首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >FINITE ELEMENT ANALYSES OF JNES/NUPEC SEISMIC SHEAR WALL CYCLIC AND SHAKING TABLE TEST DATA
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FINITE ELEMENT ANALYSES OF JNES/NUPEC SEISMIC SHEAR WALL CYCLIC AND SHAKING TABLE TEST DATA

机译:JNES / NUPEC地震剪力墙周期和振动台试验数据的有限元分析

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This paper describes a finite element analysis to predict the JNES/NUPEC cyclic and shaking table RC shear wall test data, as part of a collaborative agreement between the U.S. NRC and JNES to study seismic issues important to the safe operation of commercial nuclear power plant (NPP) structures, systems and components (SSC). The analyses described in this paper were performed using ANACAP reinforced concrete models. The paper describes the ANACAP analysis models and discusses the analysis comparisons with the test data. The ANACAP capability for modeling nonlinear cyclic characteristics of reinforced concrete shear wall structures was confirmed by the close comparisons between the ANACAP analysis results and the JNES/NUPEC cyclic test data. Reasonable agreement between the analysis results and the test data was demonstrated for the hysteresis loops and the shear force orbits, in terms of both the overall shape and the cycle-to-cycle comparisons. The ANACAP simulation analysis of the JNES/NUPEC shaking table test was also performed, which demonstrated that the ANACAP dynamic analysis with concrete material model is able to capture the progressive degrading behavior of the shear wall as indicated from the test data. The ANACAP analysis also predicted the incipient failure of the shear wall, reasonably close to the actual failure declared for the test specimen. In summary, the analyses of the JNES/NUPEC cyclic and shaking table RC shear wall tests presented in this paper have demonstrated the state-of-the-art analysis capability for determining the seismic capacity of RC shear wall structures.
机译:本文描述了一种有限元分析方法,以预测JNES / NUPEC循环和振动台RC剪力墙试验数据,这是美国NRC和JNES之间达成的一项合作协议的一部分,以研究对商业核电站的安全运行至关重要的地震问题( NPP)结构,系统和组件(SSC)。本文描述的分析是使用ANACAP钢筋混凝土模型进行的。本文介绍了ANACAP分析模型,并讨论了与测试数据的分析比较。 ANACAP分析结果与JNES / NUPEC循环试验数据之间的紧密比较,证实了ANACAP对钢筋混凝土剪力墙结构非线性循环特性建模的能力。磁滞回线和剪切力轨道的分析结果与测试数据之间的合理一致性在总体形状和周期与周期之间的比较方面都得到了证明。还进行了JNES / NUPEC振动台试验的ANACAP仿真分析,这表明采用混凝土材料模型进行ANACAP动力分析能够捕获剪力墙的渐进降解行为,如试验数据所示。 ANACAP分析还预测了剪力墙的初期破坏,合理地接近了试样的实际破坏。综上所述,本文对JNES / NUPEC循环和振动台RC剪力墙试验的分析证明了确定RC剪力墙结构抗震能力的最新分析能力。

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