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Finite element model updating of a RC building considering seismic response trends

机译:考虑地震响应趋势的RC建筑有限元模型更新

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This paper presents a study on the seismic response trends evaluation and finite element model updating of a reinforced concrete building monitored for a period of more than two years. The three story reinforced concrete building is instrumented with five tri-axial accelerometers and a free-field tri-axial accelerometer. The time domain N4SID system identification technique was used to obtain the frequencies and damping ratios considering flexible base models taking into account the soil-structure-interaction using 50 earthquakes. Trends of variation of seismic response were developed by correlating the peak response acceleration at the roof level with identified frequencies and damping ratios. A general trend of decreasing frequencies was observed with increased level of shaking. To simulate the varying behavior of the building with response levels, a series of three dimensional finite element models were calibrated considering several points on the developed frequency-response amplitude trend lines as targets for updating. To incorporate real in-situ conditions, soil underneath the foundation and around the building was modeled using spring elements and non-structural components (claddings and partitions) were also included. Sensitivity based model updating technique was applied taking into account concrete, soil and cladding stiffness as updating parameters. It was concluded from the investigation that knowledge of the variation of seismic response of buildings is necessary to better understand their behavior during earthquakes, and also that the participation of soil and non-structural components is significant towards the seismic response of the building and these should be considered in models to simulate the real behavior.
机译:本文提出了对长期监测的钢筋混凝土建筑的地震反应趋势评价和有限元模型更新研究。三层钢筋混凝土建筑用五个三轴加速度计和自由场三轴加速度计。考虑使用50地震的土壤结构相互作用,考虑柔性基础模型,使用时域N4SID系统识别技术获得频率和阻尼比。通过将屋顶水平的峰值响应加速度与识别的频率和阻尼比率相关来开发地震反应变化趋势。观察到频率降低的一般趋势,随着摇动水平增加。为了模拟建筑物的变化行为与响应水平,考虑到开发的频率响应幅度趋势线上的几个点作为更新的目标,校准一系列三维有限元模型。为了纳入真正的原位条件,使用弹簧元件和建筑物周围的土壤建模,并使用弹簧元件和非结构部件(熔覆和分区)进行建模。应用基于敏感性的模型更新技术,以考虑混凝土,土壤和覆层刚度作为更新参数。从调查中得出结论,需要了解建筑物的地震响应变化的变化,以更好地了解地震期间的行为,以及土壤和非结构组件的参与对于建筑物的地震反应以及这些应该是重要的在模型中考虑以模拟真实行为。

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