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首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >An Analytical Approach for the Flexural Robustness of Seismically Designed RC Building Frames Against Progressive Collapse
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An Analytical Approach for the Flexural Robustness of Seismically Designed RC Building Frames Against Progressive Collapse

机译:对渐进式崩溃的地震设计RC建筑框架弯曲鲁棒性的分析方法

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摘要

Quantitative and parametric investigations of the flexural robustness of seismically designed reinforced concrete (RC) building frames under column loss were conducted in this study. A robustness index expressed as the product of the seismic coefficient and the resistance ratio was proposed for the evaluation. Under column-loss conditions, the building frame may not sustain the effective seismic weight using the flexural mechanism as the robustness index is smaller than one. Analytical formulae of the robustness index for the three-dimensional frame model were derived using the energy method and plastic analysis technique. Seven moment-resisting RC building frames with different structural parameters were designed. Nonlinear static analyses were performed to investigate the effects of the span length, number of stories, and seismic coefficient on the robustness index. The results indicated that among these parameters, the span length was the most critical factor. The robustness index decreased with an increase in the span length. For the five-story building frames, it decreased to smaller than 1.0 when the span length increased from 4 to 6 m or larger. Nevertheless, the robustness index was approximately directly proportional to the seismic coefficient and number of stories. It was doubled as the seismic coefficient or number of stories increased from 0.1 to 0.2 or five to ten, respectively. Numerical verification confirmed that the proposed analytical formulae can provide conservative robustness evaluation for seismically designed RC building frames.
机译:在本研究中进行了在柱损失下地震设计钢筋混凝土(RC)建筑帧的弯曲稳健性的定量和参数研究。提出了一种表达作为地震系数的乘积和阻力比的鲁棒性指数进行评估。在列损伤条件下,随着鲁棒性指数小于一个,建筑物框架可能不会使用弯曲机制维持有效地震重量。利用能量法和塑性分析技术导出三维框架模型的鲁棒性指数的分析公式。设计了具有不同结构参数的七个力矩建筑框架。进行非线性静态分析以研究跨度长度,故事数量和地震系数对鲁棒性指数的影响。结果表明,在这些参数中,跨度长度是最关键的因素。稳健性指数随着跨度长度的增加而降低。对于五层楼的构建帧,当跨度长度从4到6米或更大增加时,它减少到小于1.0。然而,鲁棒性指数与地震系数和故事数量大致成正比。随着地震系数或故事分别从0.1到0.2或5到10增加,它加倍。数值验证证实,所提出的分析公式可以为地震设计的RC建筑帧提供保守的鲁棒性评估。

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