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Experimental evaluation of the seismic performance of steel MRFs with compressed elastomer dampers using large-scale real-time hybrid simulation

机译:大型实时混合仿真对带有压缩弹性体阻尼器的钢制MRF的抗震性能的实验评估

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摘要

Real-time hybrid simulation combines experimental testing and numerical simulation, and thus is a viable experimental technique for evaluating the effectiveness of supplemental damping devices for seismic hazard mitigation. This paper presents an experimental program based on the use of the real-time hybrid simulation method to verify the performance-based seismic design of a two story, four-bay steel moment resisting frame (MRF) equipped with compressed elastomer dampers.The laboratory specimens, referred to as experimental substructures, are two individual compressed elastomer dampers with the remainder of the building modeled as an analytical substructure. The proposed experimental technique enables an ensemble of ground motions to be applied to the building, resulting in various levels of damage, without the need to repair the experimental substructures, since the damage will be within the analytical substructure. Statistical experimental response results incorporating the ground motion variability show that a steel MRF with compressed elastomer dampers can be designed to perform better than conventional steel special moment resisting frames (SMRFs), even when the MRF with dampers is significantly lighter in weight than the conventional MRF. 【Keywords】Real-time hybrid simulation;Damper;Elastomer;Steel MRF;Performance-based seismic design;
机译:实时混合仿真将实验测试和数值模拟相结合,因此是一种用于评估减震辅助减震装置有效性的可行实验技术。本文提出了一个基于实时混合仿真方法的实验程序,以验证配备压缩弹性体阻尼器的两层,四层钢制抗弯框架(MRF)的基于性能的抗震设计。被称为实验子结构的是两个单独的压缩弹性体阻尼器,而建筑物的其余部分则建模为分析子结构。所提出的实验技术使得能够将整体地面运动应用于建筑物,从而导致各种程度的损坏,而无需修复实验子结构,因为损坏将在分析子结构内。结合地面运动变化的统计实验响应结果表明,即使带有阻尼器的MRF的重量比传统MRF轻得多,带有压缩弹性体阻尼器的钢MRF仍可设计得比常规钢特殊抗力矩框架(SMRF)更好。 。 【关键词】实时混合仿真;阻尼器;弹性体;钢MRF;基于性能的抗震设计;

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