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Seismic performance of a resilient low-damage base isolation system under combined vertical and horizontal excitations

机译:竖向和水平组合激励下低破坏性弹性隔震体系的抗震性能

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Traditional base isolation systems focus on isolating the seismic response of a structure in the horizontal direction. However, in regions where the vertical earthquake excitation is significant (such as near-fault region), a traditional base-isolated building exhibits a significant vertical vibration. To eliminate this shortcoming, a rocking-isolated system named Telescopic Column (TC) is proposed in this paper. Detailed rocking and isolation mechanism of the TC system is presented. The seismic performance of the TC is compared with the traditional elastomeric bearing (EB) and friction pendulum (FP) base-isolated systems. A 4-storey reinforced concrete moment-resisting frame (RC-MRF) is selected as the reference superstructure. The seismic response of the reference superstructure in terms of column axial forces, base shears, floor accelerations, inter-storey drift ratios (IDR) and collapse margin ratios (CMRs) are evaluated using OpenSees. The results of the nonlinear dynamic analysis subjected to multi-directional earthquake excitations show that the superstructure equipped with the newly proposed TC is more resilient and exhibits a superior response with higher margin of safety against collapse when compared with the same superstructure with the traditional base-isolation (BI) system.
机译:传统的基础隔震系统集中于隔离结构在水平方向上的地震响应。但是,在垂直地震激发很大的区域(如临近断层区域),传统的基础隔震建筑会表现出明显的垂直振动。为了消除这一缺点,本文提出了一种称为“伸缩柱”(TC)的摇摆隔离系统。给出了TC系统的详细摇摆和隔离机制。 TC的抗震性能与传统的弹性轴承(EB)和摩擦摆(FP)基础隔离系统进行了比较。选择4层钢筋混凝土抗弯框架(RC-MRF)作为参考上部结构。使用OpenSees评估参考上部结构在柱轴向力,基础剪力,底板加速度,层间漂移比(IDR)和塌陷裕度比(CMR)方面的地震响应。经过多向地震激励的非线性动力分析结果表明,与传统基础结构相同的上部结构相比,配备有新提出的TC的上部结构具有更大的弹性,并具有出色的响应性和较高的抗倒塌安全性。隔离(BI)系统。

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