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3-D numerical analysis on seismic responses of the underground large scale frame structure under near-fault ground motions

机译:近地下地震作用下地下大型框架结构地震响应的三维数值分析

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This paper mainly focuses on seismic responses of the underground large scale frame structure (ULSFS) under near-fault ground motions with the long-period velocity pulse and high-frequency components. 3-D finite models of the ULSFS with great scales along two horizontal directions are proposed by an underground supermarket under building. A representative near-fault ground motion including the long-period velocity pulse and high-frequency components is selected from the Northridge earthquake. Through parametric analyses, the distinctive seismic responses of the ULSFS under the near-fault ground motion have been highlighted. In addition, the typical near-fault ground motion is decomposed into the low-frequency motion and the high-frequency motion to investigate effects of the soil deformation and structural vibration on the ULSFS, respectively. This study reveals that there are obvious tensile damages on the outside floor slabs and walls where soil-structure interaction is great; and bottom columns have the greatest horizontal deformation and tensile damage with an increase from outside to inside of the ULSFS, and top second-columns perform the salient flexural deformation due to soil-structure interaction. Moreover, the dynamic vibration of the ULSFS not only enlarges the whole seismic responses but also causes the severe tensile damage on outside floor slabs and walls; and the soil deformation in the long-period velocity pulse is more likely to result in the increasing internal forces of bottom columns and the flexural deformations of top second-columns.
机译:本文主要研究具有长周期速度脉冲和高频分量的近断层地震动下地下大型框架结构(ULSFS)的地震响应。正在建设中的地下超市提出了在两个水平方向上具有大比例尺的ULSFS的3-D有限模型。从北岭地震中选择了具有代表性的近断层地面运动,包括长周期速度脉冲和高频分量。通过参数分析,ULSFS在近断层地震动下的独特地震响应得到了强调。另外,将典型的近断层地面运动分解为低频运动和高频运动,分别研究了土体变形和结构振动对ULSFS的影响。这项研究表明,在土-结构相互作用大的外层楼板和墙壁上,存在明显的拉伸损伤。底部和底部的柱具有最大的水平变形和拉伸损伤,并且从ULSFS的外部到内部都有增加,并且顶部的第二根柱由于土壤与结构之间的相互作用而发生显着的挠曲变形。而且,ULSFS的动态振动不仅扩大了整个地震响应,而且还严重破坏了外部楼板和墙体的拉伸强度。长周期速度脉冲中的土体变形更可能导致底柱的内力增加以及顶二柱的挠曲变形。

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