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DISPLACEMENT-BASED SEISMIC DESIGN METHOD OF STEEL MOMENT RESISTING FRAME

机译:基于位移的钢力矩抗框架地震设计方法

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In contrast to the traditional method of force-based seismic design, the newly developed displacement-based seismic design will more easily fulfill the requirement of performance-based seismic design. According to lots of documents previously studied, a seismic design method is put forward based on displacement for steel moment resisting frame. This method is established in condition that the yield displacement of steel frame can be determined by its geometrical dimension; then the objective displacement (ultimate displacement) can be determined in light of performance level of the structure, and the corresponding coefficient of ductility can be obtained. Thereafter, the design base shear of steel frame structure can be calculated by the use of reduced elastic spectrum. Thus, the design of stiffness and capacity can be conducted on steel frame structure. The analysis of case study indicates that the displacement-based seismic design method addressed herein is of reasonable safety and reliability, and of operational convenience, which can still realize the seismic design of steel frame structure at different performance levels.
机译:与传统的基于力的地震设计方法相比,新开发的基于位移的地震设计将更容易满足基于性能的地震设计的要求。根据先前研究的许多文件,基于钢力矩抵抗框架的位移提出了一种地震设计方法。在条件下建立该方​​法,即钢框架的产量位移可以通过其几何尺寸确定;然后,可以根据结构的性能水平确定目标位移(终极位移),并且可以获得相应的延展系数。此后,可以通过使用降低的弹性光谱来计算钢框架结构的设计底剪切。因此,可以在钢框架结构上进行刚度和容量的设计。案例研究的分析表明,本文寻址的基于位移的地震设计方法具有合理的安全性和可靠性,以及操作方便,这仍然可以实现不同性能水平的钢框架结构的地震设计。

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