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Rapid assessment of foundation scour using the dynamic features of bridge superstructure

机译:利用桥梁上部结构的动力特性快速评估基础冲刷

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摘要

The ability to ensure the resiliency and to predict the future performance of coastal bridges is very dependent on identifying damages in critical components of the bridge rapidly after an event. Traditional vibration based damage detection efforts focused mainly on the detection of fatigue cracking. Although detecting fatigue cracking is important, it does not contribute significantly to the total number of bridge failures in the United States. A critical review of the up-to-date literature showed that hydraulic loading, including scour, is responsible for about 50% of the failed bridges over the period of 1989-2000. To this end, the primary focus of this research is the development and evaluation of damage detection techniques capable of rapidly identifying and possibly quantifying the extent of deterioration of critical coastal bridges due to scour at submerged piers without underwater instrumentation. This paper illustrates, for the first time, the use of horizontally-displaced mode shapes and the calculated change in the dynamic flexibility features to identify scour from the response of the bridge superstructure.
机译:确保弹性并预测沿海桥梁的未来性能的能力非常依赖于事件发生后迅速识别桥梁关键部件的损坏。传统的基于振动的损伤检测工作主要集中在疲劳裂纹的检测上。尽管检测疲劳裂纹很重要,但它对美国桥梁故障的总数没有显着影响。对最新文献的严格审查显示,在1989-2000年期间,水力荷载(包括冲刷)占了失败桥梁的约50%。为此,这项研究的主要重点是损伤检测技术的开发和评估,该技术能够快速识别并可能量化由于水下码头冲刷而导致的关键沿海桥梁的劣化程度,而无需使用水下仪器。本文首次说明了水平位移模式形状的使用和动态柔度特征的计算变化,以便根据桥梁上部结构的响应识别冲刷。

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