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A combined control strategy using tuned liquid dampers to reduce displacement demands of base-isolated structures: a probabilistic approach

机译:使用调谐液体阻尼器的组合控制策略,以减少基础隔震结构的位移需求:一种概率方法

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This paper investigates a hybrid structural control system using tuned liquid dampers (TLDs) and lead-rubber bearing (LRB) systems for mitigating earthquake-induced vibrations. Furthermore, a new approach for taking into account the uncertainties associated with the steel shear buildings is proposed. In the proposed approach, the probabilistic distributions of the stiffness and yield properties of stories of a set of reference steel moment frame structures are derived through Monte-Carlo sampling. The approach is applied to steel shear buildings isolated with LRB systems. The base isolation systems are designed for different target base displacements by minimizing a relative performance index using Genetic Algorithm. Thereafter, the base-isolated structures are equipped with TLDs and a combination of the base and TLD properties is sought by which the maximum reduction occurs in the base displacement without compromising the performance of the system. In addition, the effects of TLD properties on the performance of the system are studied through a parametric study. Based on the analyses results, the base displacement can be reduced 23% by average, however, the maximum reduction can go beyond 30%.
机译:本文研究了一种使用调谐液体阻尼器(TLD)和铅橡胶轴承(LRB)系统的混合结构控制系统,以减轻地震引起的振动。此外,提出了一种考虑钢剪力建筑物相关不确定性的新方法。在提出的方法中,通过蒙特卡洛采样推导了一组参考钢矩框架结构的层的刚度和屈服特性的概率分布。该方法适用于采用LRB系统隔离的钢剪建筑。通过使用遗传算法最小化相对性能指标,将基础隔离系统设计用于不同的目标基础位移。此后,为基础隔离的结构配备了TLD,并寻求基础和TLD属性的组合,从而在不损害系统性能的情况下最大程度地减少了基础位移。此外,还通过参数研究研究了TLD属性对系统性能的影响。根据分析结果,基本位移可以平均减少23%,但是最大减少可以超过30%。

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