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首页> 外文期刊>Journal of structural engineering >Seismic Column Demands In Ductile Braced Frames
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Seismic Column Demands In Ductile Braced Frames

机译:延性支撑框架的抗震柱要求

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摘要

In ductile braced frames, column seismic demands depend on the strength of ductile elements and yielding patterns that occur during earthquake loading. Column demands were investigated in buckling restrained braced frames (BRBFs), special concentrically braced frames (SCBFs), and eccentrically braced frames (EBFs) with different heights (3, 9, and 18 story) and strength levels using nonlinear time history analysis. For columns at the base of 9- and 18-story BRBFs and EBFs, axial demands observed from the analyses were 55-70% of demands commonly used in design, indicating potential cost savings on columns, anchor rods, base plates, and foundations in tall buildings; however, in low-rise SCBFs with braces in the 2-story X-configuration, column axial demands were up to 100% greater than those commonly used in design because of force redistribution that occurs after brace buckling. Column rotations in all frames were less than 0.03 rad. These rotation demands are lower than rotation capacities that have been demonstrated in other work.
机译:在延性支撑框架中,柱的地震需求取决于延性元素的强度和在地震荷载作用下发生的屈服模式。使用非线性时程分析,研究了具有不同高度(3、9和18层)和强度水平的屈曲约束支撑框架(BRBF),特殊的同心支撑框架(SCBF)和偏心支撑框架(EBF)的柱需求。对于9层和18层BRBF和EBF底部的圆柱,分析得出的轴向需求是设计中常用需求的55-70%,这表明节省了圆柱,锚杆,底板和基础的成本。高的建筑;但是,在2层X形结构中带有支撑的低层SCBF中,由于支撑屈曲后会发生力的重新分配,因此柱的轴向要求比设计中常用的要求高100%。所有框架中的列旋转均小于0.03 rad。这些旋转要求低于其他工作中已证明的旋转能力。

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