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Simplified novel approach for estimating HMA overlay thickness schedule using long-term performance indicators

机译:使用长期性能指示灯估计HMA覆盖层厚度时间表的简化新方法

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摘要

A simplified novel approach for estimating the HMA overlay thickness is proposed in this paper for flexible pavement resurfacing schedules. The overlay thickness is mainly estimated from the difference between the existing asphaltic thickness and reduced asphaltic thickness. The reduced asphaltic thickness is estimated as the sum of two components: a bottom component unaffected by pavement distresses and reduced thickness of a top component affected by pavement distresses. The reduced thickness of the top component is estimated from multiplying its thickness after subtracting the cold milling thickness by an asphaltic remaining strength factor. The remaining strength factor is defined as a ratio of average distress rating (DR) associated with the pavement remaining service life and average DR associated with the entire service life. This ratio is raised to the power (K) to be estimated from the minimisation of sum of squared errors. The two required DR averages are estimated from the performance curve for a particular pavement project. The remaining strength factor can also be defined as a ratio of the average surface deflection and tolerable deflection at the surface (TDS) as deployed by the Caltrans mechanistic-empirical design approach. The reduced asphaltic thickness is mainly used to estimate the overlay thickness required at a specified service time. The two case studies presented have indicated the effectiveness of the proposed approach in estimating overlay thickness schedules with relatively low errors.
机译:在本文中提出了一种简化的用于估计HMA覆盖层的方法,用于柔性路面Resurfacing计划。覆盖层主要估计存在于现有沥青厚度和降低的沥青厚度之间的差异。将降低的沥青厚度估计为两个组分的总和:由路面疼痛未受影响的底部组件,并减少受路面疼痛影响的顶部成分的厚度。通过沥青剩余强度因子减去冷轧厚度之后,估计顶部组分的厚度的减小估计。剩余的强度因子被定义为与与整个使用寿命相关联的路面剩余使用寿命和平均DR相关的平均痛苦评级(DR)的比率。该比率升高到功率(k),以估计来自平方误差之和的最小化。从特定路面项目的性能曲线估计了两个所需的DR平均值。剩余的强度因子也可以被定义为由Caltrans机械经验设计方法部署的表面(TDS)的平均表面偏转和可容忍偏转的比率。降低的沥青厚度主要用于估计在指定的服务时间所需的覆盖层。提出的两种案例研究表明了所提出的方法在估计具有相对较低的误差的覆盖层厚度方案时的有效性。

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