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The Effect of Flexible Pavement Mechanics on the Accuracy of Axle Load Sensors in Vehicle Weigh-in-Motion Systems

机译:柔性路面力学对车辆动态称重系统中轴载荷传感器精度的影响

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摘要

Weigh-in-Motion systems are tools to prevent road pavements from the adverse phenomena of vehicle overloading. However, the effectiveness of these systems can be significantly increased by improving weighing accuracy, which is now insufficient for direct enforcement of overloaded vehicles. Field tests show that the accuracy of Weigh-in-Motion axle load sensors installed in the flexible (asphalt) pavements depends on pavement temperature and vehicle speeds. Although this is a known phenomenon, it has not been explained yet. The aim of our study is to fill this gap in the knowledge. The explanation of this phenomena which is presented in the paper is based on pavement/sensors mechanics and the application of the multilayer elastic half-space theory. We show that differences in the distribution of vertical and horizontal stresses in the pavement structure are the cause of vehicle weight measurement errors. These studies are important in terms of Weigh-in-Motion systems for direct enforcement and will help to improve the weighing results accuracy.
机译:动态称重系统是防止路面超载的不利现象的工具。但是,通过提高称量精度可以显着提高这些系统的效率,这对于直接执行超载车辆是不够的。现场测试表明,安装在柔性(沥青)路面上的“动态称重”轴重传感器的精度取决于路面温度和车速。尽管这是一种已知现象,但尚未进行解释。我们研究的目的是填补这一知识空白。本文中对这种现象的解释是基于路面/传感器力学以及多层弹性半空间理论的应用。我们表明,路面结构中垂直应力和水平应力的分布差异是造成车辆重量测量误差的原因。这些研究对于直接执行动态称重系统很重要,将有助于提高称量结果的准确性。

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