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Rigid body response of base-isolated structures

机译:碱基隔离结构的刚体响应

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The superstructure of a base-isolated building is relatively rigid compared with the isolation system. This can lead to idealization of the superstructure as a rigid body, modelling the base-isolated structure as a single-degree-of-freedom system. Such analysis significantly reduces the computational efforts required to design the base-isolated structure under seismic loading. In this study, a comparison is made of the seismic response of a multi-storey base-isolated building by idealizing the superstructure as rigid and flexible. Various isolation systems considered include elastomeric bearings (with and without lead cores) as well as sliding systems. The governing equations of motion of the isolated structural system are derived and the response of the system is obtained for a specified time-history of earthquake ground motion. The top floor acceleration and bearing displacement of the system are plotted for different system parameters and compared with the corresponding response under rigid superstructure conditions to study the influence of superstructure flexibility. The comparison of the response is made under various isolation system parameters (i.e. isolation period, damping, yield strength of the elastomeric bearings and friction coefficient of sliding systems). It is observed that the bearing displacement can be accurately obtained by modelling the superstructure as a rigid body in a base-isolated structure. Further, such approximation is also justified for floor accelerations of a relatively stiff superstructure isolated by elastomeric bearings. However, the rigid superstructure approach significantly under estimates the floor accelerations for the structure isolated by sliding systems. Copyright © 2002 John Wiley & Sons, Ltd.
机译:与隔离系统相比,基础隔离建筑物的上部结构相对较硬。这可以导致将上部结构理想化为刚体,将基础隔离结构建模为单自由度系统。这样的分析显着减少了地震荷载下设计基础隔震结构所需的计算量。在这项研究中,通过将上部结构理想化为刚性和柔性,对多层基础隔震建筑的地震响应进行了比较。考虑的各种隔离系统包括弹性轴承(带和不带铅芯)以及滑动系统。推导了隔震结构系统的运动控制方程,并针对指定的地震地震动时程获得了系统的响应。针对不同的系统参数绘制了系统的顶层加速度和轴承位移,并将其与刚性上部结构条件下的相应响应进行比较,以研究上部结构柔性的影响。在各种隔离系统参数下(即隔离时间,阻尼,弹性轴承的屈服强度和滑动系统的摩擦系数)对响应进行比较。可以看出,通过将上部结构建模为基础隔离结构中的刚体,可以准确地获得轴承位移。此外,对于由弹性体轴承隔离的相对刚性的上部结构的地板加速度,这种近似也是合理的。但是,刚性上部结构方法在很大程度上估计了由滑动系统隔离的结构的地板加速度。版权所有©2002 John Wiley&Sons,Ltd.

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