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Seismic behavior of composite steel/concrete MRFs: deformation assessment and behavior factors

机译:复合钢/混凝土MRF的抗震性能:变形评估和行为因素

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摘要

The seismic inelastic behavior of regular planar composite steel/concrete MRFs consisting of I steel beams and concrete filled steel tube (CFT) columns is investigated. For this purpose, a family of 96 regular plane CFT-MRFs are subject to an ensemble of 100 ordinary (far-field type) ground motions scaled to different intensities in order to accommodate different performance levels and their response to these motions is recorded to form a response databank. On the basis of this databank nonlinear regression analysis is employed in order to derive simple formulae which offer a direct estimation of seismic displacements, drift and ductility demands, and the strength reduction (or behavior) factor q, which describes the seismic strength requirements in order to restrict maximum roof ductility demand to a predefined value. The influence of specific parameters on the maximum structural response, such as the number of stories, the beam-to-column stiffness ratio, the column-to-beam strength ratio, the level of inelastic deformation induced by the seismic excitation and the material strengths, is studied in detail. Furthermore, emphasis is given to the ability of the proposed formulae to be employed in the framework of seismic design methods which utilize response spectrum analysis. This essential aspect makes possible both the simple and direct seismic assessment of existing structures and the straightforward deformation-controlled seismic design of new ones because the q factor is a function of deformation.
机译:研究了由工字钢梁和钢管混凝土柱组成的规则平面组合钢/混凝土MRF的抗震非弹性行为。为此,一个96个常规平面CFT-MRF系列要经受100个普通(远场类型)地面运动的集合,这些运动按比例缩放到不同的强度,以适应不同的性能水平,并记录它们对这些运动的响应,以形成响应数据库。在此数据库的基础上,使用非线性回归分析来得出简单的公式,这些公式可以直接估计地震位移,漂移和延性要求以及强度折减(或行为)因子q,从而按顺序描述了地震强度要求将最大的屋顶延展性需求限制在预定义的值。特定参数对最大结构响应的影响,例如层数,梁柱刚度比,柱梁刚度比,地震激发引起的非弹性变形水平和材料强度,进行了详细研究。此外,重点是拟议公式在利用响应谱分析的地震设计方法框架中使用的能力。由于q因子是变形的函数,因此这一基本方面使得既可以对现有结构进行简单,直接的地震评估,又可以对新结构进行直接的变形控制地震设计。

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