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Seismic damage assessment and mechanism analysis of underground powerhouse of the Yingxiuwan Hydropower Station under the Wenchuan earthquake

机译:汶川地震映秀湾水电站地下厂房震害评估与机理分析。

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摘要

The Yingxiuwan underground powerhouse is one of the closest large-scale underground structures from the epicenter of the Wenchuan earthquake and suffered significant damage during this earthquake. What makes this case even more interesting is that the seismic damage is mainly distributed in the upper part of the concrete structure in the underground powerhouse. A full three-dimensional dynamic finite element model of the underground structure and rock system is adopted to make a reasonable assessment for the seismic damage observed in the field and to study the damage characteristics and mechanisms of the underground powerhouse. Additionally, to approximate actual field conditions, the oblique incidence of seismic waves and the rock-structure interaction (RSI) are both considered in this study, and their effects on the seismic response are evaluated. The numerical results indicate that the oblique incidence of the seismic wave and the RSI both contribute to a larger seismic response, and the results compare well with the field observations when the two are considered. The damage distribution of the concrete structure is mainly dominated by the structure feature itself. The main cause of the severe damage in the upper structure is due to the lack of sufficient constraints on it, which leads to a large deformation in the upper structure.
机译:映秀湾地下厂房是距汶川地震震中最近的大型地下建筑物之一,在地震中遭受了严重破坏。使这种情况更加有趣的是,地震破坏主要分布在地下厂房的混凝土结构的上部。采用地下结构和岩石系统的完整三维动态有限元模型,对现场观测到的地震破坏进行合理评估,并研究地下厂房的破坏特征和机理。此外,为了近似实际的现场条件,在本研究中考虑了地震波的斜入射和岩石-结构相互作用(RSI),并评估了它们对地震响应的影响。数值结果表明,地震波的斜入射和RSI均对较大的地震响应有贡献,当考虑两者时,结果与现场观测结果相比较。混凝土结构的损伤分布主要由结构特征本身决定。上部结构严重损坏的主要原因是由于对上部结构缺乏足够的约束,导致上部结构变形较大。

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