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Seismic performance evaluation of single damped-outrigger system incorporating buckling-restrained braces

机译:屈曲约束支撑的单阻尼支腿系统抗震性能评估

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The outrigger system is an effective means of controlling the seismic response of core-tube type tall buildings by mobilizing the axial stiffness of the perimeter columns. This study investigates the damped-outrigger, incorporating the buckling-restrained brace (BRB) as energy dissipation device (BRB-outrigger system). The building's seismic responses are expected to be effectively reduced because of the high BRB elastic stiffness during minor earthquakes and through the stable energy dissipation mechanism of the BRB during large earthquakes. The seismic behavior of the BRB-outrigger system was investigated by performing a spectral analysis considering the equivalent damping to incorporate the effects of BRB inelastic deformation. Nonlinear response history analyses were performed to verify the spectral analysis results. The analytical models with building heights of 64, 128, and 256m were utilized to investigate the optimal outrigger elevation and the relationships between the outrigger truss flexural stiffness, BRB axial stiffness, and perimeter column axial stiffness to achieve the minimum roof drift and acceleration responses. The method of determining the BRB yield deformation and its effect on overall seismic performance were also investigated. The study concludes with a design recommendation for the single BRB-outrigger system.
机译:支腿系统是通过调动周边柱的轴向刚度来控制核心管型高层建筑的地震响应的有效手段。本研究对阻尼支腿进行了研究,将屈曲约束撑杆(BRB)作为能量消散装置(BRB支腿系统)。由于小地震中BRB的高弹性刚度以及大地震中BRB的稳定能量耗散机制,预计建筑物的地震响应将得到有效降低。通过考虑等效阻尼并结合BRB非弹性变形的影响进行频谱分析,研究了BRB支腿系统的地震行为。进行了非线性响应历史分析,以验证光谱分析结果。利用建筑高度分别为64、128和256m的分析模型研究最佳支腿高度以及支腿桁架的抗弯刚度,BRB轴向刚度和周向柱轴向刚度之间的关系,以实现最小的屋顶漂移和加速度响应。还研究了确定BRB屈服变形的方法及其对整体地震性能的影响。该研究在结论时提出了针对单个BRB支腿系统的设计建议。

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