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Quantification of the seismic performance factors for steel diagrid structures

机译:钢斜交结构抗震性能因子的量化

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There are a number of studies on seismic performance of a diagrid structure indicating that it is an effective choice for constructing tall buildings. This research investigates the seismic behavior of diagrid structures and quantifies its seismic performance factors including the response modification coefficient (R-factor), the over-strength factor (Omega(0)) and the displacement amplification factor (C-d) based on the FEMA P695 methodology. In that regard, a group of 3-D steel diagrid archetype models with different number of floors and various diagonal angles are designed using different R-factors. Then, in the first step, the over-strength factors of these models are determined by performing nonlinear static analyses. Then, utilizing the incremental dynamic analysis (IDA), the median collapse capacity and collapse margin ratio (CMR) of these models are calculated and their C-d factors are estimated using the computed R-factors. The obtained results indicate that the R-factor for steel diagrid systems depend on the diagonal angles. For diagrids with angles of 45 degrees, 63.4 degrees and 71.5 degrees, amounts of R-factor were determined as 1.5, 2, and 3, respectively. Moreover, the pin and rigid types of end-connection of diagrid perimeter beams was found to have no effects on stiffness of the diagrid models. However, the IDA results indicate that the diagrids with pin ended beams tolerate larger collapse displacements especially in shorter models. Furthermore, replacing the rigid-ended beams by pin-ended beams improves the seismic performance of diagrids, particularly for models with larger diagonal angles (63.4 degrees and 71.5 degrees). The OpenSees program was used for modeling and numerical analyses. (C) 2018 Elsevier Ltd. All rights reserved.
机译:关于斜交结构的抗震性能的大量研究表明,它是建造高层建筑的有效选择。本研究调查了斜交构筑物的抗震性能,并基于FEMA P695量化了其抗震性能系数,包括响应修正系数(R-factor),超强度系数(Omega(0))和位移放大系数(Cd)。方法。在这方面,使用不同的R因子设计了一组具有不同层数和不同对角线的3-D钢斜交原型模型。然后,第一步,通过执行非线性静态分析来确定这些模型的超强度因子。然后,利用增量动态分析(IDA),计算这些模型的平均坍塌能力和坍塌裕度比(CMR),并使用计算出的R因子估算其C-d因子。获得的结果表明,钢斜交系统的R因子取决于对角。对于角度为45度,63.4度和71.5度的斜方肌,R因子的量分别确定为1.5、2和3。此外,发现斜交周边梁的端接的销钉和刚性类型对斜交模型的刚度没有影响。但是,IDA结果表明,带有销端梁的斜交桥可以承受更大的坍塌位移,尤其是在较短的模型中。此外,用销钉端梁代替刚性端梁可以改善斜方管的抗震性能,特别是对于具有较大对角线角度(63.4度和71.5度)的模型。 OpenSees程序用于建模和数值分析。 (C)2018 Elsevier Ltd.保留所有权利。

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