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Wavelet analysis of soil-structure interaction effects on seismic responses of base-isolated nuclear power plants

机译:土壤结构相互作用对底核电厂地震响应的小波分析

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Seismic base isolation has been accepted as one of the most popular design procedures to protect important structures against earthquakes. However, due to lack of information and experimental data the application of base isolation is quite limited to nuclear power plant (NPP) industry. Moreover, the effects of inelastic behavior of soil beneath base-isolated NPP have raised questions to the effectiveness of isolation device. This study applies the wavelet analysis to investigate the effects of soil-structure interaction (SSI) on the seismic response of a base-isolated NPP structure. To evaluate the SSI effects, the NPP structure is modelled as a lumped mass stick model and combined with a soil model using the concept of cone models. The lead rubber bearing (LRB) base isolator is used to adopt the base isolation system. The shear wave velocity of soil is varied to reflect the real rock site conditions of structure. The comparison between seismic performance of isolated structure and non-isolated structure has drawn. The results show that the wavelet analysis proves to be an efficient tool to evaluate the SSI effects on the seismic response of base-isolated structure and the seismic performance of base-isolated NPP is not sensitive to the effects in this case.
机译:地震基地隔离被认为是保护对地震重要组织的最受欢迎的设计程序之一。然而,由于缺乏信息和实验数据,基本隔离的应用非常仅限于核电厂(NPP)行业。此外,基础分离的NPP下部土壤的非弹性行为的影响提出了分离装置的有效性的问题。本研究适用于小波分析来研究土壤 - 结构相互作用(SSI)对碱基分离的NPP结构的地震反应的影响。为了评估SSI效果,NPP结构被建模为集成的质量棒模型,并使用锥形模型的概念与土壤模型结合。铅橡胶轴承(LRB)底座隔离器用于采用基础隔离系统。土壤的剪切波速度变化以反映结构的真实岩石位点。绘制了隔离结构和非隔离结构的地震性能的比较。结果表明,小波分析证明是评估SSI对基本隔离结构的地震反应的有效工具,并且基础隔离NPP的地震性能对这种情况下的效果不敏感。

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