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Earthquake-resistant design of buckling-restrained braced RC moment frames using performance-based plastic design method

机译:基于性能的塑性设计方法设计屈曲约束RC弯矩框架的抗震设计

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摘要

In this study, a performance-based plastic design (PBPD) method for dual system of buckling-restrained braced reinforced concrete moment-resisting frames (RC-BRBFs) is developed. Trilinear force-deformation relationship of the dual RC-BRBF system was approximated as the bilinear capacity curve to derive the yield displacement. The design base shear was determined based on the energy balance equation which accounted for the energy dissipation capacity quantified by Large Takeda model. Plastic design procedure were presented to derive the section internal forces. The proposed methodology was verified through a 5- and 10-story RC frame structures with chevron-configured BRBs. Numerical model was established and validated to assess the seismic performance through nonlinear static pushover analysis and time history analyses using FEMA P695 recommended ground motions. The analytical results show both RC-BRBFs can achieve the intended performance levels in terms of capacity curves, yield mechanism, story drift ratio distribution, residual drift, maximum ductility and cumulative ductility demands. Furthermore, the developed design procedure can be easily extended to other BRB configurated dual structural systems to achieve the desired seismic performance. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项研究中,开发了一种基于性能的塑性设计(PBPD)方法,用于双曲屈曲约束钢筋混凝土抗弯框架(RC-BRBFs)。将双RC-BRBF系统的三线性力-变形关系近似为双线性能力曲线,以得出屈服位移。基于能量平衡方程确定设计基础剪力,该方程考虑了大武田模型量化的能量耗散能力。提出了塑性设计程序以得出截面内力。通过具有人字形配置的BRB的5层和10层RC框架结构验证了所提出的方法。建立了数值模型,并通过非线性静态推覆分析和时程分析(使用FEMA P695建议的地面运动)评估了地震性能。分析结果表明,两种RC-BRBF都能在容量曲线,屈服机理,层间漂移比分布,残余漂移,最大延性和累积延性要求方面达到预期的性能水平。此外,开发的设计程序可以轻松扩展到其他BRB配置的双重结构系统,以实现所需的抗震性能。 (C)2015 Elsevier Ltd.保留所有权利。

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