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Comparative Studies of Base Isolation Systems featured with Lead Rubber Bearings and Friction Pendulum Bearings

机译:铅橡胶轴承和摩擦摆轴承料的基础隔离系统的比较研究

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Due to the fact that safety is the major concern for civil structures in a seismic active zone, it has always been a challenge for structural engineers to protect structures from earthquake. During past several decades base isolation technique has become more and more popular in the field of seismic protection which can be adopted for new structures as well as the retrofit of existing structures. The objective of this study is to evaluate the behaviours of the building with different seismic isolation systems in terms of roof acceleration, elastic base shear and inter-storey drift under four benchmark earthquakes, namely, El Centro, Northridge, Hachinohe and Kobe earthquakes. Firstly, the design of base isolation systems, i.e. lead rubber bearing (LRB) and friction pendulum bearing (FPB) for five storey RC building was introduced in detail. The non-linear time history analysis was performed in order to determine the structural responses whereas Bouc-Wen Model of hysteresis was adopted for modelling the bilinear behaviour of the bearings. Both isolation systems increase the fundamental period of structures and reduces the spectral acceleration, and hence reduces the lateral force cause by earthquake in the structures, resulting in significant improvement in building performance; however the Lead Rubber Bearing provided the best reduction in elastic base shear and inter-storey drift (at first floor) for most of the benchmark earthquakes. For the adopted bearing characteristics, FPB provided the low isolator displacement.
机译:由于安全是地震活动区内部结构的主要关注点,因此结构工程师始终是保护地震的结构的挑战。在过去的几十年中,基础隔离技术在地震保护领域变得越来越受欢迎,这可以采用新的结构以及现有结构的改造。本研究的目的是在四个基准地震下,在屋顶加速,弹性基地剪切和层面漂移方面评估建筑物的行为,即el Centro,Nortro,Hachinohe和Kobe地震。首先,详细介绍了基本隔离系统的设计,即五层RC建筑的铅橡胶轴承(LRB)和摩擦摆轴承(FPB)。执行非线性时间历史分析,以便确定结构响应,而采用滞后模型用于建模轴承的双线性行为。两个隔离系统都会增加结构的基本周期并降低光谱加速度,因此通过结构中的地震降低了横向力原因,从而显着改善了建筑性性能;然而,铅橡胶轴承提供了大部分基准地震的弹性基础剪切和跨世界间漂移(一楼)的最佳减少。对于采用的轴承特性,FPB提供了低隔振器位移。

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