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MODAL ANALYSIS FOR DAMAGE DETECTION OF REINFORCED CONCRETE COLUMNS AFTER FIRE

机译:火灾后钢筋混凝土柱损伤检测的模态分析

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Many civil structures are subjected to damage due to overloading, and natural disasters or man-made hazards. Detection of damage in these structures as well as the prediction of their remaining life is of great economic and social value with respect to the safety of people's asset and life. In this paper, vibration based damage detection techniques were employed to detect damage in reinforced concrete (RC) columns exposed to different levels of fire. Modal test and analysis was carried out for the RC columns in original condition at first. Then, the RC columns were put in fire. Finally, dynamic test on the damaged RC columns was carried out and changes in the dynamic characteristics of the columns before and after fire were examined. Two different methods including Eigen-System Realization Algorithm (ERA) and PolyMax method were employed to extract modal parameters of the columns before and after fire. The performance of the proposed methods is discussed. Lastly, the location of the damage is detected by employing the Co-Ordinate Modal Assurance Criterion (COMAC) method. Results show that the presence and the location of the damage of the RC columns after fire can be identified correctly.
机译:许多民用建筑由于超载,自然灾害或人为危险而遭受破坏。就人员财产和生命的安全而言,检测这些结构中的损坏以及预测其剩余寿命具有重大的经济和社会价值。在本文中,基于振动的损伤检测技术被用来检测暴露于不同火源水平的钢筋混凝土(RC)柱的损伤。首先对原始条件下的RC柱进行了模态测试和分析。然后,将RC柱放火。最后,对受损的RC柱进行了动力测试,并研究了火灾前后柱动力特性的变化。分别采用特征系统实现算法(ERA)和PolyMax方法两种方法提取火灾前后柱的模态参数。讨论了所提出方法的性能。最后,通过使用协调模态保证标准(COMAC)方法来检测损坏的位置。结果表明,火灾后RC柱损坏的存在和位置可以正确识别。

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