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Assessment of Building Robustness against Disproportionate Collapse

机译:评估建筑鲁棒性反对不成比例的崩溃

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摘要

This paper presents a methodology to assess the robustness of moment-resisting RC frame buildings under multiple-column-loss scenarios. In the proposed approach, kinetic and strain energy are employed as objective measures of the dynamic effects and the plastic deformations induced in buildings by the sudden loss of a bearing element, whereas a unique chord rotation is used as an explicit indicator of the global system deformation. These quantities are utilized to define a critical path index ICP that allows identifying the areas most impacted by column loss and determining the location of the next critical column in the building. The proposed index is integrated into a systematic methodology that identifies the minimum number of columns that need to be removed to induce structural collapse. An extensive numerical investigation was conducted on three-dimensional RC buildings of varying height. Comparisons between the demand induced on the build-ings by the identified critical path and random column removals confirm that the sequence identified by the proposed methodology is the one that induces the most severe demands on the structure. Correlation between the variation of the system strain energy and the activation of secondary resisting mechanisms that develop as more columns are removed also confirms the ability of taller buildings to engage larger portions of the structure in resisting progressive collapse. The proposed methodology provides an objective approach for comparing the relative robustness of buildings subjected to column losses and help advance the understanding and mitigation of disproportionate collapse.
机译:本文介绍了在多列丢失方案下评估抗力矩抗控架构建筑物的稳健性的方法。在所提出的方法中,动力学和应变能量是通过突然损失轴承元件的动态效应和建筑物中诱导的塑性变形的客观测量,而独特的弦旋转用作全球系统变形的明确指标。这些数量用于定义关键路径索引ICP,其允许识别受列损耗最大影响的区域,并确定建筑物中的下一个关键列的位置。所提出的指数集成到系统方法中,该方法标识需要去除以诱导结构崩溃的最小列数。在不同高度的三维RC建筑物上进行了广泛的数值调查。通过识别的关键路径和随机列去除在构建中引起的需求之间的比较确认了所提出的方法所识别的序列是诱导结构最严重的需求的序列。除去系统应变能量的变化与开发的次级抗蚀机构的激活也被移除也被移除也证实了较高的建筑物以抵抗逐渐崩溃的较大部分地实现较大部分的能力。该方法提供了一种客观方法,用于比较柱损失的建筑物的相对稳健性,并有助于推进对不成比例的崩塌的理解和减轻。

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  • 来源
    《Journal of structural engineering》 |2020年第12期|04020272.1-04020272.11|共11页
  • 作者单位

    Univ Nevada Dept Civil & Environm Engn 1664 N Virginia St Reno NV 89557 USA;

    Chongqing Univ Sch Civil Engn Shapingba Dist 400044 Chong Qing Da X Peoples R China;

    Univ Calif Davis Dept Civil & Environm Engn 1 Shields Ave Davis CA 95616 USA;

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