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A Mathematical Model to Evaluate the Impact of the Maintenance Strategy on the Service Life of Flexible Pavements

机译:一种评价维修策略对柔性路面使用寿命的影响数学模型

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摘要

The structural failure of a flexible pavement occurs when the accumulated fatigue damage produced by all the vehicles that have passed over each section exceeds a certain threshold. For this reason, the service life of pavement can be predicted in terms of the damage caused by the passage of a single standard axle and the expected evolution of traffic intensity (measured in equivalent standard axles) over time. In turn, the damage caused by the passage of an axle depends on the vertical load exerted by the wheels on the pavement surface, as given by the technical standard in application, and the depths and mechanical characteristics of the layers that compose the pavement section. In all standards currently in application, the unevenness of the road surface is disregarded. Therefore, no dynamic effects are taken into consideration and the vertical load is simply given in terms of the static weight carried by the standard axle. However, it is obvious that the road profile deteriorates over time, and it has been shown that the increase in the pavement roughness, when considered, gives rise to important dynamic effects that may lead to a dramatic fall in the expected structural service life. In this paper, we present a mathematical formulation for the fatigue analysis of flexible pavements that includes the effects of dynamic axle loading. A pavement deterioration model simulates the sustained growth of the IRI (International Roughness Index) over time. Time is discretized in successive time steps. For each time step, a road surface generation model provides a profile that renders the adequate value of the IRI. A QHV (Quarter Heavy Vehicle) model provides the dynamic amplification function for the loads exerted on the road surface along a virtual ride. This function is conveniently averaged, what gives the value of the so-called effective dynamic load amplification factor (DLA); this is the ratio between the effective dynamic loading and the static loading at each time step. Finally, the damage caused by the passage of the standard axle can be evaluated in terms of the dynamic loading. The product of this damage times the number of equivalent standard axles gives the total fatigue damage produced in the time step. The accumulated fatigue damage at each moment is easily computed by just adding up the damage produced in all the previous time steps. The formulation has been implemented in the software DMSA (Dynamic & Maintenance Simulation App). This tool has been specifically developed for the evaluation of projects in applications for financing submitted to the European Investment Bank (EIB). DMSA allows for quantifying the expected structural service life of the pavement taking into account both the rise of the dynamic axle loads exerted by the traffic as the road profile deteriorates over time and the different preventive maintenance strategies to be taken into consideration.
机译:当通过每个部分通过的所有车辆产生的累积疲劳损坏超过一定阈值时,发生柔性路面的结构失败。因此,可以在单个标准轴通过通过随着时间的推移通过流量强度(在等效标准轴上测量)的预期演变而导致的损坏来预测路面的使用寿命。反过来,由轴通过引起的损坏取决于在路面表面上的车轮上施加的垂直载荷,如应用技术标准所给出的,以及构成路面部分的层的深度和机械特性。在目前申请的所有标准中,路面的不均匀性被忽略了。因此,不考虑动态效果,并且简单地以标准轴承载的静态重量赋予垂直载荷。然而,很明显,道路轮廓随着时间的推移而恶化,并且已经表明,当考虑时,路面粗糙度的增加产生了重要的动态效应,这可能导致预期的结构使用寿命中的剧烈落下。在本文中,我们提出了一种数学制定,用于柔性路面的疲劳分析,包括动态轴载荷的效果。路面劣化模型模拟了IRI(国际粗糙度指数)随着时间的推移持续增长。时间在连续的时间步骤中离散化。对于每个时间步骤,路面生成模型提供了一种轮廓,使IRI的足够值呈现。 QHV(四分之一重型车辆)模型提供了沿着虚拟骑行在路面上施加的负荷的动态放大功能。该功能平均方便,给出了所谓的有效动态负载放大因子(DLA)的值;这是每次步骤的有效动态负载和静态加载之间的比率。最后,可以根据动态载荷评估由标准轴通过的损坏。该损坏时间的产物相当标准轴的数量使得在时间步骤中产生的总疲劳损坏。只需在所有上一段时间步骤中添加损坏即可轻松计算每个时刻的累积疲劳损坏。该配方已在软件DMSA(动态和维护仿真应用程序)中实现。该工具已专门用于评估向欧洲投资银行(EIB)提交融资申请的项目。 DMSA允许量化路面的预期结构使用寿命,考虑到流量施加的动态轴载荷随着时间的推移而施加的动态轴载荷的升高以及要考虑的不同预防性维护策略。

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