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The role of predictive models for resilient modulus of unbound materials in pavement FWD-deflection assessment

机译:未结合材料的弹性模量预测模型在路面FWD挠度评估中的作用

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摘要

The unbound materials in pavements are stress dependent and any changes in the moisture content will change the stress level and, therefore, the material behaviour. The objectives of this paper are to 1) investigate the stress dependency coupled with moisture sensitivity of the unbound materials on the estimated in-situ Falling Weight Deflectometer (FWD) deflection response; and 2) determine the most appropriate resilient modulus predictive model to predict the stiffness of the unbound materials without conducting backcalculation analysis. In the proposed approach, one stress-based constitutive model and one approximate empirical predictive model were evaluated in conjunction with the predicted and measured soil moisture content profiles in eight different unbound material types. Measured FWD data at four Long-Term Pavement Performance-Seasonal Monitoring Programme (LTPP-SMP) locations in Maine, Minnesota, Texas and Montana were used to estimate the in situ measured deflection. Then, layer elastic analysis was conducted using the soil moisture profile, asphalt temperature, material physical properties, groundwater table and depth to bedrock to examine the sensitivity of each model in the pavement response. The findings show that for non-plastic soil materials, the presented empirical model is adequate to predict the in-situ FWD deflection. In contrast, both approximate and stress-dependent models overestimate the in-situ pavement surface deflection for the plastic soils evaluated in this study.
机译:人行道中未结合的材料取决于应力,水分含量的任何变化都会改变应力水平,从而改变材料的性能。本文的目的是:1)研究未结合材料的应力依赖性以及对估计的原位落锤挠度计(FWD)挠度响应的湿度敏感性;和2)确定最合适的弹性模量预测模型,以在不进行反计算分析的情况下预测未粘结材料的刚度。在所提出的方法中,结合了基于预测和实测的八种未结合物质类型中的土壤水分含量曲线,评估了一种基于应力的本构模型和一种近似的经验预测模型。在缅因州,明尼苏达州,德克萨斯州和蒙大纳州的四个长期路面性能季节监测程序(LTPP-SMP)位置处测得的FWD数据用于估算现场测得的挠度。然后,使用土壤水分剖面,沥青温度,材料物理特性,地下水位和基岩深度进行层弹性分析,以检验每种模型在路面响应中的敏感性。研究结果表明,对于非塑性土壤材料,所提出的经验模型足以预测原位FWD挠度。相比之下,本研究评估的近似模型和应力依赖模型都高估了塑性土的原位路面表面挠度。

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