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Fishbone-shaped beam-column model for steel outrigger truss-concrete wall composite joints

机译:钢支腿桁架-混凝土墙组合节点的鱼骨形梁柱模型

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In high-rise and super-high-rise buildings, steel outrigger trusses are commonly used as key components for improving the structural seismic performance. The joints between the trusses and core concrete walls enable reliable transfer of large axial loads from the former to the latter and therefore deserve special attention. In the present study, an equivalent fishbone-shaped beam-column model is developed for the analysis and design of the composite joint. The joint is composed of concrete-filled steel tube (CFT) boundary columns and double-skin steel plates, which work together to transfer the axial loads. In the proposed model, elastic beam-column elements are used to represent the CFT boundary columns, double-skin steel plates, horizontal rebar, and diagonal concrete struts in the wall. Two important geometric parameters of the model, namely the length of the double-skin steel plates and the height of the CFT boundary columns, are investigated. Comprehensive parametric analyses based on elaborate finite element models with solid and shell elements are conducted to reveal the main factors that determine the two above-mentioned parameters, and to propose calculating formulas. Then the model is further verified by finite element models with shell and solid elements in terms of the axial force distribution and horizontal displacement. Finally, a method for designing the truss-wall joint using the proposed beam-column model is developed and a typical design example is presented. It is demonstrated that the design of the joint is convenient and reliable once the axial load demand is determined by seismic analysis of the entire building. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在高层和超高层建筑中,通常使用钢支腿桁架作为改善结构抗震性能的关键部件。桁架和核心混凝土墙之间的接合处使大的轴向载荷从前者可靠地传递到后者,因此值得特别注意。在本研究中,开发了等效的鱼骨形梁柱模型来分析和设计复合节点。接头由钢管混凝土边界柱和双层钢板组成,它们共同传递轴向载荷。在提出的模型中,弹性梁柱单元用于表示墙中的CFT边界柱,双层钢板,水平钢筋和对角混凝土支柱。研究了模型的两个重要几何参数,即双层钢板的长度和CFT边界柱的高度。进行了基于复杂的有限元模型(包括实体和壳单元)的综合参数分析,以揭示确定上述两个参数的主要因素,并提出计算公式。然后通过具有壳和实体单元的有限元模型在轴向力分布和水平位移方面进一步验证该模型。最后,提出了一种利用所提出的梁柱模型设计桁架墙节点的方法,并给出了一个典型的设计实例。结果表明,一旦通过整个建筑物的地震分析确定了轴向载荷需求,接头的设计便方便可靠。 (C)2018 Elsevier Ltd.保留所有权利。

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