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Collapse analysis of high-rise steel moment frames incorporating deterioration effects of column axial force - bending moment interaction

机译:考虑柱轴向力与弯矩相互作用的劣化效应的高层钢弯矩框架倒塌分析

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Existing high-rise steel moment resisting frames (SMRF) in Japan sustained severe damage under the background of Tohoku earthquake and face collapse risks if great ocean ridge earthquakes occur in the near future. This paper presents a numerical study on collapse analysis of existing high-rise SMRFs under long period ground motions over the design levels. A finite element model based on fiber discretized layers was employed to incorporate the deterioration effects in bending strength of beams and axial force bending moment (N-M) interaction of columns. Parameters for the numerical model were validated by a series of component tests, and a shaking table test on a high-rise SMRF substructure. Simulation results shown reasonable accuracy for predicting the low-cycle fatigue of steel beams, post-local budding of steel columns and side-sway collapse mode of high-rise SMRFs. Then, parametric analyses were conducted to evaluate the dominant factors controlling the collapse capacity of high-rise SMRFs with various story and degradation levels. It indicated that a beam-to-column strength deterioration factor (SDF) plays an important role on collapse behavior characterized by asymmetric sway deformation concentrated at lower stories. Finally, design recommendation in terms of critical buckling strength of columns is proposed to define the collapse capacity of critical columns in high-rise SMRFs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在东北地震的背景下,日本现有的高层钢制抗弯框架(SMRF)遭受了严重破坏,如果在不久的将来发生大洋脊地震,将面临坍塌的风险。本文对现有高层SMRF在设计水平上进行长期地面运动时的倒塌分析进行了数值研究。基于纤维离散层的有限元模型被用来结合梁的抗弯强度和柱的轴向力弯矩(N-M)相互作用的劣化效应。数值模型的参数通过一系列组件测试和高层SMRF子结构的振动台测试进行了验证。仿真结果表明,该模型在预测钢梁的低周疲劳,钢柱的局部局部萌芽以及高层SMRF的侧向倒塌模式方面具有合理的准确性。然后,进行参数分析,以评估控制不同层级和退化水平的高层SMRF坍塌能力的主导因素。这表明,梁柱强度退化因子(SDF)在以非对称摇摆变形集中在较低层为特征的倒塌行为中起着重要作用。最后,提出了关于柱的临界屈曲强度的设计建议,以定义高层SMRF中临界柱的塌陷能力。 (C)2016 Elsevier Ltd.保留所有权利。

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