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Influence of Pulse-Like Near-Fault Ground Motions on the Base-Isolated Buildings with LRB Devices

机译:用LRB器件对底座隔离建筑物脉冲样近断层地运动的影响

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摘要

Seismic base isolation is a passive structural control system that has been effectively utilized as an innovative seismic-resistant design method in the past decades. The properties of earthquake ground motions have significant effects on the response of the base isolation system. Many recent studies were dedicated to the influence of near-fault ground motions on the response of seis-mically isolated buildings. These previous studies concluded that near-fault ground motions mostly impose larger displacement on the seismic isolators and, in some cases, larger floor acceleration; furthermore, the velocity pulse period influences the seismic isolator displacement and the floor acceleration. Most of the previous studies were conducted using ground motions simulated with certain parametric conditions of near-fault ground motions and/or a limited number of real earthquake ground motions. This study intended to examine the conclusions of previous studies through response history analysis of a seismically isolated prototype building with lead-rubber bearing (LRB) isolators using a large number of real near-fault earthquake ground accelerations. It was found that no consistent resonance phenomenon can be observed when the velocity pulse period is close to the natural period of the isolated building in terms of floor acceleration and isolator displacement, in contrast to the findings of other studies.
机译:地震底座隔离是一种被动结构控制系统,在过去几十年中有效地用作创新的地震抗性设计方法。地震地面运动的性质对基础隔离系统的响应具有显着影响。最近的许多研究致力于近乎故障地面运动对Seis-Micy孤立的建筑物的反应的影响。这些以前的研究得出结论,近断层地运动主要在地震隔离器上施加更大的位移,并且在某些情况下,较大的楼层加速;此外,速度脉冲周期影响地震隔离器位移和地板加速度。以前的大部分研究是使用与近故障接地运动的某些参数条件模拟的地面运动进行,并且/或有限数量的真实地震地面运动。本研究旨在通过使用大量实际近端地震地面加速度的铅橡胶轴承(LRB)隔离器的地震隔离原型建筑物的响应历史分析来研究先前研究的结论。结果发现,当速度脉冲周期接近楼层加速度和隔离器位移时,当速度脉冲周期接近于隔离建筑物的自然时期,与其他研究的结果相比,当速度脉冲周期接近于隔离建筑物的自然时期时,可以观察到一致的共振现象。

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