Enhancing Seismic Performance of Multi-story Steel Buildings Using Inner Mega Braced Frames

A. Z. Abdulhameed
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Abstract

damage to buildings. In this study, a multi-story steel building is designed using the ETABS v16 software under vertical loads only. Subsequently, seismic performance was enhanced by employing five different Mega braced frames (MBFs) systems in two cases: in the first case, the five bracing systems are placed within a frame located 6 meters away from the outer frame, while in the second case; the bracing systems were placed within a frame located 12 meters away from the outer frame. The building was then analyzed using nonlinear time history analysis with SAP 2000 V20 software, utilizing seismic data from the El-Centro earthquake available in SAP 2000 V20. The results were compared based on various parameters such as maximum roof displacement, maximum inter-story drift ratio, and maximum base shear. The findings demonstrated an improvement in the building's response, in the first case maximum roof displacement reduction ranging from 36.08% to 48.29% in both directions, and from 36% to 44% for maximum roof displacement in the second case. Maximum inter story- drift ratio also reduced by percentages ranging from 25% to 46% in the first case and 25% to 39% in the second case. From the analysis results, it is evident that the best pattern in the first case is pattern5, while in the second case pattern4 is the best.
利用内巨型支撑框架提高多层钢结构建筑的抗震性能
对建筑物的破坏。在本研究中,使用 ETABS v16 软件设计了一栋多层钢结构建筑,该建筑仅承受垂直荷载。随后,通过在两种情况下采用五种不同的巨型支撑框架(MBFs)系统来增强抗震性能:在第一种情况下,五种支撑系统被置于距外框架 6 米远的框架内,而在第二种情况下,支撑系统被置于距外框架 12 米远的框架内。然后,利用 SAP 2000 V20 中的 El-Centro 地震数据,使用 SAP 2000 V20 软件进行非线性时间历程分析。分析结果根据各种参数进行了比较,如最大屋顶位移、最大层间漂移比和最大基底剪力。研究结果表明,建筑物的响应有所改善,在第一种情况下,两个方向的最大屋顶位移减少了 36.08% 至 48.29%,在第二种情况下,最大屋顶位移减少了 36% 至 44%。第一种情况下,最大层间漂移率也降低了 25% 至 46% 不等,第二种情况下降低了 25% 至 39%。从分析结果可以看出,第一种情况下的最佳模式是模式 5,而第二种情况下的最佳模式是模式 4。
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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