首页> 外文期刊>Journal of Transportation Engineering >Robust Deflection Indices from Traffic-Speed Deflectometer Measurements to Predict Critical Pavement Responses for Network-Level Pavement Management System Application
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Robust Deflection Indices from Traffic-Speed Deflectometer Measurements to Predict Critical Pavement Responses for Network-Level Pavement Management System Application

机译:从交通速度偏转仪测量获得的稳健偏转指标,以预测网络层路面管理系统应用中的关键路面响应

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Traffic-speed deflectometers (TSD) are used in several countries to evaluate the pavement structural condition at the network level. Fatigue and rutting strains are commonly used as pavement critical responses in mechanistic-empirical design procedures to predict pavement structural performance. For successful pavement management system (PMS) application, robust indices that can be readily computed from TSD measurements and best related to the pavement critical responses should be identified. In this study, a comprehensive sensitivity analysis on deflection basin indices and their correlations with fatigue and rutting strains is performed using a range of pavement structures. A commercially available program was used in the first part of the study to compute dynamic deflection basins and evaluate the effects of material properties and vehicle speed on the indices. The indices that best relate to critical responses were identified from the software analyses and subsequently evaluated with a wider range of pavement structures analyzed using a layered linear-elastic program. Results from the TSD accuracy field evaluation were then used to further identify the robust indices in light of measurement accuracy. The study found that classifying pavement structures based on asphalt concrete (AC) thickness would be an appropriate selection for network-level PMS applications. Evaluation of 67 deflection basin indices showed that deflection slope indices DSI200-300 (D-200-D-300) and DSI300-900 (D-300-D-900) were well related indices with fatigue and rutting strains, respectively, and were selected to establish relationships with critical pavement responses for pavement categories based on AC layer thickness. (C) 2016 American Society of Civil Engineers.
机译:在一些国家/地区,使用行车速度偏转仪(TSD)来评估网络层的路面结构状况。在机械经验设计程序中,疲劳和车辙应变通常用作路面的临界响应,以预测路面的结构性能。对于成功的路面管理系统(PMS)应用,应确定可从TSD测量值轻松计算并与路面关键响应最相关的稳健指标。在这项研究中,使用一系列路面结构对挠度盆地指数及其与疲劳和车辙应变的相关性进行了综合敏感性分析。在研究的第一部分中使用了一个可商购的程序来计算动态偏转盆并评估材料性能和车速对指标的影响。从软件分析中可以确定与临界响应最相关的指标,然后使用分层线性弹性程序对所分析的路面结构进行更广泛的评估。然后,将TSD精度现场评估的结果用于根据测量精度进一步确定稳健指标。研究发现,基于沥青混凝土(AC)厚度对路面结构进行分类将是网络级PMS应用程序的合适选择。对67个挠度盆指数的评估表明,挠度斜率指数DSI200-300(D-200-D-300)和DSI300-900(D-300-D-900)分别是与疲劳和车辙应变相关的指数,并且分别为选择此选项可根据AC层厚度与路面类别的关键路面响应建立关系。 (C)2016年美国土木工程师学会。

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