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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Critical evaluation of factors on extracting multiple bridge frequencies from drive-by measurements
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Critical evaluation of factors on extracting multiple bridge frequencies from drive-by measurements

机译:对从路过式测量中提取多个电桥频率的因素进行关键评估

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The drive-by monitoring technique for bridge dynamic properties extraction from the vibration response of the instrumented test vehicle presents several practical benefits. In this paper, a detailed numerical parametric study is conducted to investigate the individual and combined effect of critical factors such as vehicle frequency (dependent on vehicle mass and vehicle stiffness), vehicle damping, vehicle speed, bridge surface roughness, and ongoing traffic on extracting multiple bridge frequencies from the moving vehicle responses. This study helps in providing guidelines for designing a robust field drive-by test vehicle applicable to the majority of bridges and to develop a reliable vehicle scanning method for bridge damage diagnosis. From the numerical investigations, the results show that the identification of multiple bridge frequencies from the response of the test vehicle is largely possible when the vehicle is designed with a frequency greater than the interested higher bridge frequency. Low vehicle speed is recommended to reduce the camel hump phenomenon observed at higher bridge frequencies. Due to the absence of the overshadowing effect of vehicle frequency, high vehicle damping and contact point response serve as a better feature to capture significant dynamics of the bridge. The ongoing traffic suppresses the high-frequency components generated by bridge surface roughness and proves beneficial for the extraction of multiple bridge frequencies.
机译:从仪表测试车辆的振动响应中提取桥梁动态特性的驾驶监控技术具有几个实际优势。本文进行了详细的数值参数研究,研究了车辆频率(取决于车辆质量和车辆刚度)、车辆阻尼、车速、桥梁表面粗糙度和持续交通等关键因素对从移动车辆响应中提取多个桥梁频率的单独和综合影响。本研究有助于为设计适用于大多数桥梁的鲁棒现场驾车测试车辆提供指导,并开发一种可靠的车辆扫描方法进行桥梁损坏诊断。从数值研究结果表明,当车辆设计的频率大于感兴趣的更高电桥频率时,从测试车辆的响应中识别出多个电桥频率在很大程度上是可能的。建议降低车速,以减少在较高桥频下观察到的驼峰现象。由于没有车辆频率的遮蔽效应,高车辆阻尼和接触点响应是捕捉桥梁显着动态的更好特征。持续的交通抑制了桥梁表面粗糙度产生的高频分量,并被证明有利于提取多个桥梁频率。

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