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Efficient progressive collapse analysis for robustness evaluation of buildings experiencing column removal

机译:高效渐进倒塌分析,可对经历过柱拆除的建筑物进行稳健性评估

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Progressive collapse analysis is used to evaluate robustness of buildings against unexpected extreme events and is a highly nonlinear dynamic problem. Motivated by the need for realistic and yet reasonably fast analysis, a "middle-way" approach for efficient progressive collapse analysis (ePCA) is explained in this paper, accounting for column buckling, semi-rigid connection and membrane action of slab. The accuracy of ePCA is validated by comparing with experimental results available in the literature. Application of ePCA on realistic building systems shows that robustness can be improved cost-effectively by introducing minor changes to the steel connection and slab reinforcement The computational efficiency of this method enables incorporation of robustness design in building system in the early stage of design process. It can also be useful for researchers to more efficiently evaluate the behavior of different structural systems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:渐进式倒塌分析用于评估建筑物对意外突发事件的鲁棒性,它是一个高度非线性的动态问题。由于需要进行现实而又合理的快速分析,本文解释了一种“中间”方法进行有效的渐进塌陷分析(ePCA),其中考虑了柱的屈曲,半刚性连接和平板的膜作用。通过与文献中提供的实验结果进行比较,可以验证ePCA的准确性。 ePCA在实际的建筑系统上的应用表明,通过对钢连接和楼板钢筋进行少量改动,可以在成本效益上提高鲁棒性。这种方法的计算效率使得在设计过程的早期阶段就可以将鲁棒性设计并入建筑系统中。对于研究人员更有效地评估不同结构系统的行为也很有用。 (C)2016 Elsevier Ltd.保留所有权利。

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