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Parametric Study on the Seismic Response of Steel-Framed Buildings with Self-Centering Tension-Only Braces

机译:钢框架建筑与自定心张力胶带抗震响应的参数研究

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摘要

Self-centering bracing systems, by which residual deformations of structures after earthquakes can be minimized, are considered effective solutions to achieve seismic resilience. In this paper, a parametric study on the seismic response of intermediate and high-rise steel-framed buildings with novel self-centering tension-only braces (SC-TOBs) is numerically conducted. Three key parameters, the stiffness degradation factor, the activation strain, and the initial axial stiffness of the SC-TOBs, are investigated to explore the design space for the SC-TOB frames (SC-TOBFs) because of their unique tunability compared with traditional bracing systems. Identical steel frames equipped with buckling restrained braces (BRBs) are also designed and examined for comparison purposes. The results indicate that increasing the stiffness degradation factor can improve the second stiffness of SC-TOBFs and successfully make the distribution of interstory drifts more uniform; an increase in the activation strain leads to a larger activation deformation of SC-TOBFs, but it has a very limited effect on the interstory drifts; increasing the initial axial stiffness appropriately is beneficial to reduce the interstory drifts of the low stories. The lateral behavior of SC-TOBFs is comparable to that of BRB frames when a lower activation strain and a higher initial axial stiffness are selected. Furthermore, when a higher stiffness degradation factor and a lower initial axial stiffness are selected simultaneously, the seismic action on SC-TOBFs can be effectively reduced, and a relatively uniform distribution over the building height can be obtained. The SC-TOBFs are considered to be a type of performance-tunable structure, and tuning can be achieved by varying a frame’s adjustable parameters.
机译:自定心支撑系统,通过该地震后结构的残留变形可以最小化,被认为是实现地震弹性的有效解决方案。在本文中,数值进行了对中间和高层钢框架建筑物的地震反应的参数研究,进行了数控自定心张力张力(SC-ToB)。研究了SC-ToB的三个关键参数,刚度劣化因子,激活应变和初始轴向刚度,以探索SC-ToB帧(SC-ToBFS)的设计空间,因为与传统相比,它们独特的可调性支撑系统。还设计和检查配备有屈曲束缚括号(BRB)的相同钢框以进行比较。结果表明,增加刚度劣化因子可以提高SC-ToBF的第二刚度,并成功地使壁的分布更加均匀;激活应变的增加导致SC-TOBF的较大激活变形,但对壁垒漂移具有非常有限的影响;适当地增加初始轴向刚度是有益的,可以减少低故事的壁垒。 The lateral behavior of SC-TOBFs is comparable to that of BRB frames when a lower activation strain and a higher initial axial stiffness are selected.此外,当同时选择更高的刚度劣化因子和较低的初始轴向刚度时,可以有效地减小SC-TOBFS上的地震作用,并且可以获得在建筑物高度上的相对均匀的分布。 SC-ToBF被认为是一种类型的性能可调结构,并且可以通过改变帧的可调参数来实现调谐。

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