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Heavy vehicle road wear on sealed unbound granular roads

机译:封闭的无约束颗粒状道路上的重型车辆道路磨损

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摘要

A sound basis for estimating the load-related road wear due to heavy vehicles on the road network is needed for estimating varying heavy vehicle road user charges on Australia's arterial roads. A network-level equation for estimating the percentage load-related road wear was developed for the typical good-quality uncracked sealed unbound pavements in Australia's sealed arterial road network using a network-level roughness deterioration model based on observational and experimental data. The equation estimated that the percentage load-related road wear varied with changes to the traffic load and pavement strength, and to a much lesser extent an environmental coefficient. This equation gave different estimates of percentage load-related road wear than those based on the HDM-4 roughness deterioration model. The environmental term in the roughness deterioration equation for sealed granular pavements was found to be more appropriate than the environmental term used in the HDM-4 roughness deterioration equation. This outcome implies that the roughness deterioration equation for sealed granular pavements is likely to be more appropriate for predicting Australia's sealed granular pavement deterioration than the HDM-4 roughness deterioration model which was originally based on the deterioration of asphalt-bound pavements.
机译:需要一个合理的基础来估算道路网络上重型车辆引起的与负荷相关的道路磨损,以便估算澳大利亚主干道路上变化的重型车辆道路使用者费用。使用基于观测和实验数据的网络级粗糙度恶化模型,为澳大利亚密封干式公路网中典型的优质无裂缝密封未粘结路面开发了网络级方程,用于估算与载荷相关的道路磨损百分比。该方程式估计,与负荷有关的道路磨损百分比随交通负荷和路面强度的变化而变化,而环境系数的变化要小得多。与基于HDM-4粗糙度恶化模型的公式相比,该公式给出了与负载相关的道路磨损百分比的估计值。发现密封粒状路面的粗糙度劣化方程中的环境术语比用于HDM-4粗糙度劣化方程中的环境术语更合适。这一结果表明,与密封沥青路面的粗糙度劣化方程相比,最初基于沥青结合路面的劣化的HDM-4粗糙度劣化模型更适合于预测澳大利亚的密封颗粒路面劣化。

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