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Effect of a Near Fault on the Seismic Response of a Base-Isolated Structure with a Soft Storey

机译:近断层对柔软楼层底座结构抗震反应的影响

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摘要

This study focuses on the soft-storey behavior of RC structures with lead core rubber bearing (LRB) isolation systems under near and far-fault motions. Under near-fault ground motions, seismic isolation devices might perform poorly because of large isolator displacements caused by large velocity and displacement pulses associated with such strong motions. In this study, four different structural models have been designed to study the effect of soft-storey behavior under near-fault and far-fault motions. The seismic analysis for isolated reinforced concrete buildings is carried out using a nonlinear time history analysis method. Inter-story drifts, absolute acceleration, displacement, base shear forces, hysteretic loops and the distribution of plastic hinges are examined as a result of the analysis. These results show that the performance of a base isolated RC structure is more affected by increasing the height of a story under nearfault motion than under far-fault motion.
机译:本研究专注于RC结构与近端和远端故障运动下的铅芯橡胶轴承(LRB)隔离系统的软层面行为。在近断层地面运动下,由于大型速度和位移脉冲引起的大型隔离位移,地震隔离装置可能表现不佳,而具有与这种强烈的运动相关的大速度和位移脉冲。在这项研究中,旨在研究四种不同的结构模型,研究了近端故障和远端故障运动下的软层面行为的影响。使用非线性时间历史分析方法进行隔离钢筋混凝土建筑物的地震分析。由于分析,检查了故事阶段,绝对加速,位移,基部剪切力,滞回环和塑料铰链的分布。这些结果表明,通过增加在远端运动下的故事的高度而不是在远端故障运动下,碱基隔离的RC结构的性能更为影响。

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