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Identification of changes in the stiffness and damping matrices of linear structures through ambient vibrations

机译:通过环境振动识别线性结构的刚度和阻尼矩阵的变化

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The practical difficulties presented by forced vibration testing of large structures, such as tall buildings, dams or bridges, led to a vast interest in structural monitoring through ambient vibrations, which usually allows the proper identification of modal properties, natural frequencies, damping and modes of vibration. Changes in these modal properties constitute an indication of structural damage, which may then be assessed on the basis of experimental evidence. The authors describe an approach to determine the so-called damage damping and stiffness matrices, which are essential to identify the location and intensity of damage. No restrictions are introduced on the damping matrix of the system. The approach requires ambient vibration data records of all relevant co-ordinates used in the structural model, which are processed employing the SSI-Cov method in conjunction with a modal analysis procedure. The identification method is illustrated with examples using experimental measurements on a reinforced concrete beam and a reduced scale multi-storey plane frame structure, also laboratory tested, as well as the theoretical simulated vibration response of a multi-storey concrete frame subjected to seismic excitation. Additional difficulties presented by field monitoring of large structures are briefly examined at the end of the paper.
机译:大型结构(例如高层建筑,水坝或桥梁)的强制振动测试所带来的实际困难导致人们对通过环境振动进行结构监视产生了极大的兴趣,这通常可以正确识别模态特性,固有频率,阻尼和振动模态。振动。这些模态性质的变化构成了结构损伤的指示,然后可以根据实验证据对其进行评估。作者描述了一种确定所谓的损伤阻尼和刚度矩阵的方法,这对于确定损伤的位置和强度至关重要。对系统的阻尼矩阵没有限制。该方法需要结构模型中使用的所有相关坐标的环境振动数据记录,这些记录使用SSI-Cov方法结合模态分析程序进行处理。通过在钢筋混凝土梁和缩小规模的多层平面框架结构上进行的实验测量(也经过实验室测试)以及在地震激励下的多层混凝土框架的理论模拟振动响应,举例说明了识别方法。在本文的末尾简要分析了大型结构的现场监控所带来的其他困难。

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