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首页> 外文期刊>Journal of structural engineering >Seismic Design and Performance Evaluation of Long-Span Special Truss Moment Frames
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Seismic Design and Performance Evaluation of Long-Span Special Truss Moment Frames

机译:大跨度特殊桁架弯矩框架的抗震设计与性能评估

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摘要

The need for a very-long-span structure in sporting and industrial venues puts steel moment frames and braced frames at a disadvantage. In this regard, special truss moment frames (STMFs) can accommodate a large span by utilizing truss girders to provide high lateral stiffness. However, current seismic provisions for structural steel buildings do not allow STMFs' span and truss depth to exceed 20 and 1.8 m, respectively. Moreover, when a very long span is used, the high axial forces induced by the gravity load could cause considerable ductility reduction of the chord members in the special segment. This paper presents a study on seismic behavior of long-span STMFs with double-channel truss members, a span length of 27.4 m, and a truss depth of 3.05 m. Plastic hinge models of double-channel sections considering the effect of high axial forces were developed based on experimental and nonlinear finite-element analysis (FEA) for both design basis earthquakes (DBEs) and near-collapse earthquakes or maximum considered earthquakes (MCEs). A design procedure for long-span STMFs using nonlinear pushover analysis is presented. The seismic performance of long-span STMFs was verified using the developed plastic hinge models as well as DBE and MCE ground motions through nonlinear time-history (NTH) analyses. According to the FEA results, a modification to the axial load limit in current seismic provisions for the chord members is recommended.
机译:在体育和工业场所中需要非常长跨度的结构,使得钢制矩型框架和支撑框架处于不利地位。在这方面,特殊的桁架弯矩框架(STMF)可通过使用桁架梁提供较高的侧向刚度来适应较大的跨度。但是,当前针对钢结构建筑的地震规定不允许STMF的跨度和桁架深度分别超过20和1.8 m。此外,当使用非常长的跨度时,由重力载荷引起的高轴向力会导致特殊段中的弦杆构件的延性大大降低。本文对具有双通道桁架构件,跨距长度为27.4 m,桁架深度为3.05 m的大跨度STMF的地震行为进行了研究。基于试验和非线性有限元分析(FEA),针对设计基准地震(DBE)和近崩溃地震或最大考虑地震(MCE),建立了考虑高轴向力影响的双通道断面塑性铰模型。提出了使用非线性推覆分析的大跨度STMF设计程序。使用开发的塑料铰链模型以及DBE和MCE地震动,通过非线性时程(NTH)分析,验证了大跨度STMF的抗震性能。根据有限元分析的结果,建议修改弦构件当前地震规定中的轴向载荷极限。

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