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Comparison of the seismic performance of a partial mass isolation technique with conventional TMD and base-isolation systems under broad-band and narrow-band excitations

机译:在宽带和窄带激励下,部分质量隔离技术与传统TMD和基础隔离系统的抗震性能比较

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摘要

In the present study a partial mass isolation (PMI) technique is proposed. This approach, through isolating different portions of masses at different stories, can provide a building with multiple inherent vibration suppressors without the need to add extra masses. Optimization of the PMI system's parameters is conducted for reference structural models with 6, 12, and 20 stories to minimize root-mean-square inter-story drift responses under Kanai-Tajimi filtered Gaussian white noise excitations, while parameter constraints are specified to control isolated components' (ICs) responses. The seismic performance of the PMI technique under excitations with different frequency contents (representing different soil profiles) is compared to that of conventional tuned mass damper (TMD) and base-isolation (BI) systems as baseline configurations. Simulation results indicate that the PMI system with extreme isolated mass ratios of 5% or 90% exhibits dynamic behaviors equivalent to those of an equivalent TMD or an ideal BI systems, respectively. Meanwhile, this technique can resolve some of the inherent difficulties associated with the implementation of TMD (e.g., weight restriction) and BI (e.g., problems due to the superstructure flexibility, overturning moments, and heavy loads) in high-rise buildings.
机译:在本研究中,提出了部分质量隔离(PMI)技术。这种方法通过隔离不同楼层的质量的不同部分,可以为建筑物提供多个固有的振动抑制器,而无需增加额外的质量。针对具有6、12和20层的参考结构模型,对PMI系统的参数进行了优化,以最小化Kanai-Tajimi滤波的高斯白噪声激励下的均方根层间漂移响应,同时指定了参数约束来控制隔离组件的响应。将PMI技术在具有不同频率含量(代表不同土壤剖面)的激励下的抗震性能与作为基线配置的传统调谐质量阻尼器(TMD)和基础隔离(BI)系统的抗震性能进行了比较。仿真结果表明,极端隔离质量比为5%或90%的PMI系统分别具有与等效TMD或理想BI系统相同的动态行为。同时,该技术可以解决高层建筑中与实施TMD(例如,重量限制)和BI(例如,由于上部结构的柔性,倾覆力矩和重载引起的问题)相关的一些固有困难。

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