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Evaluation of buckling-restrained braced frame seismic performance considering reserve strength

机译:考虑储备强度的屈曲约束支撑框架抗震性能评估

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Buckling-restrained braced frame (BRBF) systems are used extensively for resisting lateral forces in high seismic regions of the United States. Numerical and large-scale experimental studies of BRBFs have shown predictable seismic performance with robust ductility and energy dissipation capacity. However, the low post-yield stiffness of buckling-restrained braces (BRBs) may cause BRBFs to exhibit large maximum and residual drifts and allow the formation of soft stories. Thus, reserve strength provided by other elements in the lateral-force-resisting system is critical to improving seismic performance of BRBFs. This reserve strength can be provided in two primary ways: (1) moment-resisting connections within the BRBF and (2) a steel special moment-resisting frame (SMRF) in parallel with the BRBF to create a dual system configuration. These two approaches to providing reserve strength can be used together or separately, leading to a variety of potential system configurations. In addition, special attention must be given to the connections within the BRBF since moment-resisting connections have been observed experimentally to limit drift capacity due to undesirable connection-related failure modes. This paper presents nonlinear dynamic analysis results and evaluates performance of BRBF and BRBF-SMRF systems using moment-resisting and non-moment-resisting beam-column connections within the BRBF. Reserve strength is shown to play a critical role in seismic behavior and performance of BRBFs.
机译:屈曲约束支撑框架(BRBF)系统广泛用于抵抗美国高地震地区的侧向力。 BRBF的数值和大规模实验研究表明,可预测的抗震性能具有良好的延展性和能量消散能力。但是,屈曲约束支架(BRB)的屈服后刚度低,可能导致BRBF出现较大的最大和残余漂移,并允许形成软层。因此,抗侧向力系统中其他元件提供的储备强度对于提高BRBF的抗震性能至关重要。可以通过两种主要方式提供这种储备强度:(1)BRBF内的抗力矩连接,以及(2)与BRBF并联的钢制特殊抗力矩框架(SMRF),以创建双系统配置。提供储备强度的这两种方法可以一起使用或分开使用,从而导致各种潜在的系统配置。另外,必须特别注意BRBF内的连接,因为在实验中已经观察到了抗力矩连接,以限制由于与连接相关的不期望的故障模式而引起的漂移能力。本文介绍了非线性动力学分析结果,并使用BRBF内的抗弯矩和无弯矩梁柱连接评估了BRBF和BRBF-SMRF系统的性能。储层强度在BRBF的地震行为和性能中起着至关重要的作用。

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