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Estimation of Cyclic Interstory Drift Capacity of Steel Framed Structures and Future Applications for Seismic Design

机译:钢框架结构循环壁垒漂移能力的估算与地震设计的未来应用

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Several studies have been devoted to calibrate damage indices for steel and reinforced concrete members with the purpose of overcoming some of the shortcomings of the parameters currently used during seismic design. Nevertheless, there is a challenge to study and calibrate the use of such indices for the practical structural evaluation of complex structures. In this paper, an energy-based damage model for multidegree-of-freedom (MDOF) steel framed structures that accounts explicitly for the effects of cumulative plastic deformation demands is used to estimate the cyclic drift capacity of steel structures. To achieve this, seismic hazard curves are used to discuss the limitations of the maximum interstory drift demand as a performance parameter to achieve adequate damage control. Then the concept of cyclic drift capacity, which incorporates information of the influence of cumulative plastic deformation demands, is introduced as an alternative for future applications of seismic design of structures subjected to long duration ground motions.
机译:已经致力于校准钢铁和钢筋混凝土构件的损坏指数的几项研究,目的是克服目前在地震设计期间使用的参数的一些缺点。尽管如此,研究和校准使用这些指标进行挑战,以实现复杂结构的实际结构评价。本文采用了一种基于能量的损伤模型,用于多人自由度(MDOF)钢框架结构,该结构明确地用于累积塑性变形要求的影响,用于估计钢结构的循环漂移能力。为实现这一目标,地震危险曲线用于讨论最大境地漂移需求的局限性作为实现足够损坏控制的性能参数。然后,循环漂移容量的概念包括累积塑性变形需求的影响的信息,作为未来持续时间运动的结构的抗震设计的未来应用的替代方案。

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