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Assessment of design parameters influencing seismic collapse performance of buckling-restrained braced frames

机译:影响屈曲约束支撑框架地震倒塌性能的设计参数评估

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Buckling Restrained Braced Frames (BRBFs) are widely used as seismic force-resisting systems due to their significant ductility and energy dissipation capacity. However, owing to their modest overstrength and relatively low post-yield stiffness, BRBFs subjected to seismic loading may be susceptible to concentrations of story drift and global instability triggered byP-∆ effects. Due to the use of simplistic methods that are based on elastic stability, current code-based design provisions do not address seismic stability rigorously and do not consider the unique inelastic characteristics of different systems. Supplemental strategies may be used to prevent undesirable seismic response of BRBFs, such as story drift concentration and large residual drift. This study employed the FEMA P695 framework to evaluate the response of BRBFs designed according to current codes in the United States and to study the effect on seismic stability of three additional parameters: BRBF column orientation, gravity column continuity, and dual systems. Results from nonlinear static and dynamic analyses provide insight into seismic behavior, and collapse performance evaluation quantifies the relative performance of various BRBF designs and supplemental strategies for enhancing seismic stability.
机译:屈曲约束支撑框架(BRBF)由于其显着的延展性和能量消散能力而被广泛用作抗地震力系统。但是,由于BRBF具有适度的超强度和较低的屈服后刚度,因此承受地震载荷的BRBF可能会受到P-∆效应触发的层间位移集中和整体不稳定性的影响。由于使用了基于弹性稳定性的简化方法,因此,当前基于规范的设计规定并未严格解决地震稳定性,并且未考虑不同系统的独特非弹性特征。可以使用补充策略来防止BRBF发生不良的地震响应,例如,楼层漂移集中和较大的残余漂移。这项研究使用FEMA P695框架评估了根据美国现行规范设计的BRBF的响应,并研究了三个附加参数对BRBF地震稳定性的影响:BRBF柱定向,重力柱连续性和双系统。非线性静态和动态分析的结果提供了对地震行为的洞察力,而坍塌性能评估则量化了各种BRBF设计的相对性能以及增强地震稳定性的补充策略。

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