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Predictive quality of the pavement ME design program for field performance of warm mix asphalt pavements

机译:温拌沥青路面的现场性能ME设计程序的预测质量

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High quality predictive program provides an alternative to assess the long-term performance of asphalt pavements if well-evaluated based on field performance. The asphalt pavement performance models embedded in the Pavement ME Design program were developed based on hot mix asphalt (HMA) pavements, and the predictive quality varies depending on specific conditions. The applicability of the Pavement ME Design program as well as the embedded performance models to warm mix asphalt (WMA) pavements is even unclear. In addition, the ability of the Pavement ME Design program in differentiating HMA and WMA performance, if any, has not been evaluated. Therefore, the objectives of this study are to determine the predictive quality of the Pavement ME Design program for the field performance of WMA pavements, and further to evaluate the capability of Pavement ME Design program in detecting performance difference between HMA and WMA pavements if there is any. A total of 43 asphalt pavements (both HMA and WMA) from 16 projects were evaluated based on their field measured and predicted performance, in terms of rutting, transverse cracking and top-down longitudinal cracking. Results indicate that (1) The Pavement ME Design program can predict the field rut depth well for HMA and WMA pavements, in terms of both numerical values and rankings. However, the software in general over-estimates the field rut depth; (2) The Pavement ME Design program cannot predict field transverse cracking or field longitudinal cracking correctly irrespective of pavement type; (3) The results suggest that the effect of moisture should be considered in the Pavement ME cracking models for both HMA and WMA pavements, and (4) Overall, the predictive quality of the Pavement ME Design program for HMA and WMA is similar, either in good or poor prediction results. The WMA technology does not fundamentally alter the behavior of asphalt materials in pavement application. We suggest treating WMA similarly as HMA while applying the Pavement ME Design program for performance prediction. However, the corresponding WMA material properties should be used as input values. (C) 2016 Elsevier Ltd. All rights reserved.
机译:如果根据现场性能进行了很好的评估,那么高质量的预测程序将为评估沥青路面的长期性能提供一种选择。基于热混合沥青(HMA)路面开发了嵌入在路面ME设计程序中的沥青路面性能模型,其预测质量根据特定条件而变化。路面ME设计程序以及嵌入式性能模型对热拌沥青(WMA)路面的适用性甚至还不清楚。此外,路面ME设计程序区分HMA和WMA性能(如果有)的能力尚未评估。因此,本研究的目的是确定WME路面现场性能的路面ME设计程序的预测质量,并进一步评估PME程序在检测HMA和WMA路面之间性能差异时的能力。任何。根据车辙,横向开裂和自上而下的纵向开裂等方面的实测和预测性能,对来自16个项目的43个沥青路面(HMA和WMA)进行了评估。结果表明:(1)路面ME设计程序可以从数值和等级方面很好地预测HMA和WMA路面的车辙深度。但是,该软件通常会高估车辙深度。 (2)不论路面类型如何,路面ME设计程序均无法正确预测现场横向裂缝或纵向裂缝。 (3)结果表明,在HMA和WMA路面的路面ME裂缝模型中都应考虑水分的影响,并且(4)总体而言,HMA和WMA的路面ME设计程序的预测质量相似,预测结果好坏。 WMA技术不会从根本上改变沥青在路面应用中的性能。我们建议在应用路面ME设计程序进行性能预测时,将WMA与HMA相似。但是,应将相应的WMA材料属性用作输入值。 (C)2016 Elsevier Ltd.保留所有权利。

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