首页> 外文期刊>Advances in civil engineering >Near-Fault Ground Motion Influence on the Seismic Responses of a Structure with Viscous Dampers considering SSI Effect
【24h】

Near-Fault Ground Motion Influence on the Seismic Responses of a Structure with Viscous Dampers considering SSI Effect

机译:考虑SSI效应的粘性阻尼器结构的近断层运动对粘性阻尼器的抗震反应影响

获取原文
           

摘要

This paper studies the influence of the characteristics of the near-fault ground motion on the seismic responses of the structure with energy dissipation devices including soil-structure interaction (SSI). A ten-story reinforced concrete frame rested on soft site is introduced, and the viscous dampers added in the frame are designed. The numerical analysis method of the soil-structure system with viscous dampers is established through ANSYS program. In addition, the response spectra of the main characteristics of the near-fault ground motion, like hanging wall effect, velocity pulse-like effect, and forward-directivity effect, are investigated carefully to learn the features of spectra energy distribution. And then, the dynamic time-history analysis is performed on the SSI system with and without viscous dampers subjected to the selected near-fault ground motion. The study reveals that the seismic responses of the structure subjected to near-fault ground motion with hanging wall effect are obviously larger than those of the footwall effect, indicating the distinct hanging wall effects on the structural dynamic responses. In addition, the performance of the structure with viscous dampers is more influenced by the ground motion containing fling-step effect than that with forward-directivity effect. Moreover, the influence of the horizontal component of forward-directivity ground motion on the seismic responses of the structure is more obvious than that of parallel component ground motion. Consequently, the hanging wall effect, velocity pulse, and horizontal component in forward-directivity effect of the near-fault ground motion have distinct influence on the seismic responses of the structure with energy dissipation devices considering SSI effect, providing insight towards the performance-based seismic design of buildings rested at the near-fault sites considering the seismic SSI effect.
机译:本文研究了近端故障地面运动特性对具有土壤结构相互作用(SSI)的能量耗散装置的结构的地震反应的影响。介绍了一个十一型钢筋混凝土框架,依靠软点,设计了框架中添加的粘性阻尼器。通过ANSYS程序建立了粘性阻尼器土结构系统的数值分析方法。此外,仔细研究了近端故障接地运动的主要特性的响应光谱,如悬挂壁效应,速度脉冲样效果和前向方向效应,以学习光谱能量分布的特征。然后,在SSI系统上执行动态时间历史分析,其中没有粘性阻尼器经过所选择的近故障地面运动。该研究表明,经过悬挂墙效应的近断层地运动的结构的地震反应显然大于脚壁效应,表明对结构动态反应的不同悬挂壁效应。此外,具有粘性阻尼器的结构的性能受到施加剥落阶跃效应的地面运动的影响更大,而不是前进方向效应。此外,向前方向性地面运动水平分量对结构的地震反应的影响比平行分量接地运动更加明显。因此,悬浮壁效应,速度脉冲和近端故障地面运动的横向效应的水平分量对考虑SSI效应的能量耗散装置的结构对结构的地震反应不同,为基于性能的效力提供了洞察力考虑到地震SSI效应,建筑物的地震设计依次休息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号