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A practical analytical model for special concentrically braced frames

机译:特殊同心支撑框架的实用分析模型

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Special concentrically braced frames (SCBFs) are extensively used in high seismicity regions because of structural efficiency and high ductility for energy dissipation. SCBFs exhibit large inelastic deformation through tensile yielding, buckling and post-buckling behaviors of braces. A simple and accurate model for brace with low computational cost is vital to capture the complex structural behavior of SCBFs. The previous researches generally recommended ten elements per brace, which significantly increases both modeling and computer time. In this paper, a new hybrid flexibility-based beam-column element, considering initial geometrical imperfection and residual stress explicitly, distributed plasticity along member length, and semi-rigid behavior of gusset plate connections is proposed for modeling of SCBFs. It is worth to point out that the zero-length springs attached to element ends for simulation of gusset plate connections can consider the influence of axial force, which has not been reported in literature. Furthermore, the influences of initial geometrical imperfection and residual stresses on the performance of SCBFs are firstly evaluated on the basis of direct analysis method (DAM) specified in AISC360 (2016) and Eurocode-3 (2005). As all dominant factors affecting structural behaviors have been considered, the proposed method using one-element-per-member model provides sufficiently accurate results for practical design with enhancement of computational efficiency. Several examples illustrate the accuracy and efficiency of the proposed model for performance-based seismic design of SCBFs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:特殊的同心支撑框架(SCBF)由于其结构效率高和能量消耗的延展性而广泛用于高地震活动地区。 SCBF通过支撑的拉伸屈服,屈曲和屈曲后行为表现出较大的非弹性变形。一个简单,准确的支撑模型,计算成本低,对于捕获SCBF的复杂结构行为至关重要。先前的研究通常建议每个支撑十个元素,这会大大增加建模和计算机时间。在本文中,提出了一种新的基于混合柔性的梁柱单元,它考虑了初始几何缺陷和残余应力,沿构件长度分布的可塑性以及角撑板连接的半刚性行为,用于SCBF的建模。值得指出的是,用于模拟角撑板连接的连接到单元末端的零长度弹簧可以考虑轴向力的影响,这在文献中还没有报道。此外,首先基于AISC360(2016)和Eurocode-3(2005)中指定的直接分析方法(DAM)评估了初始几何缺陷和残余应力对SCBF性能的影响。考虑到影响结构行为的所有主导因素后,所提出的使用每个成员一个元素模型的方法为实用设计提供了足够准确的结果,并提高了计算效率。几个例子说明了所提出模型的基于性能的SCBF抗震设计的准确性和效率。 (C)2019 Elsevier Ltd.保留所有权利。

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