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Seismic Fragility of Base-isolated Nuclear Power Plant Structures Considering Spatially Varying Ground Motions

机译:考虑空间变化的地基隔离核电站结构的地震易损性

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The amplitudes and phases of the seismic ground motions change significantly over extended distances. Therefore, the spatial variation of ground motions has an important effect on the responses of long structures and foundations such as nuclear power plants (NPPs). The study presents the seismic fragility analysis of a base-isolated structure under the spatially varying ground motions. In this study, the base-isolated NPP with a total height of 65.8m and hemispherical dome is modelled as a lumped mass stick model. The structural NPP stick model and the nuclear island base mat are established by installing 121 lead rubber bearing (LRB) base isolation. The ground motions incoherency is performed using an isotropic frequency-dependent spatially correlation function. The seismic fragility of BI-NPP are investigated under the uniform excitation in addition to considering the spatially varying ground motions. The fragility curves are estimated for three limit states representing the design displacement of the base isolation. Thereafter this study emphasize the need of consideration of spatial variation in seismic design codes more practically for base-isolated nuclear power plants.
机译:地震地震动的幅度和相位在延长距离上会发生显着变化。因此,地震动的空间变化对诸如核电站(NPP)之类的长结构和地基的响应具有重要影响。该研究提出了在空间变化的地震动下基础隔震结构的地震脆性分析。在这项研究中,总高度为65.8m的,基本隔离的NPP和半球形圆顶被建模为集总块状模型。通过安装121铅橡胶轴承(LRB)基础隔离物来建立NPP棒结构模型和核岛基础垫。使用各向同性频率相关的空间相关函数执行地面运动的不相干性。除了考虑空间变化的地震动外,还研究了BI-NPP在均匀激励下的地震脆性。针对代表基本隔离设计位移的三个极限状态估算了脆性曲线。此后,这项研究强调了对基础隔离型核电站更实际地考虑抗震设计规范中空间变化的需求。

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