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Experimental and numerical investigations into seismic performance of timber-steel hybrid structure with supplemental dampers

机译:带阻尼器的木钢混合结构抗震性能的试验和数值研究

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Although building structures can be designed to meet the life safety criterion and to deform inelastically without inducing collapse under major earthquakes, the structural and nonstructural damage associated with inelastic responses is normally very costly to repair. In this paper, friction dampers are utilized to upgrade the seismic performance of timber-steel hybrid structure, which has been proposed as an alternative structural solution for multi-story buildings. The hybrid structural system consists of steel moment resisting frame and infill light wood frame shear wall, both of which serve as the main lateral load resisting components, and friction dampers are introduced as frame-to-wall connectors to mitigate earthquake-induced damage. Pseudo-static loading tests were carried out on three timber-steel hybrid lateral load resisting subassemblies, and test results showed that the friction dampers were very effective in dissipating earthquake input energy, and correspondingly, much less damage was observed within the main structural members. The software package OpenSees was used to simulate the hysteretic behavior of the hybrid structure, and the developed finite element model was further validated by test results. Moreover, an optimal damper design solution was provided for a four-story timber-steel hybrid prototype building according to the numerical results from massive time-history analyses. Finally, the floor acceleration and inter-story drift responses of the prototype building with optimal damper configurations were assessed. This research aims to contribute to the development of novel timber hybrid structural systems with enhanced seismic performance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:尽管可以将建筑结构设计为符合生命安全标准,并且在发生大地震时不会引起变形而进行非弹性变形,但与非弹性响应相关的结构性和非结构性损坏通常维修成本很高。在本文中,摩擦阻尼器被用来提高木-钢混合结构的抗震性能,这已被提出作为多层建筑物的替代结构解决方案。混合结构系统由钢制抗弯框架和填充轻木框架剪力墙组成,两者均作为主要的侧向抗力组件,并且引入了摩擦阻尼器作为框架到墙的连接器,以减轻地震引起的破坏。对三个木钢混合抗侧向载荷子组件进行了拟静载荷试验,试验结果表明,摩擦阻尼器在耗散地震输入能量方面非常有效,相应地,在主要结构构件中观察到的损伤要小得多。使用OpenSees软件包模拟混合结构的滞后行为,并通过测试结果进一步验证了开发的有限元模型。此外,根据大量时间历史分析的数值结果,为四层木钢混合原型建筑提供了最佳的阻尼器设计解决方案。最后,评估了具有最佳阻尼器配置的原型建筑的地板加速度和层间漂移响应。这项研究旨在促进具有增强抗震性能的新型木材混合结构系统的开发。 (C)2017 Elsevier Ltd.保留所有权利。

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