Evaluation on Seismic Performance of Dual Steel Moment-Resisting Frame with Zipper Bracing System Compared to Chevron Bracing System against Near - Fault Earthquakes

N. Zandi, M. Adlparvar, Amir Lamei Javan
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引用次数: 1

Abstract

In order to design seismic-resistant buildings, it is necessary to get comprehensive information about their behavior against the forces induced by earthquakes. Seismic design codes have been developed to meet the requirements of a safe and economical structure. According to the structural codes, the designed structures should not be damaged against light or moderate earthquakes so that the members should be had sufficient strength and safety while they should be a ductile complex with a proper structural configuration against severe earthquakes to dissipate the forces caused by ground motions. In the design of steel buildings, the use of moment-resisting frames in combination with braces is a seismic-resistant system. One of these systems is the dual steel moment-resisting frames with zipper braces. In this research, the seismic performance of the moment-resisting frame with the zipper brace system has been studied and its performance has been compared to the performance when the chevron bracing system is used. Three 4-story, 8-story, and 12-story buildings have been selected then they have been modeled by SAP2000 software, and finally, their seismic performances have been evaluated using time history analysis. The structural responses have been compared as comparing the relative displacement of the stories (story drift), the maximum displacement of the roof, and the formation of plastic hinges in the members. The results of the current study have been shown that using a zipper member has been decreased both overall displacement of the structure by about 10 to 30 percent, and also has been reduced the damage index of 4, 8, and 12-story structures by 27, 11, and 12 percent, respectively. The formation of plastic hinges has been directed from horizontal and vertical members toward diagonal members.
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双钢抗弯矩框架拉链支撑体系与字形支撑体系在近断层地震中的抗震性能比较
为了设计抗震建筑,有必要获得有关其抵抗地震力的综合信息。抗震设计规范的制定是为了满足结构安全和经济的要求。根据结构规范,设计的结构不应在轻度或中度地震中损坏,使构件具有足够的强度和安全性,而它们应该是具有适当结构配置的延性复合体,以应对强烈地震,以消散地震动引起的力。在钢结构建筑的设计中,使用抗弯矩框架与支撑相结合是一种抗震体系。其中一个系统是带有拉链支撑的双钢抗力矩框架。本文研究了拉链支撑体系的抗弯矩框架的抗震性能,并将其与字形支撑体系的抗震性能进行了比较。选取了3栋4层、8层和12层建筑,采用SAP2000软件对其进行了建模,最后采用时程分析对其抗震性能进行了评价。通过比较各层的相对位移(层漂移)、顶板的最大位移以及构件中塑性铰的形成,对结构响应进行了比较。目前的研究结果表明,使用拉链构件使结构的总位移减少了约10%至30%,并使4层、8层和12层结构的损伤指数分别降低了27%、11%和12%。塑料铰链的形成已经从水平和垂直成员向对角线成员。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Rehabilitation in Civil Engineering
Journal of Rehabilitation in Civil Engineering Engineering-Building and Construction
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
12 weeks
期刊最新文献
Damage Sensitive-Stories of RC and Steel Frames under Critical Mainshock-Aftershock Ground Motions Evaluation of Intermediate Reinforced Concrete Moment Frame subjected to Truck collision Damage Detection in Prestressed Concrete Slabs Using Wavelet Analysis of Vibration Responses in the Time Domain Rehabilitation of Corroded Reinforced Concrete Elements by Rebar Replacement Risk assessment and challenges faced in repairs and rehabilitation of dilapidated buildings.
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