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Hybrid Simulation Tests of a Soft Storey Frame Building Upgraded with a Buckling-Restrained Brace (BRB)

机译:用屈曲束缚支撑升级的软层框架建筑的混合仿真试验(BRB)

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Hybrid simulation (HS) is an experimental technique possessing advantages over other testing methods and, in several cases, it is the only available method to test structural systems with reliability. In this paper, HS is used to assess the effects of upgrading a soft-storey frame building using a Buckling-Restrained Brace (BRB). This topic is of paramount significance in seismic regions like Mexico, where more than 40 structures collapsed and thousands resulted with different levels of damage during the September 19, 2017 Mw 7.1 Earthquake. Unfortunately, one of the still-remaining challenges in many seismic countries is the use of seismic protective technologies (SPT) that help to mitigate damages in structures. With the aim of encouraging the use of SPT, this paper presents the results of an experimental program that shows the effectivity of buckling-restrained braces (BRBs) to improve safety and reduce damages in structures with one of the most typical causes of failure, i.e. the soft storey problem. A reinforced concrete five-storey frame building was selected first. Then, a numerical 2D model of the structure was subjected to nonlinear dynamic analyses using several earthquake ground motions. In many analyses, collapse was observed in the structure model. After that, the model was upgraded by introducing a BRB in the soft storey. HS was used to assess the performance of the upgraded structure under severe earthquake action. While the frame building was modelled numerically, the BRB was tested physically. The tests were repeated using a conventional brace instead of the BRB. The results show that introducing the BRB in the soft storey was an effective measure to improve the structure performance under seismic loading; while the disadvantages of the conventional brace were exposed.
机译:混合仿真(HS)是一种实验技术,具有优于其他测试方法的实验技术,并且在几种情况下,它是唯一可靠性测试结构系统的可用方法。在本文中,HS用于评估使用屈曲抑制的支架(BRB)升级软层面框架建筑物的效果。本课题对墨西哥这样的地震区至关重要,其中超过40个结构折叠,数千次损坏,2017年9月19日MW 7.1地震。不幸的是,许多地震国家的仍然存在仍然存在的挑战之一是使用地震保护技术(SPT),帮助减轻结构的损害。旨在鼓励使用SPT的目的,提出了一种实验计划的结果,该计划显示了屈曲抑制的胶带(BRB)改善安全性的有效性,并通过最典型的失效原因之一,减少结构的损坏,即软楼的问题。首先选择钢筋混凝土五层框架建筑。然后,使用几种地震地面运动对结构的数值2D模型进行非线性动态分析。在许多分析中,在结构模型中观察到崩溃。之后,通过在软层内引入BRB来升级模型。 HS用于评估严重地震行动下升级结构的性能。虽然框架建筑物在数值上进行了模拟,但BRB在物理上进行了测试。使用常规支撑而不是BRB重复测试。结果表明,在软层内引入BRB是提高地震载荷下结构性能的有效措施;虽然常规支撑的缺点暴露。

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