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Transmissibility performance assessment for drive-by bridge inspection

机译:通过桥接检查的传导性能评估

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This paper presents results of numerical and experimental investigations for the feasibility assessment of drive-by bridge inspection, where the health status of a bridge is solely identified from the dynamic response of an inspection vehicle, passing over a target bridge. To this aim, a novel metric based on the transmission performance between the vehicle and the bridge is proposed, and it is demonstrated that the vehicle having a higher sensitivity index has superior performance, in moving state, to identify bridge frequencies, and consequently separate different states of a bridge from one another. In addition to numerical validation, experimental validation from a laboratory-based experiment is presented, where a two-axle vehicle model is adopted as an inspection vehicle and a single-span steel beam is employed as a target bridge. Vibration data are collected using three highly sensitive accelerometer sensors installed on the vehicle, one at the middle of each axle, i.e., the front axle, and the rear axle, and the third one at the center of gravity of the vehicle, to measure the pitching and bouncing modes of the vehicle. The contributions and the key findings of the work are as follows: First, this paper presents one of the early attempts of experimentally validating the feasibility of drive-by bridge inspection to identify an induced change in the structure of a bridge which has caused less than 2% variation in the fundamental frequency. Second, a novel index for quantifying the performance of transmission between the bridge and the vehicle is proposed. It is verified that a vehicle with a higher sensitivity index captures more bridge-related information, hence making the bridge modal frequencies more identifiable. Third, through experiments, successful identification of the first three vibration modes of the bridge, obtained from the moving vehicle tests, is verified under the condition of constant and slow speed, when there is ongoing excitation on the bridge. Fourth, the indices and criteria presented herein would be helpful in designing a real drive-by inspection system which can be potentially used for drive-by bridge inspection of a network of bridges with similar structural design in practice.
机译:本文介绍了用于逐桥检查的可行性评估的数值和实验研究的结果,其中桥的健康状况仅仅从检测车辆的动态响应中识别,通过目标桥梁。为此目的,提出了一种基于车辆和桥梁之间​​的传输性能的新颖度量,并且证明具有更高灵敏度指数的车辆具有卓越的性能,在移动状态下识别桥梁频率,因此分离不同桥梁的各国彼此。除了数值验证之外,提出了一种基于实验室的实验的实验验证,其中采用了双轴车型作为检查车辆,并且使用单跨度钢梁作为目标桥。使用安装在车辆上的三个高度敏感的加速度计传感器的振动数据,每个轴的中间一个,即前桥和后桥,以及车辆重心的第三个,测量车辆的俯仰和弹跳模式。这项工作的贡献和关键结果如下:首先,本文提出了通过实验验证驱动桥检查的可行性的早期尝试之一,以确定导致桥梁结构的诱导变化基本频率的2%变化。其次,提出了一种用于量化桥梁与车辆之间传输性能的新索引。验证了具有更高灵敏度指标的车辆捕获更多的桥接信息,因此使桥梁模态频率更可识别。第三,通过实验,在桥梁上存在持续激发的情况下,通过移动车辆测试获得的前三种桥梁的前三种振动模式的成功识别。第四,本文所提供的指数和标准在设计实际驱动器的基础上有助于设计,该系统可能是在实践中具有相似结构设计的桥梁网络的驱动器。

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