结构形状组成,但是重新计算了其材料属性以反映冷却剂重量效应。结构分析的载荷条件是机械载荷,包括自重和稳态热载荷。从分析结果来看,管道单元模型显示出最小的应力强度,而有限元分析所需的时间也最短。 3-D简化模型显示了最保守的应力强度输出,但其计算时间少于3-D完整模型。

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