Structural assessment on beam-slab reinforced concrete sub-structures under column loss scenario

IF 1.8 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Manh Ha Tran, K. Tan
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引用次数: 2

Abstract

Mobilisation of alternate load path (ALP) mechanisms in 3D beam-slab systems is a key factor in designing structures against progressive collapse. Existing analytical methods on 3D beam-slab systems focusing on limited load-resisting mechanisms often lead to uneconomical and unrealistic design, while finite element models with 3D solid elements are too complicated and time consuming for 3D beam-slab systems. To address these shortcomings, this paper aims to provide structural engineers two simple but effective and reliable approaches to predict structural behaviour of 3D beam-slab systems. They include (i) an analytical method and (ii) a simplified finite element model based on strip method and grillage analysis. Both approaches are validated against published test results for 3D beam-slab systems. Compared to existing approaches on 3D beam-slab systems, these two proposed methods incorporate all the load resisting mechanisms in both the beams and slabs, giving more accurate and realistic predictions of load-displacement curves for the sub-structures considered. In addition, parametric studies on the analytical approach are presented to shed light on the role of boundary conditions and the contribution of slabs to load resistance capacity of 3D beam-slab structures against progressive collapse.
柱损失情景下梁板混凝土下部结构的结构评价
在三维梁-板系统中,交替荷载路径(ALP)机制的动员是设计结构抗渐进倒塌的关键因素。现有的三维梁-板体系分析方法侧重于有限抗荷载机制,往往导致设计不经济和不现实,而三维实体单元的有限元模型对于三维梁-板体系来说过于复杂和耗时。为了解决这些缺点,本文旨在为结构工程师提供两种简单但有效和可靠的方法来预测三维梁-板系统的结构行为。它们包括(i)分析方法和(ii)基于条形法和格栅分析的简化有限元模型。根据已公布的3D梁-板系统测试结果,验证了这两种方法。与现有的三维梁-板系统方法相比,这两种方法结合了梁和板的所有抗荷载机制,对所考虑的子结构的荷载-位移曲线给出了更准确和现实的预测。此外,还提出了分析方法的参数化研究,以阐明边界条件的作用以及板对三维梁-板结构抗连续倒塌荷载能力的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Magazine of Concrete Research
Magazine of Concrete Research 工程技术-材料科学:综合
CiteScore
4.60
自引率
11.10%
发文量
102
审稿时长
5 months
期刊介绍: For concrete and other cementitious derivatives to be developed further, we need to understand the use of alternative hydraulically active materials used in combination with plain Portland Cement, sustainability and durability issues. Both fundamental and best practice issues need to be addressed. Magazine of Concrete Research covers every aspect of concrete manufacture and behaviour from performance and evaluation of constituent materials to mix design, testing, durability, structural analysis and composite construction.
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