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Inelastic behavior and seismic design of multistory chevron-braced frames with yielding beams

机译:具有屈服梁的多晶四臂支架框架的无弹性行为和地震设计

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Chevron or inverted V-braced frames offer numerous architectural and structural advantages, but the current special concentrically braced frame (SCBF) seismic-design requirements in the American Institute of Steel Construction (AISC) Seismic Provisions for Structural Steel Buildings lead to deep, heavy chevron beams; as a result, few chevron SCBEs are built today. Recent research on single-story chevron SCBEs demonstrated that beam yielding can be advantageous at higher demand levels, and design for large, inelastic unbalanced brace-force demands may still result in acceptable seismic performance. However, this prior research did not consider the response of multistory frames. In particular, questions remain as to the potential for concentration of damage, the impacts of composite slabs, and the effects of different beam-to-column connections; these issues can only be investigated using multistory frames. A companion research program was conducted to investigate multistory systems with chevron SCBEs using experimental and computational simulation methods. In the first phase of the research, a three-story chevron SCBF designed to permit beam yielding was tested at the National Center for Research on Earthquake Engineering (NCREE) Laboratory in Taipei, Taiwan. The test results were then used to validate a nonlinear, continuum finite-element model. A limited parametric study was conducted to build upon and further the experiments, specifically to evaluate different beam strengths and stiffnesses. These results were combined to develop design recommendations for chevron SCBEs with yielding beams. (C) 2019 Elsevier Ltd. All rights reserved.
机译:雪佛龙或倒置的V-Braced框架提供了众多建筑和结构的优势,但目前的特殊正度支撑架(SCBF)地震设计要求在美国钢结构(AISC)地震规定的结构钢建筑导致深层,重型雪佛龙梁;因此,很少有距离雪佛龙SCBES。最近关于单层雪佛龙SCBES的研究表明,在更高的需求水平下,光束屈服可能是有利的,而设计大型无间隙不平衡支架要求可能仍可能导致可接受的地震性能。然而,这次先前的研究没有考虑多晶框架的响应。特别是,问题仍然是损伤浓度,复合板的影响以及不同光束到柱连接的效果的潜力;这些问题只能使用多存储器帧进行调查。使用实验和计算仿真方法进行了伴侣研究计划,以调查具有雪佛龙SCB的多层系统。在该研究的第一阶段,旨在允许束屈服的三层雪佛龙SCBF在台湾台北地震工程研究中心(Ncree)实验室研究中进行了测试。然后使用测试结果来验证非线性,连续的有限元模型。进行了有限的参数研究以建立和进一步的实验,具体是评估不同的光束强度和刚度。将这些结果组合起来为具有屈服梁的雪佛龙Scbes开发设计建议。 (c)2019 Elsevier Ltd.保留所有权利。

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