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Estimation of seismic inelastic deformation demands in plane steel MRF with vertical mass irregularities

机译:具有垂直质量不规则性的平面MRF的地震非弹性变形需求估计

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摘要

An extensive parametric study on the inelastic seismic response of plane steel moment-resisting frames with vertical mass irregularity is presented. A family of 135 such frames, designed according to the European seismic and structural codes, are subjected to an ensemble of 30 ordinarily (I.e., without near-fault effects) earthquake ground motions scaled to different intensities in order to drive the structures to different limit states. The statistical analysis of the created response databank indicates that the number of storeys, beam-to-column strength ratio and the location (top, midheight and bottom) of the heavier mass influence the heightwise distribution and amplitude of inelastic deformation demands, while the response does not seem to be influenced by the mass ratio. Nonlinear regression analysis is employed in order to derive simple formulae which reflect the aforementioned influences and offer, for a given strength reduction (or behavior) factor, three important response quantities, I.e., the maximum roof displacement, the maximum interstorey drift ratio and the maximum rotation ductility along the height of the structure.
机译:提出了一种具有垂直质量不规则性的抗弯钢框架的非弹性地震响应的广泛参数研究。根据欧洲地震和结构规范设计的135个此类框架系列,通常要进行30次整体地震(即没有近断层效应)的地震地面运动,并将其缩放到不同的强度,以将结构推向不同的极限状态。对已创建的响应数据库的统计分析表明,层数,梁柱强度比以及较重质量的位置(顶部,中部和底部)会影响非弹性变形需求的高度分布和幅度,而响应似乎不受质量比的影响。为了得出反映上述影响的简单公式,并采用非线性回归分析,对于给定的强度降低(或性能)因子,提供了三个重要的响应量,即最大屋顶位移,最大层间漂移率和最大沿结构高度的旋转延展性。

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