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Development of Finite Element Models from Existing Lumped Mass Stick Models

机译:从现有的整体质量棒模型开发有限元模型

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In response to the severe reactor accident at the Fukushima Dai-ichi site, many plants in the US have decided to perform Seismic Probabilistic Risk Assessment (SPRA) or update the existing models. As part of SPRA, it is required to compute the in-structure response in order to analyze the vulnerability of equipment at different locations in the plant. Most plants in the US constructed Lumped Mass Stick Models (LMSM) for their design-basis dynamic analysis, but these models are ineffective in capturing local response. On the other hand, Finite Element Models (FEM) can provide more accurate estimation of the local response, but assembling FEM's are resource intensive. Besides that, the data required to develop these models are hard to assimilate for the older nuclear power plant structures. This paper summarizes a set of techniques and procedures that were developed by the authors to use the existing LMSM in making FEM, that captures the behavior of the as-built structure by taking advantage of available resources and previous LMSM's.
机译:为了应对福岛第一核电站发生的严重反应堆事故,美国许多工厂决定进行地震概率风险评估(SPRA)或更新现有模型。作为SPRA的一部分,需要计算结构内响应,以便分析工厂中不同位置的设备的脆弱性。美国的大多数工厂都为他们的设计基础动态分析构建了集总质量棒模型(LMSM),但是这些模型在捕获局部响应方面效果不佳。另一方面,有限元模型(FEM)可以提供对本地响应的更准确的估计,但是组装FEM会占用大量资源。除此之外,开发这些模型所需的数据很难与较旧的核电站结构进行同化。本文总结了作者开发的,用于使用现有LMSM进行有限元分析的一组技术和过程,这些技术和过程通过利用可用资源和以前的LMSM捕获了已建结构的行为。

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