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Using Rocking Frequencies of Bridge Piers for Scour Monitoring

机译:利用桥墩摇摆频率进行冲刷监控

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摘要

In this study, scour-based vibrations of bridge piers are investigated using a bridge model in a water flume. First, the eigenmode corresponding to the measured frequencies of pier-like structures is identified. Second, the effect of the pier-deck interaction is studied. Finally, a theoretical model is proposed to characterize the pier vibration and identify its input parameters. To this end, experiments were conducted and a laboratory-scale model pier was tested in two configurations: single piers and two piers in a bridge configuration. The experimental results enable the identification of the modal shape and indicate that the deck decreases significantly the pier's frequency. In parallel, a theoretical model was proposed to model the pier, where the soil was modeled with both lateral springs along the pier and a rotational spring at the base. The spring stiffnesses were then identified using a three-dimensional finite element model. The results obtained from the theoretical and numerical models are in good agreement with the experimental results with the bridge pier in the two tested configurations. The obtained theoretical, numerical and experimental results were compared to experimental data found in the literature for further validation.
机译:在该研究中,使用水管中的桥模型研究了桥接桥的基于冲刷的振动。首先,识别与测量的码头结构频率相对应的特征模。其次,研究了墩甲板相互作用的效果。最后,提出了理论模型来表征墩振动并识别其输入参数。为此,进行了实验,并用两种配置测试了实验室级模型码头:桥接配置中的单个码头和两个码头。实验结果使识别模态形状并表明甲板显着降低了码头的频率。并行地,提出了一种理论模型来模拟码头,其中土壤与沿码头的两个横向弹簧和基座的旋转弹簧进行建模。然后使用三维有限元模型识别弹簧刚度。从理论和数值模型获得的结果与两种测试配置中的桥墩具有实验结果良好。将获得的理论,数值和实验结果与文献中发现的实验数据进行比较,以进一步验证。

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