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伪动力荷载作用下带减震阻尼器的钢筋混凝土结构可靠性分析

Reliability Analysis of Reinforced Concrete Structure with Shock Absorber Damper under Pseudo-Dynamic Loads.

作者信息

Yip Chun-Chieh, Wong Jing-Ying, Amran Mugahed, Fediuk Roman, Vatin Nikolai Ivanovich

机构信息

Department of Civil Engineering, Universiti Tunku Abdul Rahman, Cheras, Kajang 43000, Selangor, Malaysia.

Department of Civil Engineering, University of Nottingham Malaysia, Semenyih 43500, Selangor, Malaysia.

出版信息

Materials (Basel). 2022 Apr 6;15(7):2688. doi: 10.3390/ma15072688.

Abstract

Past historical earthquake events from neighbouring countries have been proven to be disastrous. Building in the aftermath of an earthquake may reduce structural reliability, posing risk upon re-occupation of the building. Shock absorber viscous dampers were installed on a specific structure storey that could reduce the spectral acceleration and storey-drift caused by an earthquake. The research object is a low-rise, three-storey, reinforced concrete (RC) structure. This study aims to identify the dynamic response of the scaled RC structure with and without attached dampers and performs structural reliability of the tested model under the excitation of Peak Ground Acceleration (PGA) of 0.1 g to 1.0 g with a unidirectional shaking table. APIDO viscous dampers were installed parallel to the movement direction of the dynamic load test. The findings show the scaled model with attached viscous dampers reduces spectral acceleration and storey drift by 9.66% and 4.85%, respectively. Findings also show the change of the structural behaviour from single curvature to double curvature due to the increase in seismic structural resistance by viscous dampers. The breakthrough of this research shows that structural reliability analysis performed by the Weibull distribution function has a base shear capacity increment of 1.29% and 6.90% in seismic performance level Life Safety (LS) and Collapse Prevention (CP), respectively. The novelty of this case study building with dampers managed to increase the building's base shear and roof shear capacity by 6.90% and 16% compared to the building without dampers under dynamic load excitation.

摘要

来自邻国的过往地震事件已被证明具有灾难性。地震后的建筑可能会降低结构可靠性,在重新使用该建筑时带来风险。在特定结构楼层安装了减震粘性阻尼器,其可以降低地震引起的谱加速度和楼层位移。研究对象是一座三层的低层钢筋混凝土(RC)结构。本研究旨在识别有阻尼器和无阻尼器的缩尺RC结构的动力响应,并在单向振动台上,在0.1g至1.0g的峰值地面加速度(PGA)激励下对测试模型进行结构可靠性分析。APIDO粘性阻尼器与动态荷载试验的运动方向平行安装。研究结果表明,安装了粘性阻尼器的缩尺模型分别将谱加速度和楼层位移降低了9.66%和4.85%。研究结果还表明,由于粘性阻尼器增加了结构抗震能力,结构行为从单曲率变为双曲率。本研究的突破在于,通过威布尔分布函数进行的结构可靠性分析在地震性能水平生命安全(LS)和防倒塌(CP)下的基底剪力承载力分别增加了1.29%和6.90%。与无阻尼器的建筑相比,本案例中有阻尼器的建筑在动态荷载激励下,其基底剪力和屋顶剪力承载力分别提高了6.90%和16%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c61d/9000473/b57e116de652/materials-15-02688-g001.jpg

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