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Earthquake Excited Base-Isolated Structures Protected by Tuned Liquid Column Dampers: Design Approach and Experimental Verification

机译:调谐液柱阻尼器保护的地震激励基础隔震结构:设计方法和实验验证

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摘要

In this contribution a direct approach for optimal design of a Tuned Liquid Column Damper (TLCD) device attached to the base slab of a base-isolated structure is presented, aiming at reducing the seismic displacement demand of the base-isolation subsystem. Assuming white noise base excitation, for a wide parameter range a direct optimization procedure yields design charts for optimal TLCD quantities. The performance of the base-isolated structure equipped with optimally tuned TLCD device in comparison to the simple base-isolated one is evaluated both numerically and experimentally. In a numerical study the system is subjected to the 44 records of the FEMA P-695 far-field ground motion set. The experimental studies are conducted on a three-story small-scale base-isolated shear frame model. From the results it can be concluded that a TLCD effectively controls the seismic response of earthquake excited low-damped base-isolated structures.
机译:在此贡献中,提出了一种直接优化方法的优化设计,该方法用于优化安装在基础隔离结构基础板上的调谐液柱阻尼器(TLCD)装置,旨在减少基础隔离子系统的地震位移需求。假设存在基于白噪声的激励,则对于较宽的参数范围,直接的优化过程可得出最佳TLCD数量的设计图。与简单的基础隔离结构相比,通过数值评估和实验评估了配备有最佳调谐TLCD器件的基础隔离结构的性能。在数值研究中,系统接受了FEMA P-695远场地面运动集的44条记录。实验研究是在三层小规模基础隔离剪力框架模型上进行的。从结果可以得出结论,TLCD有效地控制了地震激发的低阻尼基础隔震结构的地震响应。

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