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Simulation of unbound material resilient modulus effects on mechanistic-empirical pavement designs

机译:模拟未绑定材料弹性模量对机械-经验路面设计的影响

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摘要

The variability of resilient modulus (M R) of unbound materials and subgrade due to laboratory test conditions affect pavement performance and designs. The performance-based mechanistic-empirical pavement design guide (MEPDG) is gaining more popularity in recent years for pavement design use. However, limited research efforts have quantitatively studied M R effects based on ME models. This research targets to evaluate the influences of M R variability on pavement performance and designs based on the MEPDG performance models. With a normal-distribution of M R seed values, pavement responses were computed with a layer-elastic analysis model, pavement performance was then predicted using MEPDG models, and design variability was studied via Monte Carlo simulation. Results indicate that the relationship between layer design thickness and M R varies from almost linear to nonlinear, which is highly dependent on the pavement structure and material properties. For the evaluated specific pavement structure and range of M R values, the least susceptible is the HMA design thickness as a function of M R under fatigue with a design Coefficient of Variance (CV) of 7.51 %, while the most susceptible is the base design thickness as a function of M R also under fatigue with a CV of 54.32 %. The combined effect of both rut depth and fatigue life considering the variability of both base and subgrade results in a design CV of 22.58 % for asphalt layer and 26.08 % for base layer. When using a weaker base layer or a thinner HMA layer, the modeled thickness design CV has changed −4.19 to 1.14 %.
机译:由于实验室测试条件的影响,未粘结材料和路基的弹性模量(M R)的变化会影响路面性能和设计。近年来,基于性能的机械-经验路面设计指南(MEPDG)在路面设计应用中越来越受欢迎。然而,有限的研究工作已经基于ME模型定量研究了M R效应。本研究旨在评估M R变异性对路面性能的影响,并基于MEPDG性能模型进行设计。利用M R种子值的正态分布,使用层弹性分析模型计算路面响应,然后使用MEPDG模型预测路面性能,并通过蒙特卡洛模拟研究设计变异性。结果表明,层设计厚度与M R之间的关系从几乎线性变为非线性,这在很大程度上取决于路面结构和材料特性。对于评估的特定路面结构和MR值范围,最不易受影响的是HMA设计厚度作为疲劳下MR的函数,设计方差系数(CV)为7.51%,而最易受影响的是基础设计厚度疲劳时MR的功能也是如此,CV为54.32%。车辙深度和疲劳寿命的综合影响(考虑基础和路基的变化)导致沥青层的设计CV为22.58%,基础层的设计CV为26.08%。当使用较弱的基础层或较薄的HMA层时,建模的厚度设计CV已将−4.19%更改为1.14%。

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