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Evaluation of the Traffic Speed Deflectometer Data Using Simplified Deflection Model

机译:简化偏转模型评估交通速度偏转仪数据

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Falling Weight Deflectometer (FWD) has been used by many road agencies worldwide for structural evaluation of both flexible and concrete pavements since the 1980s. With the development of Traffic Speed Deflectometer (TSD), the laser-based deflectograph is increasing used to perform continuous bearing capacity measurement at a range of driving speeds. The two main advantages of the TSD technology are; its ability to carry out continuous deflection measurements rather than at discrete points and the tests can be carried out at traffic speed without the need for lane closure in the case a stationary device such as the FWD. The objective of this paper is to study the deflection basins generated by TSD on flexible pavements using Simplified Deflection Model (SDM). The study shows that TSD data can be modelled accurately using SDM that can be represented in a mathematical form ofY = K1exp (-r/K2). K1is equal to deflection atD0in micron andK2is the structural parameter at the respective sensor locationr. It is observed that the majority of the pavement sections possess nonlinear subgrade behaviour in the TSD deflection data. The dynamic effects generated by the TSD axle load are likely to be the reason for the pavements to exhibit subgrade nonlinearity. A comparison between the FWD and TSD data shows a high level of correlation and a mathematical model has been established for estimation of FWD deflections using the TSD data. The study also shows that he theoretical deflections generated by the SDM are in good agreement with the actual deflection data obtained from FWD test. Statistical analysis confirms that the SDM generated D0deflections are not significantly different from the D0deflections recorded by FWD device.
机译:自1980年代以来,世界范围内的许多公路部门都使用降重挠度计(FWD)来进行柔性和混凝土路面的结构评估。随着交通速度偏转仪(TSD)的发展,基于激光的偏转仪越来越多地用于在各种行驶速度下进行连续的承载能力测量。 TSD技术的两个主要优点是:它具有进行连续偏转测量的能力,而不是在离散点进行测量,并且在固定设备(例如FWD)的情况下,可以在不关闭车道的情况下以交通速度进行测试。本文的目的是使用简化挠度模型(SDM)研究TSD在柔性路面上产生的挠度盆地。研究表明,可以使用SDM精确建模TSD数据,而SDM可以以数学形式表示为Y = K1exp(-r / K2)。 K1等于微米D0处的挠度,K2是相应传感器定位器上的结构参数。可以看出,在TSD挠度数据中,大多数路面截面都具有非线性路基行为。 TSD轴重产生的动力效应很可能是路面显示路基非线性的原因。 FWD和TSD数据之间的比较显示出很高的相关性,并且已经建立了使用TSD数据估算FWD挠度的数学模型。研究还表明,SDM产生的理论挠度与从FWD测试获得的实际挠度数据非常吻合。统计分析证实,SDM生成的D0挠度与FWD设备记录的D0挠度没有显着差异。

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