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On the seismic response and damping capacity of low-rise plane steel frames with seesaw system

机译:带有跷跷板系统的低层平面钢框架的地震响应和阻尼能力

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This paper summarizes estimated seismic response results from nonlinear inelastic seismic analyses of low-rise plane steel frames equipped with a seesaw system in which linear viscous dampers have been applied. More specifically, considering for each frame three different configurations of the seesaw system and two different orientations of columns, seismic response results involving height wise distributions for peak interstorey drift ratios (IDR), peak residual interstorey drift ratios (RIDR) and peak floor accelerations (PFA) have been obtained. Moreover, peak seismic demands in columns and in the steel plates of the seesaw are found. Results in terms of modal damping ratios are also provided for all frames and seesaw configurations examined. From the results presented, it can be concluded that the seesaw system provides a very attractive solution for typical low-rise steel frames offering significant damping capacity and reduction of their seismic response.
机译:本文总结了对装有跷跷板系统的低层平面钢框架的非线性非弹性地震分析的估计地震响应结果,在该框架中应用了线性粘性阻尼器。更具体地说,考虑到每个框架的三种不同的跷跷板系统配置和两种不同的立柱方向,地震响应结果包括峰高层间漂移率(IDR),峰间剩余层间漂移率(RIDR)和峰底加速度的高度方向分布( PFA)。此外,在跷跷板的柱子和钢板中发现了峰值地震需求。还针对所有框架和跷跷板配置提供了模态阻尼比方面的结果。从给出的结果可以得出结论,跷跷板系统为典型的低层钢框架提供了非常有吸引力的解决方案,该框架具有显着的阻尼能力并降低了其地震响应。

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