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Seismic response of base-isolated structures during impact with adjacent structures

机译:基础隔震结构在与相邻结构碰撞过程中的地震响应

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The seismic response of multi-story building supported on various base isolation systems during impact with adjacent structures is investigated. The isolated building is modeled as a shear type structure with lateral degree-of-freedom at each floor. An impact element in the form of spring and dashpot is used to model the adjacent structure (i.e. retaining wall or entry bridge). The coupled differential equations of motion for the isolated system are derived and solved in the incremental form using Newmark's step-by-step iteration method. The variation of top floor absolute acceleration and bearing displacement for different isolation systems during impact upon the adjacent structures under different earthquakes is computed to study the behavior of the building during impact and comparative performance of various isolation systems. The impact response of isolated building is studied under the variation of important system parameters such as size of gap, stiffness of impact element, superstructure flexibility and number of story of base-isolated building. It is concluded that the response of base-isolated structures is affected when impact takes place with the adjacent structures and hence need to be avoided. The superstructure acceleration increases and the bearing displacement decreases due to impact with adjacent structure. However, even after the occurrence of impact phenomenon, the isolation remained effective as compared to the non-isolated structure. Further, it is also observed that superstructure acceleration increases with the increase of the isolation gap up to a certain value and then the acceleration decreases with further increase of gap. The effects of impact are found to be severe for the system with flexible superstructure, increased number of story and greater stiffness of the adjacent structure.
机译:研究了在不同基础隔离系统上支撑的多层建筑物在与相邻结构碰撞时的地震反应。隔离的建筑物被建模为在每个楼层都具有横向自由度的剪力型结构。弹簧和减震器形式的冲击元件用于对相邻结构(即挡土墙或入口桥)建模。使用Newmark的逐步迭代方法,以增量形式导出并求解了孤立系统的耦合运动微分方程。计算了不同隔震系统在不同地震作用下对相邻结构的冲击过程中顶层绝对加速度和轴承位移的变化,以研究建筑物在冲击过程中的行为以及各种隔震系统的比较性能。在间隙大小,冲击元件刚度,上部结构柔性和基础隔震层数等重要系统参数的变化下,研究了隔震建筑的冲击响应。结论是,当与相邻结构发生碰撞时,基础隔离结构的响应会受到影响,因此需要避免。由于与相邻结构的碰撞,上层建筑的加速度增加,轴承的位移减小。但是,即使在发生冲击现象之后,与非隔离结构相比,隔离仍然有效。此外,还观察到上部结构的加速度随着隔离间隙的增加而增加到一定值,然后随着间隙的进一步增加而减小。对于具有柔性上部结构,层数增加和相邻结构的刚度较高的系统,冲击的影响被认为是严重的。

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