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Vibration-based finite element model updating and structural damage identification

机译:基于振动的有限元模型更新与结构损伤识别

摘要

Damage and material deterioration could lead to structural failure with unknown consequences. Structural health monitoring strategy based on vibration measurements for existing aging structures offers a promising technique for effectively managing the deteriorating structures. The main objectives of this research are to develop a procedure for finite element model updating by using incomplete modal data identified from vibration measurements, to develop real time structural damage detecting method by directly using vibration measurements and then identify the damage at detailed location and extend in the structure on the basis of the validated numerical model. ududA steel frame model structure was constructed in the laboratory for finite element model updating and structural damage detection. Forced vibration testing was undertaken on the model structure and dynamic response such as accelerations were measured by using sensors installed. Modal analyses are then carried out to identify modal parameters such as frequencies, mode shapes and damping from the vibration measurements. Structural damage scenarios were simulated by breaking bracing members of the model structure, and modal parameter of the damaged structures were also identified and analysed. ududAn effective approach for directly updating finite element model from measured incomplete modal data with a regularised iterative algorithm is then presented. The exact relationship between the perturbation of structural parameters and the modal properties of the dynamic structure is developed. Numerical simulation investigations and experimental study of a laboratory tested space steel frame model and practical application to the Canton Tower benchmark problem are undertaken to verify the accuracy and effectiveness of the proposed model updating method. ududFinally, a new approach for real time structural damage detection by using acceleration measurements is presented. Structural damage is characterised at element level by introducing damage parameters which can indicate the location and severity of damage in the structure. The relationship between the damage parameters and the measured dynamic response is then established from the governing equation of the dynamic structure. Numerical examples of cantilever beams, plane frame, and braced frames are adopted to demonstrate the effectiveness of the proposed method. The new proposed technique performs well and produces stable and reliable results, which could be used for real time damage assessment during the event of earthquake and explosion.
机译:损坏和材料变质可能导致结构故障,后果不明。基于振动测量的现有老化结构的结构健康监测策略为有效管理恶化的结构提供了一种有前途的技术。这项研究的主要目的是通过使用从振动测量中识别出的不完整模态数据来开发有限元模型更新的程序,通过直接使用振动测量来开发实时结构损伤检测方法,然后在详细位置识别损伤并扩展验证的数值模型基础上的结构。 ud ud在实验室中构建了钢框架模型结构,用于有限元模型更新和结构损伤检测。对模型结构进行了强制振动测试,并使用安装的传感器测量了动态响应(如加速度)。然后进行模态分析以从振动测量中识别模态参数,例如频率,模态形状和阻尼。通过破坏模型结构的支撑构件来模拟结构破坏场景,并识别和分析破坏结构的模态参数。 ud ud然后提出了一种有效的方法,可以使用正则化迭代算法从测得的不完整模态数据直接更新有限元模型。建立了结构参数摄动与动态结构模态特性之间的精确关系。进行了实验室测试的空间钢框架模型的数值模拟研究和实验研究,并将其实际应用于广州塔基准问题,以验证所提出的模型更新方法的准确性和有效性。最后,提出了一种通过使用加速度测量来实时检测结构损伤的新方法。通过引入可指示结构中损坏位置和严重程度的损坏参数,在元素级别对结构损坏进行表征。然后根据动态结构的控制方程建立损伤参数与测得的动态响应之间的关系。通过对悬臂梁,平面框架和支撑框架的数值算例验证了该方法的有效性。新提出的技术性能良好,并产生稳定可靠的结果,可用于地震和爆炸事件的实时损害评估。

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    Than Soe Muang;

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  • 年度 2013
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  • 正文语种 en
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