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首页> 外文期刊>Bulletin of earthquake engineering >Seismic reliability analysis of steel moment-resisting frames retrofitted by vertical link elements using combined series-parallel system approach
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Seismic reliability analysis of steel moment-resisting frames retrofitted by vertical link elements using combined series-parallel system approach

机译:垂直连杆元件串联平行系统方法改装钢力矩抵抗框架的地震可靠性分析

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摘要

The eccentric bracing system equipped with vertical links is capable of providing high levels of stiffness, strength and ductility, and therefore, can be efficiently used for seismic retrofit of existing structures. This study aims to investigate the seismic reliability of steel moment-resisting frames retrofitted by this system using a novel combined series-parallel system approach. The seismic response of 4, 8 and 12-storey steel moment-resisting frames (MRFs) are evaluated under a set of design basis earthquakes (DBE) before and after retrofitting intervention. Adopting an engineering demand parameter approach (EDP-Based) for reliability assessment and development of analytical models for the frames using systems consisting of the series-parallel elements are the major distinctions between the present study and the other similar works. To estimate the global reliability of the frames, first, the reliability of each storey is individually derived based on various probable damage levels for the lateral-load resisting members. Then, the seismic reliability of the frame is globally obtained by combining the reliability of each storey for different damage levels in the lateral load-resisting subsystems. The results indicate significant impact of this type of bracing system on improvement of the performance level and load-carrying capacity of the frames along with reduction of the lateral displacements. It is shown that application of the vertical links can reduce the maximum inter-storey drifts by at least 60%, while it leads to at most 17% increase in the base shear. All retrofitted frames exhibited a performance level higher than the Life Safety (LS) when subjected to the DBE hazard level records (earthquakes with return period of 475 years). At the same level of earthquake intensity, in the cases when the drift corresponding to the LS performance level is used as the target, the reliability of the retrofitted frames was improved by more than 90% compared to the original frames for all damage states developed in the vertical links.
机译:配备垂直连杆的偏心支撑系统能够提供高水平的刚度、强度和延性,因此可以有效地用于现有结构的抗震加固。本研究旨在采用一种新的串并联组合系统方法,研究由该系统改造的钢抗弯框架的抗震可靠性。在一组设计基准地震(DBE)作用下,对4层、8层和12层钢抗弯框架(MRF)在加固前后的地震反应进行了评估。采用工程需求参数法(基于EDP)进行可靠性评估,并使用由串并联元件组成的系统开发框架的分析模型,是本研究与其他类似工作的主要区别。为了估计框架的整体可靠性,首先,根据抗横向荷载构件的各种可能损伤水平,分别推导出各层的可靠性。然后,通过组合抗横向荷载子系统中不同损伤水平下各层的可靠性,整体获得框架的抗震可靠性。结果表明,这种支撑体系对提高框架的性能水平和承载能力以及减少侧向位移有显著影响。结果表明,垂直连接的应用可以将最大层间位移减少至少60%,而基础剪力最多增加17%。当受到DBE危险等级记录(重现期为475年的地震)的影响时,所有改装框架的性能水平均高于生命安全(LS)。在相同的地震烈度水平下,当以与LS性能水平相对应的位移为目标时,对于垂直连接中产生的所有损伤状态,加固框架的可靠性比原始框架提高了90%以上。

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