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IMPACT OF INTRODUCING SEMI-RIGID MOMENT FRAMES ON SEISMIC RESPONSE OF BRACED FRAMES

机译:引入半刚性时刻框架对支撑框架抗震反应的影响

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Maximum seismic inelastic drift demand in a steel building with braced frames as primary seismic-force-resisting (SFR) system tends to concentrate in few stories without considering inherent participation of designed gravity-force-resisting (GFR) system in actual structural stiffness and strength. The influence of GFR system on stiffness and strength can be taken into account by considering the composite action in beam-to-column shear connections that exist in modern steel building construction to form actual semi-rigid moment-resisting frames. Therefore, modeling semi-rigid moment frames as an equivalent to the GFR system in braced frame buildings could be utilized as a representative to the strength provided by gravity frames. This paper presents a seismic evaluation of a six-story chevron braced frame, with and without semi-rigid moment frame. Four different cases are investigated under a set of ground motions and results are discussed in terms of story drift distribution along the height. The results pointed out that the current findings lay a foundation to conduct further investigation on the seismic performance of braced frames as designed SFR system together with GFR system.
机译:具有支撑框架的钢结构中的最大地震无弹性漂移需求作为初级地震力抵抗(SFR)系统的倾向于集中在少数故事中,而不考虑设计的重力抵抗(GFR)系统在实际结构刚度和强度的固有参与。通过在现代钢制建筑结构中存在的光束剪切连接中的复合动作,可以考虑GFR系统对刚度和强度的影响,以形成实际的半刚性抵抗框架。因此,建模半刚性时刻框架作为支撑框架建筑物中的GFR系统等同物可以用作由重力框架提供的强度的代表性。本文提出了六层雪佛龙支架框架的地震评价,有和没有半刚性时刻框架。在一组地面动作下调查了四种不同的病例,并在沿着高度的故事漂移分布方面讨论了结果。结果指出,目前的调查结果奠定了基础,以进一步调查与GFR系统一起设计的SFR系统的支撑帧的地震性能。

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