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Experimental validation of a drive-by stiffness identification method for bridge monitoring

机译:用于桥梁监测的行进式刚度识别方法的实验验证

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摘要

An experimental investigation is carried out to verify the feasibility of using an instrumented vehicle to detect and monitor bridge dynamic parameters. The low-cost method consists of the use of a moving vehicle fitted with accelerometers on its axles. In the laboratory experiment, the vehicle-bridge interaction model consists of a scaled two-axle vehicle model crossing a simply supported steel beam. The bridge model also includes a scaled road surface profile. The effects of varying the vehicle model configuration and speed are investigated. A finite element beam model is calibrated using the experimental results, and a novel algorithm for the identification of global bridge stiffness is validated. Using measured vehicle accelerations as input to the algorithm, the beam stiffness is identified with a reasonable degree of accuracy.
机译:进行了一项实验研究,以验证使用仪表车辆检测和监测桥梁动态参数的可行性。低成本方法包括使用在其车轴上装有加速度计的移动车辆。在实验室实验中,车桥相互作用模型包括与简单支撑的钢梁相交的比例缩放的两轴车辆模型。桥梁模型还包括缩放的路面轮廓。研究了改变车辆模型配置和速度的影响。利用实验结果对有限元梁模型进行了校准,并验证了一种用于识别整体桥梁刚度的新颖算法。使用测得的车辆加速度作为算法的输入,可以以合理的准确度识别光束刚度。

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