Eliminating the Influence of Axle Parameters in Influence Line Identification

Qingqing Zhang, Qianlong Liu, Li Dai, Qiang Liu
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Abstract

Accurate and rapid acquisition of the strain influence line of continuous beam plays a positive role in promoting the wide application of structural health monitoring. The structural response obtained from the sensors is used to estimate the strain influence line. However, most estimation methods ignore the influence of axle parameters on the structural response, resulting in a large error in identifying the strain influence line. This paper presents a method for eliminating the influence of axle parameters of moving vehicles on strain responses to estimate the strain influence line of continuous beams based on the long-gauge strain sensing technology. By analysing the mechanical characteristics of the multi-span continuous beam, a theoretical strain influence line expression is first established to obtain the strain influence line of the continuous beam accurately. The structural response only caused by axle weight, obtained by eliminating the influence of axle parameters, is then estimated for calibrating the theoretical strain influence line. Finally, different lane tests are also considered to solve the influence of different transverse position relations on the proposed method between the monitoring unit and the lane. Finally, numerical simulations are adopted to illustrate the effectiveness of the proposed identification method by simulating the strain time histories induced by a multi-axle vehicle. A field test also demonstrates the validity and feasibility of this method.
影响线识别中轴参数影响的消除
准确、快速地获取连续梁应变影响线对促进结构健康监测的广泛应用具有积极作用。由传感器得到的结构响应被用来估计应变影响线。然而,大多数估计方法忽略了轴参数对结构响应的影响,导致在识别应变影响线时误差较大。提出了一种基于长径应变传感技术的消除运动车辆轴参数对应变响应影响的连续梁应变影响线估计方法。通过分析多跨连续梁的受力特性,首先建立了理论应变影响线表达式,从而准确地得到了多跨连续梁的应变影响线。然后估计仅由轴重引起的结构响应,通过消除轴参数的影响来校准理论应变影响线。最后,还考虑了不同车道的测试,以解决监控单元与车道之间不同横向位置关系对所提方法的影响。最后,通过对多轴车辆应变时程的仿真,验证了所提识别方法的有效性。现场试验也验证了该方法的有效性和可行性。
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