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首页> 外文期刊>Journal of structural engineering >Application of Hybrid Simulation for Collapse Assessment of Post-Earthquake CFRP-Repaired RC Columns
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Application of Hybrid Simulation for Collapse Assessment of Post-Earthquake CFRP-Repaired RC Columns

机译:混合仿真在地震后CFRP修复RC柱破坏评估中的应用

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摘要

Hybrid simulation combines the flexibility and cost-effectiveness of computer simulations with the realism of experimental testing to provide a powerful platform for large-scale experimental investigation of the seismic response of structures through collapse. This paper presents applications of hybrid simulation for (1) tracing the seismic response of a limited-ductility reinforced-concrete (RC) column through collapse and (2) evaluating the capability of carbon fiber reinforced polymer (CFRP) repair on rehabilitating the earthquake-damaged RC column to its initial collapse resistance capacity. A state-of-the-art hybrid testing facility, referred to as the multiaxis substructure testing (MAST) system, was used to simulate complex time-varying six-degrees-of-freedom (6-DOF) boundary effects on the physical specimens using mixed load/deformation modes. Based on the experimental results, a comparative collapse risk assessment of the initial and repaired column was conducted, which illustrates the effectiveness of using CFRP repair to restore and improve the collapse resistance of earthquake-damaged RC columns. (C) 2016 American Society of Civil Engineers.
机译:混合仿真将计算机仿真的灵活性和成本效益与实验测试的真实性结合在一起,为大型结构通过坍塌的地震反应进行实验研究提供了强大的平台。本文介绍了混合模拟在以下方面的应用:(1)通过倒塌追踪有限延性钢筋混凝土(RC)柱的地震响应,以及(2)评估碳纤维增强聚合物(CFRP)修复地震的能力-损坏的RC柱至其初始抗倒塌能力。先进的混合测试设备,称为多轴子结构测试(MAST)系统,用于模拟物理样本上复杂的时变六自由度(6-DOF)边界效应使用混合载荷/变形模式。根据实验结果,对初始和修复后的柱进行了比较倒塌风险评估,这说明了使用CFRP修复来恢复和改善地震破坏的RC柱的抗倒塌性的有效性。 (C)2016年美国土木工程师学会。

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