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Simplified model and seismic response of integrated nuclear containment system based on frequency adaptive lumped-mass stick modeling approach

机译:基于频率自适应集总质量棒建模方法的集成核安全壳系统简化模型和地震响应

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摘要

Finite element analysis based on solid elements can be used in the seismic analysis of integrated nuclear containment systems, which include structural components (nuclear containment building) and non-structural components (reactor vessel, steam generator, etc.). However, this solid element based FE modeling requires long computational times or high costs to acquire the analysis results; this is due to the large number of nodes and the resulting large matrix during the integration and assembly of all elements. These long computational times present several difficulties for seismic engineers in the preliminary design steps since the large number of earthquake data are used in the analysis and several design parameters need be changed. This paper presents a new simplified modeling technique for an integrated nuclear containment system, named "frequency adaptive Lumped Mass Stick (LMS) model". This technique consists of a smaller number of stick elements and lumped masses, and it determines the amount of lumped masses to be identical to the frequencies of the original or actual structures. The frequency adaptive LMS modeling technique is applied to all structural and non-structural components of the nuclear containment building system. The integrated system is obtained considering the connecting boundary conditions of each component. Seismic analysis of the integrated system is performed using the simplified model and the results are compared to those of the solid based finite element model.
机译:基于固体元素的有限元分析可用于集成核安全壳系统的地震分析,其中包括结构组件(核安全壳建筑物)和非结构组件(反应堆容器,蒸汽发生器等)。但是,这种基于实体元素的有限元建模需要较长的计算时间或较高的成本才能获取分析结果。这是由于在所有元素的集成和组装过程中节点数量众多以及由此产生的大型矩阵。这些漫长的计算时间为地震工程师在初步设计步骤中带来了许多困难,因为分析中使用了大量地震数据,并且需要更改一些设计参数。本文提出了一种用于集成核安全壳系统的新的简化建模技术,称为“频率自适应集总质量棒(LMS)模型”。该技术由较少数量的杆状元素和集总质量组成,它确定集总质量的数量与原始结构或实际结构的频率相同。频率自适应LMS建模技术应用于核安全壳构建系统的所有结构和非结构组件。考虑到每个组件的连接边界条件,获得了集成系统。使用简化模型对集成系统进行地震分析,并将结果与​​基于实体的有限元模型进行比较。

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