Comparative Evaluation of Falling Weight Deflectometer, Traffic Speed Deflectometer and Rapid Pavement Tester in Deflection Measurement

Arman Hamidi, Ali Foroutan Mirhosseini, Inge Hoff, Helge Mork, Kim Rune Bragstad Grannes, Per Otto Aursand
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Abstract

This study intends to compare deflections obtained from traffic speed deflection devices (TSDDs) with the deflections of the falling weight deflectometer (FWD). For this purpose, deflections were measured on five sections of three roads in the Norwegian road network using traffic speed deflectometer (TSD) and rapid pavement tester (Raptor). Deflections were also measured using FWD at three different temperatures and the curves of FWD deflections versus temperature (FWD temperature-dependent deflection curves) were obtained. These curves were used to correct the effect of temperature difference. It was shown that both TSD and Raptor have the potential to detect structural deficiencies; however, TSD had better consistency with FWD with regard to deflection values and deflection basin parameters. A refinement was then made to make the Raptor data more consistent with FWD data. Calculating bearing capacity before and after refinement revealed that refining Raptor data can substantially increase the consistency between Raptor and FWD.
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挠度测量中落锤式挠度仪、行车速度挠度仪和快速路面测试仪的比较评估
本研究旨在比较行车速度偏转装置(TSDD)与落重式偏转仪(FWD)的偏转情况。为此,使用行车速度变形计(TSD)和快速路面测试仪(Raptor)对挪威公路网中三条公路的五个路段进行了挠度测量。此外,还使用 FWD 测量了三种不同温度下的挠度,并得出了 FWD 挠度随温度变化的曲线(FWD 温度挠度曲线)。这些曲线用于校正温差的影响。结果表明,TSD 和 Raptor 都具有检测结构缺陷的潜力;但在挠度值和挠度盆参数方面,TSD 与 FWD 的一致性更好。随后进行了改进,使 Raptor 数据与 FWD 数据更加一致。对改进前后的承载力进行计算后发现,改进 Raptor 数据可以大大提高 Raptor 与 FWD 数据的一致性。
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