首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Influence of dynamic soil-structure interaction on the nonlinear response and seismic reliability of multistorey systems
【24h】

Influence of dynamic soil-structure interaction on the nonlinear response and seismic reliability of multistorey systems

机译:土-结构动力相互作用对多层系统非线性响应和地震可靠度的影响

获取原文
获取原文并翻译 | 示例

摘要

A set of reinforced concrete structures with gravitational loads and mechanical properties (strength and stiffness) representative of systems designed for earthquake resistance in accordance with current criteria and methods is selected to study the influence of dynamic soil-structure interaction on seismic response, ductility demands and reliability levels. The buildings are considered located at soft soil sites in the Valley of Mexico and subjected to ground motion time histories simulated in accordance with characteristic parameters of the maximum probable earthquake likely to occur during the system's expected life. For the near-resonance condition the effects of soil-structure interaction on the ductility demands depend mainly on radiation damping. According to the geometry of the structures studied this damping is strongly correlated with the aspect ratio, obtained by dividing the building height by its width. In this way, for structures with aspect ratio greater than 1.4 the storey and global ductility demands increase with respect to those obtained with the same structures but on rigid base, while for structures with aspect ratio less than 1.4 the ductility demands decrease with respect to those for the structures on rigid base. For the cases when the fundamental period of the structure has values very different from the dominant ground period, soil-structure interaction leads in all cases to a reduction of the ductility demands, independently of the aspect ratio. The reliability index β is obtained as a function of the base shear ratio and of the seismic intensity acting on the nonlinear systems subjected to the simulated motions. The resulting reliability functions are very similar for systems on rigid or on flexible foundation, provided that in the latter case the base rotation and the lateral displacement are removed from the total response of the system.
机译:选择一组具有重力载荷和机械性能(强度和刚度)的钢筋混凝土结构,这些结构代表了根据当前标准和方法设计的抗震系统,以研究动力土-结构相互作用对地震响应,延性要求和抗力的影响。可靠性水平。这些建筑物被认为位于墨西哥谷的软土地上,并经受了根据系统预期寿命期间可能发生的最大可能地震的特征参数模拟的地震动时间历史。对于近共振条件,土-结构相互作用对延性要求的影响主要取决于辐射衰减。根据所研究结构的几何形状,该阻尼与通过将建筑物高度除以其宽度而获得的长宽比密切相关。这样,对于长宽比大于1.4的结构,相对于使用相同结构但在刚性基础上获得的结构,楼层和整体延性要求增加,而对于长宽比小于1.4的结构,其延性要求相对于那些在刚性基础上降低用于刚性基础上的结构。对于结构的基本周期的值与主要地面周期的值非常不同的情况,在所有情况下,土-结构相互作用都会导致延性要求的降低,而与纵横比无关。获得的可靠度指数β是基础剪力比和作用在经过模拟运动的非线性系统上的地震强度的函数。对于在刚性或柔性基础上的系统,所产生的可靠性功能非常相似,条件是在后一种情况下,从系统的总响应中除去基本旋转和横向位移。

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