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Progressive collapse fragility models of European reinforced concrete framed buildings based on pushdown analysis

机译:基于下推分析的欧式钢筋混凝土框架结构渐进倒塌脆弱性模型

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Structural safety for extreme loads that may cause local damage to single primary components or even the progressive collapse of the structure has been probabilistically assessed in a few studies, hence neglecting uncertainties in loads and system capacity. As such, this paper moves from a deterministic to a probabilistic framework, proposing new progressive collapse fragility models based on pushdown analysis of low-rise, reinforced concrete framed bare structures. Two building classes representative of structures designed for either gravity loads or earthquake resistance in accordance with current European codes were investigated. Monte Carlo simulation was used to generate random realizations of 2D and 3D structural models. Fiber-based finite element models were developed within an open source platform. The primary output consisted of fragility functions for each damage state of interest, given the loss of corner column at the ground floor. The fragility models were compared to those derived through incremental dynamic analysis (IDA) to assess the inaccuracy of progressive collapse fragility functions derived through pushdown analysis. Load capacity predictions provided by those analysis methods were used to develop regression models for a quick estimation of dynamic amplification factor at a given displacement/drift level. The analysis results show a significant influence of both seismic design and secondary beams on robustness of the case-study building classes. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在一些研究中,概率评估了可能导致单个主要部件局部损坏甚至结构逐渐崩溃的极端载荷的结构安全性,因此忽略了载荷和系统容量的不确定性。因此,本文从确定性框架转变为概率框架,基于对低层钢筋混凝土框架裸露结构的下推分析,提出了新的渐进式崩溃脆性模型。根据现行的欧洲规范,对两种代表建筑结构的建筑类别进行了研究,这些建筑针对重力载荷或抗震设计。蒙特卡洛模拟用于生成2D和3D结构模型的随机实现。基于纤维的有限元模型是在开放源代码平台中开发的。考虑到地面一角柱的损失,主要输出包括每种关注状态的脆性函数。将脆弱性模型与通过增量动态分析(IDA)得出的模型进行比较,以评估通过下推分析得出的渐进式崩溃脆弱性函数的不准确性。这些分析方法提供的负载能力预测可用于开发回归模型,以便在给定位移/漂移水平下快速估算动态放大系数。分析结果表明,抗震设计和次梁对案例研究建筑类别的鲁棒性都有重大影响。 (C)2017 Elsevier Ltd.保留所有权利。

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