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Performance-Based Assessment and Structural Response of 20-Story SAC Building under Wind Hazards through Collapse

机译:通过崩溃,基于绩效的评估与20层SAC建筑的结构应对

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摘要

With the increasing occurrence of extreme wind events (e.g., hurricanes) and growing interest in performance-based wind engineering, a better understanding of the structural response and collapse under extreme wind loads is needed. Studying the inelastic nonlinear response of buildings through collapse under wind hazards can lead to safer structures and inform future economic designs. The objective of this paper is to investigate the performance of a 20-story steel moment-resisting frame, from the SAC project, under wind loads at different wind speeds. SAC is a joint venture between the Structural Engineers Association of California (SEAOC; the S in SAC), the Applied Technology Council (ATC; the A in SAC), and California Universities for Research in Earthquake Engineering (CUREe; the C in SAC). The building design was first assessed for compliance based on the latest code requirements. Next, a nonlinear dynamic analysis under three different hazard levels was used to conduct a performance-based assessment. The analysis showed that the building conservatively meets the different performance targets. The building was deliberately underdesigned, which resulted in an 18% reduction in used materials, to conduct a comparative nonlinear response analysis and performance-based assessment. The nonlinear analysis for both building designs was extended under increased wind loads through collapse. Overall, the different parts of the study confirm that current code methods can lead to overly conservative structural designs and suggest that incorporating a performance-based approach along with a well-controlled nonlinear response under extreme wind events can lead to safer and more economical designs and is worthy of further investigations. (C) 2020 American Society of Civil Engineers.
机译:随着极端风力事件(例如,飓风)的发生增加,以及对基于性能的风工程的兴趣,需要更好地了解极端风荷载下的结构响应和崩溃。通过风灾害崩溃研究建筑物的非弹性非线性响应可能导致更安全的结构,并告知未来的经济设计。本文的目的是探讨20层钢力矩抵抗框架,从SAC项目,在不同风速下的风力载量下。 SAC是加利福尼亚州结构工程师协会(SEAOC; SAC)的合资企业,应用技术委员会(ATC; A中的A型),以及加州大学进行地震工程研究(刮SAC中的C) 。首先根据最新的守则要求评估建筑设计。接下来,使用三种不同危害水平下的非线性动力学分析来进行基于性能的评估。分析表明,建筑物保守地满足不同的性能目标。建筑物被故意损失,导致二手材料减少18%,进行比较非线性响应分析和基于绩效的评估。通过崩溃的风力负荷增加,建筑设计的非线性分析延长。总体而言,该研究的不同部分证实,当前的代码方法可以导致过度保守的结构设计,并提示利用基于性能的方法以及在极端风力事件下的良好控制的非线性反应可以导致更安全和更经济的设计值得进一步调查。 (c)2020年美国土木工程师协会。

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