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Impact of subgrade soils on pavement roughness

机译:路基土壤对路面粗糙度的影响

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摘要

To highlight the impact of subgrade soil variability on the pseudo-profile and roughness at the end of road construction, a research program has been carried out at the Laboratoire sur les chaussees et materiaux bitumineux at Ecole de technologie superieure (ETS). The analysis is intended to highlight the variability of materials' characteristics according to the longitudinal and vertical axes of the road. The proposed approach aims to calculate potential settlement variations through a global numerical simulation of a road section, in a bid to identify the expected pseudo-profile and to quantify the roughness quality by calculating the international roughness index (IRI). The proposed methodology was tested at a new road construction project in Quebec. Here, the results of the simulations are compared to the details of the actual pseudo-profile obtained at the end of road construction for the project under study. It is shown, through the finite difference modeling of the mechanical behavior of the subgrade soil (FLAC calculation code), that the long wavelength pseudo-profile of the road at the end of construction can be determined, and that it is strongly influenced by subgrade soil variability. This article presents a second analysis carried out by Vaillancourt and Perraton in 2015 as part of a study of the impact of subgrade soils on pavement roughness.
机译:为了强调路基施工结束时路基土壤变异性对拟剖面和粗糙度的影响,已经在法国高等技术学院(ETS)的Labouratoire sur les chaussees et materiaux bitumineux实验室进行了一项研究计划。该分析旨在根据道路的纵向和垂直轴突出显示材料特性的可变性。拟议的方法旨在通过路段的全局数值模拟来计算潜在的沉降变化,以识别预期的伪轮廓并通过计算国际粗糙度指数(IRI)来量化粗糙度质量。拟议的方法论在魁北克的一个新道路建设项目中进行了测试。在此,将模拟结果与正在研究的项目的道路建设结束时获得的实际伪轮廓的详细信息进行比较。通过对路基土的力学行为进行有限差分建模(FLAC计算代码)表明,可以确定施工结束时道路的长波伪剖面,并且路基对路段的影响很大。土壤变异性。本文介绍了Vaillancourt和Perraton在2015年进行的第二次分析,作为路基土壤对路面粗糙度影响的研究的一部分。

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