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Inelastic seismic response of adjacent buildings linked by fluid dampers

机译:流体阻尼器连接的相邻建筑物的非弹性地震响应

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摘要

Using fluid dampers to connect adjacent buildings for enhancing their seismic resistant performance has been recently investigated but limited to linear elastic adjacent buildings only. This paper presents a study of inelastic seismic response of adjacent buildings linked by fluid dampers. A nonlinear finite element planar model using plastic beam element is first constructed to simulate two steel frames connected by fluid dampers. Computed linear elastic seismic responses of the two steel frames with and without fluid dampers under moderate seismic events are then compared with the experimental results obtained from shaking table tests. Finally, elastic-plastic seismic responses of the two steel frames with and without fluid dampers are extensively computed, and the fluid damper performance on controlling inelastic seismic response of the two steel frames is assessed. The effects of the fundamental frequency ratio and structural damping ratio of the two steel frames on the damper performance are also examined. The results show that not only in linear elastic stage but also in inelastic stage, the seismic resistant performance of the two steel frames of different fundamental frequencies can be significantly enhanced if they are properly linked by fluid dampers of appropriate parameters.
机译:最近已经研究了使用流体阻尼器连接相邻建筑物以增强其抗震性能,但仅限于线性弹性相邻建筑物。本文介绍了由流体阻尼器连接的相邻建筑物的非弹性地震响应。首先构建使用塑料梁单元的非线性有限元平面模型,以模拟通过流体阻尼器连接的两个钢框架。然后将在有和没有流体阻尼器的情况下,两种钢框架在中等地震事件下的计算线性弹性地震响应与从振动台试验获得的实验结果进行比较。最后,广泛地计算了带有和不带有流体阻尼器的两个钢框架的弹塑性地震响应,并评估了流体阻尼器在控制两个钢框架的非弹性地震响应方面的性能。还研究了两个钢框架的基频比和结构阻尼比对阻尼器性能的影响。结果表明,通过适当参数的减振器正确连接,不仅在线性弹性阶段而且在非弹性阶段,两个基本频率不同的钢框架的抗震性能都可以得到显着提高。

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