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MIX SPECIFIC RUTTING MODEL CALIBRATION IN COLORADO

机译:COLORADO中的混合特定车辙模型校准

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The Colorado Department of Transportation (CDOT) recently concluded a study to implement and adopt the American Association of State Highway and Transportation Officials (AASHTO) Mechanistic-Empirical Pavement Design Guide (MEPDG) and its accompanying software into its routine pavement design practice. Implementation of the MEPDG in Colorado required local calibration of the MEPDG distress and smoothness prediction models. This paper discusses the calibration of the "global" rutting model to account for Colorado's unique climate, traffic, and soils conditions as well as the various asphalt concrete (AC) mix types used in the State. A key challenge during the local calibration effort was to produce different rutting coefficients for each AC mix type, e.g., Marshall, Superpave, and polymer modified asphalt (PMA). Local calibration of the MEPDG global models using CDOT input data was done using nonlinear model optimization tool available in the SAS statistical software. AC rutting, unbound aggregate base rutting, and subgrade rutting global model coefficients were adjusted through local calibration. Four of the ten model coefficients were adjusted. The local calibration coefficient βr1 turned out to be different for each of the three primary CDOT AC. As expected, the PMA had the lowest value of the βr1 coefficient among three asphalt mixes, resulting in the lowest AC rutting. The goodness of fit and bias test results indicate an adequate goodness of fit with minimal bias. This local calibration effort improves the overall prediction accuracy of the rutting model and its standard error.
机译:科罗拉多州交通运输部(CDOT)最近完成了一项研究,以实施并将美国国家公路和运输官员协会(AASHTO)的机械-经验路面设计指南(MEPDG)及其随附的软件纳入其常规路面设计实践中。在科罗拉多州实施MEPDG,需要对MEPDG遇险和平滑度预测模型进行本地校准。本文讨论了“全球”车辙模型的校准,以说明科罗拉多州独特的气候,交通和土壤状况,以及该州使用的各种沥青混凝土(AC)混合类型。本地校准工作中的关键挑战是为每种AC混合类型(例如,马歇尔,Superpave和聚合物改性沥青(PMA))产生不同的车辙系数。使用CDOT输入数据对MEPDG全局模型进行本地校准是使用SAS统计软件中提供的非线性模型优化工具进行的。通过局部校准来调整AC车辙,未绑定的总基础车辙和路基车辙的全局模型系数。调整了十个模型系数中的四个。事实证明,对于三个主要CDOT AC中的每一个,本地校准系数βr1都不相同。正如预期的那样,在三种沥青混合料中,PMA的βr1系数最低,从而导致AC车辙最低。拟合优度和偏差测试结果表明,在最小偏差的情况下具有足够的拟合优度。这种局部校准工作提高了车辙模型及其标准误差的总体预测准确性。

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