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Comparative evaluation of mechanistic-empirical performance models as a tool for establishing pavement performance specifications

机译:机械-经验性能模型的比较评估,作为建立路面性能规范的工具

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摘要

In this study, the fatigue performance of 27 mixtures representing various as-built pavement conditions is evaluated using two advanced mechanistic-empirical (M-E) models, layered viscoelastic continuum damage (LVECD) and AASHTOWare Pavement ME Design (Pavement ME)) and one mixture-based index parameter obtained from fatigue testing. The performance trends among the two M-E models are compared by performing simulation on thick and thin pavement sections. Moreover, the performance ranking based on a mixture index parameter is compared to the M-E models. The results from the M-E models clearly show the need for increased compactive effort to achieve the best performance. For the majority of the mixtures, the rankings of the different models are similar. In almost all instances, the rankings based on the M-E models and index parameters were able to distinguish the best and worst performing pavements similarly. This indicates that the approaches can be used interchangeably for differentiating mixture performance between different asphalt and air void levels.
机译:在这项研究中,使用两种先进的力学-经验(ME)模型,分层粘弹性连续体损伤(LVECD)和AASHTOWare路面ME设计(路面ME))评估了代表各种建成状态的27种混合物的疲劳性能。疲劳测试获得的基于指标的指标参数。通过在厚和薄路面上进行仿真,比较了两种M-E模型之间的性能趋势。此外,将基于混合指数参数的性能排名与M-E模型进行比较。 M-E模型的结果清楚地表明,需要加大压实力度以获得最佳性能。对于大多数混合物,不同模型的排名是相似的。在几乎所有情况下,基于M-E模型和指标参数的排名都可以类似地区分最佳和最差路面。这表明这些方法可以互换使用,以区分不同沥青和空气空隙水平之间的混合性能。

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