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Sensitivity-based study of the influence of brace over-strength distributions on the seismic response of steel frames with BRBs

机译:基于灵敏度的支撑超强度分布对带有BRB的钢框架地震响应的影响的研究

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Steel frames with buckling-restrained braces (BRBs) have low lateral post-elastic stiffness, especially in the case of non-moment resisting beam-to-column connections, due to the brace limited post-yield stiff ness. Thus, a tendency to soft storey formation, fostered by nonhomogeneous distributions of brace over-strength, might be observed during seismic events. The objective of this paper is to study the effects of brace over-strength distributions on the expected maximum reduction of seismic performance, as mea sured by local and global engineering demand parameters (EDPs). This goal is pursued using response sensitivity analysis and solving a constrained extreme problem. The general framework of the proposed sensitivity-based approach is presented and its application to steel frames with BRBs is described in detail. Realistic case studies are considered, taking as reference solution the design based on the modal response spectrum method. Interstorey drifts are used as global EDPs related to the damage of nonstruc-tural elements, while maximum plastic strains and cumulative plastic strains of the braces are considered as local EDPs to monitor the damage of braces. The brace over-strength patterns that are the most unfa vourable for each EDP are identified and the relevant maximum increment of each EDP with respect to the reference design solution is determined, obtaining a relation between the maximum seismic perfor mance reduction and the brace over-strength used in the design. In this way, the proposed approach can be used as a tool for safer and more effective seismic designs of steel frames with BRBs.
机译:带有屈曲约束支撑(BRB)的钢制框架具有较低的横向后弹性刚度,尤其是在无抗弯梁至柱连接的情况下,这是因为支撑有限的屈服后刚度。因此,在地震事件中可能会观察到由于支架超强度的不均匀分布而引起的软层形成趋势。本文的目的是研究支杆超强度分布对预期抗震性能最大降低的影响,这是通过本地和全球工程需求参数(EDP)来确定的。通过使用响应灵敏度分析并解决受约束的极端问题,可以实现该目标。提出了基于灵敏度的方法的总体框架,并详细描述了其在带有BRB的钢框架中的应用。考虑了现实的案例研究,将基于模态响应谱法的设计作为参考解决方案。层间漂移被用作与非结构性构件的损坏相关的整体EDP,而牙套的最大塑性应变和累积塑性应变被视为局部EDP,以监测牙套的损伤。确定每个EDP最不可用的支架超强度模式,并确定每个EDP相对于参考设计解决方案的相关最大增量,从而获得最大抗震性能降低与支架超载之间的关系。设计中使用的强度。这样,所提出的方法可以用作带有BRB的钢框架的更安全,更有效的抗震设计的工具。

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