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Shake table real-time hybrid simulation techniques for the performance evaluation of buildings with inter-story isolation

机译:振动台实时混合仿真技术,用于层间隔震建筑物的性能评估

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摘要

Interstory isolation systems have recently gained popularity as an alternative for seismic protection, especially in densely populated areas. In inter-story isolation, the isolation system is incorporated between stories instead of the base of the structure. Installing inter-story isolation is simple, inexpensive, and disruption free in retrofit applications. Benefits include nominally independent structural systems where the accelerations of the added floors are reduced when compared to a conventional structural system. Furthermore, the base shear demand on the total structure is not significantly increased. Practical applications of inter-story isolation have appeared in the United States, Japan, and China, and likewise new design validation techniques are needed to parallel growing interest. Real-time hybrid simulation (RTHS) offers an alternative to investigate the performance of buildings with inter-story isolation. Shake tables, standard equipment in many laboratories, are capable of providing the interface boundary conditions necessary for this application of RTHS. The substructure below the isolation layer can be simulated numerically while the superstructure above the isolation layer can be tested experimentally. This configuration provides a high-fidelity representation of the nonlinearities in the isolation layer, including any supplemental damping devices. This research investigates the seismic performance of a 14-story building with inter-story isolation. A model-based acceleration-tracking approach is adopted to control the shake table, exhibiting good offline and online acceleration tracking performance. The proposed methods demonstrate that RTHS is an accurate and reliable means to investigate buildings with inter-story isolation, including new configurations and supplemental control approaches.
机译:层间隔离系统最近作为防震保护的替代方法而受到欢迎,特别是在人口稠密地区。在楼层间隔离中,隔离系统被合并在楼层之间,而不是结构的基础。在升级应用程序中,安装层间隔离非常简单,便宜,并且不受干扰。好处包括名义上独立的结构系统,与常规结构系统相比,添加地板的加速度降低了。此外,对整个结构的基础剪力需求没有显着增加。层间隔离的实际应用已出现在美国,日本和中国,同样需要新的设计验证技术来满足日益增长的兴趣。实时混合仿真(RTHS)提供了一种替代方法,可研究具有层间隔离的建筑物的性能。摇床是许多实验室的标准设备,能够为RTHS的应用提供必要的界面边界条件。隔离层下方的下部结构可以进行数值模拟,而隔离层上方的上部结构可以通过实验进行测试。此配置提供了隔离层中非线性的高保真表示,包括任何辅助阻尼设备。这项研究调查了一座14层高的,具有层间隔离的建筑物的抗震性能。采用基于模型的加速度跟踪方法控制振动台,具有良好的离线和在线加速度跟踪性能。所提出的方法表明,RTHS是调查具有层间隔离的建筑物(包括新配置和补充控制方法)的准确可靠的方法。

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