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Innovative Bracing System for Earthquake Resistant Concentrically Braced Frame Structures

机译:抗震同心支撑框架结构的创新支撑系统

摘要

The chevron braced frame is a widely used seismic force resistant system in North America in areas subjected to moderate-to-severe earthquakes. However, the chevron braced frame system is limited in term of lateral loads redistribution over the building height.udKhatib et al (1988) proposed to add zipper columns to link together all brace-to-beam intersecting points with the aim to drive all compression braces to buckle simultaneously and as a result to enlarge the energy dissipation capacity of the system. Although the Commentary of AISC Seismic Provisions for Structural Steel Building (AISC 2002) contains recommendations regarding this innovative zipper steel frame systems, no design provisions are included yet.udThe scope of this thesis is to refine the design method for the Zipper Braced Frame System which was initially proposed by Tremblay and Tirca (2003) and to study the system’s behaviour under seismic loads by means of accurate inelastic time-history analysis.udThe main objective of this research project is three-fold:udTo develop accurate computer brace models by using Drain2DX and OpenSees and to validate the accuracy of computations with experimental test results for slender, intermediate and stocky braces;udTo refine the existing design method for CBFs with strong zipper columns;udTo validate the refined design method by studying the performance of CBF systems with strong zipper columns in Drain2DX and OpenSees environment for low-, middle- and high-rise buildings.udThrough this research, the overall understanding of the CBF system with strong zipper columns is improved by means of accurate numerical predictions. The outcome of this study will be further used as input data for experimental tests.udThe design procedure has been divided into two phases: design of braces, columns and beams according to NBC 2005 and CSA-S16-09 and design of zipper columns. A spreadsheet was developed for a 4-, 8- and 12-storey buildings and six different pattern loads related to the distribution of internal brace forces over the structure height were proposed. Based on this study, the best suited pattern load distribution is selected and considered for zipper column design.udIn order to evaluate the accuracy of modeling assumption in OpenSees, parametric studies were carried out. Comparisons between analytical and available test results have validated the accuracy of the computer models and analysis results. Three ground motion ensembles such as: regular, near-field and Cascadia were scaled to match the design spectrum for Victoria, B.C., have been considered in these analyses.udIn conclusion, good seismic performance was found for all studied buildings. The forces in the zippers were equal to or lower than predicted in the design method. All zipper columns performed in elastic range while buckling of braces propagated upward or downward within seconds. It was clearly demonstrated that by using CBF’s with zipper columns the storey mechanism was mitigated and in almost all cases the interstorey drift was uniformly distributed over the structure height. In addition the median estimations of the interstorey drifts were below than 2.5% hs limit prescribed in the NBC-05 code for buildings of normal importance.udThe outcomes of this research project will be further used as input data for a future experimental test planned to be conducted on an 8-storey braced frame with zipper columns sample.
机译:人字形支撑框架是在北美中度至重度地震地区广泛使用的抗地震力系统。但是,人字形支撑框架系统在整个建筑物高度上的侧向载荷重新分配方面受到限制。 udKhatib等人(1988)提出增加拉链柱以将所有支撑到梁的交叉点链接在一起,以驱动所有压缩撑杆同时屈曲,从而扩大了系统的能量消耗能力。尽管《 AISC结构钢建筑抗震规定》(AISC 2002)的注释中包含有关此创新型拉链钢框架系统的建议,但尚未包括任何设计规定。 ud本文的范围是完善拉链支撑框架系统的设计方法。这是Tremblay和Tirca(2003)最初提出的,并通过精确的非弹性时程分析来研究系统在地震载荷下的行为。 ud本研究项目的主要目标是三个方面: ud开发精确的计算机支撑模型通过使用Drain2DX和OpenSees并通过细长,中型和粗大括号的实验测试结果来验证计算的准确性; ud改进具有强拉链柱的CBF的现有设计方法; ud通过研究以下性能来验证改进的设计方法在Drain2DX和OpenSees环境中具有坚固拉链柱的CBF系统,适用于低,中和高层建筑。 udThr通过这项研究,可以通过精确的数值预测来提高对带有坚固拉链柱的CBF系统的总体了解。这项研究的结果将进一步用作实验测试的输入数据。 ud设计过程已分为两个阶段:根据NBC 2005和CSA-S16-09进行支撑,立柱和横梁的设计以及拉链立柱的设计。针对4层,8层和12层的建筑物开发了电子表格,并提出了六种与内部支撑力在结构高度上的分布有关的不同模式荷载。基于此研究,选择最适合的模式载荷分布并考虑用于拉链柱设计。 ud为了评估OpenSees中建模假设的准确性,进行了参数研究。分析测试结果与可用测试结果之间的比较已验证了计算机模型和分析结果的准确性。在这些分析中,考虑了三种地面运动合奏,例如:常规,近场和卡斯卡迪亚,以适应不列颠哥伦比亚省维多利亚市的设计范围。 ud总而言之,所有研究的建筑物均获得了良好的抗震性能。拉链中的力等于或小于设计方法中预测的力。所有拉链柱均在弹性范围内运行,而撑杆的屈曲在几秒钟内向上或向下传播。清楚地表明,通过将CBF与拉链柱配合使用,可以缓解层高机制,并且在几乎所有情况下,层间漂移在结构高度上均匀分布。此外,对于正常重要性的建筑物,层间漂移的中值估计值低于NBC-05规范中规定的2.5%hs限制以下。 ud该研究项目的结果将进一步用作计划中的未来实验测试的输入数据在带有拉链柱样本的8层支撑框架上进行。

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    Chen Liang;

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  • 年度 2011
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