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A binary logistic model for predicting the tertiary stage of permanent deformation of conventional asphalt concrete mixtures

机译:预测传统沥青混凝土混合物永久变形第三阶段的二进制逻辑模型

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摘要

Since the advent of Mechanistic-Empirical Pavement Design Guide (M-EPDG), characterisation of asphalt concrete (AC) mixtures using flow number remains the topic of interest for most of the literature. Consequently, many flow number models have been proposed in the literature, which only caters AC mixtures that attain the tertiary stage of permanent deformation (PD). The literature is devoid of any study that ascertain, whether an AC mix would attain the tertiary stage of PD or otherwise. As such, this study develops a binary logistic model as a function of volumetric and performance parameters of field and laboratory prepared AC mixtures using the standard maximum likelihood procedure. The logistic model specification is best suited to predict the mix probability of attaining the tertiary stage of PD. More specifically, an increase in air voids and percent passing sieve #200 in the mix and relatively low value of dynamic modulus translated into an increased probability of attaining the tertiary stage of PD. The field and laboratory mixtures are compared using the binary logistic model and a sensitivity analysis is also performed on the model. The comparison reveals the difference in both the type of mixtures, and suggests optimising and customising the laboratory mixtures to the field conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:自《机械-经验式路面设计指南》(M-EPDG)问世以来,使用流量数表征沥青混凝土(AC)混合物仍然是大多数文献关注的话题。因此,文献中提出了许多流量模型,仅能满足达到永久变形(PD)第三阶段的AC混合物的需要。文献中没有任何确定AC混合物是否会达到PD的第三级的研究。因此,本研究使用标准最大似然方法开发了一个二进制逻辑模型,该模型是现场和实验室制备的交流混合物的体积和性能参数的函数。逻辑模型规范最适合预测达到PD第三阶段的混合概率。更具体地,混合物中空气空隙和通过筛#200的百分数的增加以及动态模量的相对较低的值转化为达到PD的第三级的可能性增加。使用二元逻辑模型比较田间和实验室混合物,并对模型进行敏感性分析。比较结果揭示了两种混合物类型的差异,并建议根据现场条件优化和定制实验室混合物。 (C)2019 Elsevier Ltd.保留所有权利。

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