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Seismic performance of outrigger–belt truss system considering soil–structure interaction

机译:考虑土-结构相互作用的支腿-桁架桁架系统的抗震性能

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The focus of this study is to investigate the seismic behavior of outrigger-braced building considering the soil–structure interaction based on finding the best location of outrigger and belt truss system. For this purpose, a central outrigger-braced frame of a steel tall building is considered. A layered soil deposit underlied this frame and the resulting soil–structure system is subjected to seismic excitation. To analyze this system, direct method is employed in OpenSees. Also, elastic and in-elastic analyses are both considered and a comparison is made between current results and the results related to the system with fixed base. The best location of outrigger–belt truss system is determined by considering the maximum roof displacement, base moment and base shear with and without soil–structure interaction. It is shown that considering SSI affects the location of outrigger–belt truss system. Elastic analysis of both systems, namely with fixed base and with soil–structure interaction, showed that locating the belt truss at higher stories caused lower amounts of roof displacement.
机译:这项研究的重点是在找到支腿和皮带桁架系统的最佳位置的基础上,考虑土壤与结构的相互作用,研究支腿支撑建筑物的抗震性能。为此,考虑了一个钢制高层建筑的中央支腿支撑框架。在该框架之下有一层分层的土壤沉积物,由此产生的土壤结构系统受到地震激发。为了分析该系统,OpenSees中采用了直接方法。此外,还考虑了弹性和弹性分析,并且将当前结果与与具有固定基数的系统相关的结果进行比较。悬臂-皮带桁架系统的最佳位置是在考虑和不考虑土壤-结构相互作用的情况下,通过考虑最大的屋顶位移,基础弯矩和基础剪力来确定的。结果表明,考虑SSI会影响支腿-皮带桁架系统的位置。对这两个系统的弹性分析,即具有固定基础和土与结构的相互作用,表明将带桁架放置在较高的楼层会导致较少的屋顶位移。

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