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A Structural Configuration with Separate Substructures towards Reducing the Seismic Damage of Spatial Structures with Rectangular Plan

机译:一种结构配置,具有单独的子结构,用于减少矩形结构的空间结构的地震损伤

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Seismic damage of spatial structures of rectangular plan with RC substructures was observed in several earthquakes, especially in the RC substructures. In order to reduce the seismic damage potential, a new structural configuration of spatial structure of rectangular plan is proposed, the substructures of which are composed of the steel substructure and the RC substructure. The latter only bears the vertical load of roof by the arrangement of horizontal sliding bearings between the roof and the RC substructure. The pushover analyses are performed on a steel braced frame and an RC frame with similar lateral stiffness, and the results show that the lateral capacity of the steel structure is much larger than those of the RC structures. A spatial structure of rectangular plan with two different substructures is designed according to Chinese structural designing codes. Seismic time history analyses are carried out for the spatial structure under five ground motions. The results show that the damage mainly concentrates on the substructures, and the seismic performance of the structure with steel and RC substructures is much better than that of the structure with RC substructures.
机译:在几种地震中观察到具有RC子结构的矩形计划的空间结构的地震损伤,特别是在RC子结构中。为了降低地震损伤电位,提出了一种新的矩形平面结构的结构配置,其子结构由钢结构和RC子结构组成。后者仅通过屋顶和RC子结构之间的水平滑动轴承的布置承载屋顶的垂直载荷。在钢支撑框架和具有相似横向刚度的RC框架上执行推进分析,结果表明,钢结构的横向容量远大于RC结构的横向容量。根据中国结构设计码设计具有两个不同子结构的矩形平面的空间结构。在五个地面运动下的空间结构进行地震时间历史分析。结果表明,损坏主要集中在子结构上,钢和RC子结构的结构的地震性能远优于具有RC子结构的结构的结构。

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