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Analysis of Rutting Index for Pavement Maintenance based on Driving Safety on Surface Gathered Water Consideration

机译:基于驾驶安全性的路面维修路面维修轨道指数分析

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A common distress in asphalt pavements, rutting is a primary influencing factor in cases of hydroplaning on rainy days. During hydroplaning events, steering stability performance of vehicles is drastically reduced Based on analysis of the lateral stability and the steering stability of vehicles traveling on the water's surface while hydroplaning, this paper presents a theoretical analysis for rutting length and depth severity classification. Through creation of a vehicle dynamics model and use of CarSim the theoretical variations of lateral offset and lateral acceleration under different speeds were simulated. Through this analysis, it was found that when a vehicle's speed exceeds 80 km/h, the lateral offset and lateral acceleration of the vehicle will increase noticeably and will exceed the safety threshold. In addition, for a given rutting scenario, an interaction effect among rutting depth, rutting length, and vehicle speed is also apparent. Ultimately, a vehicle's lateral offset and lateral acceleration under different rutting depths are recommended for use as factors/indicators of rutting length.
机译:沥青路面中的常见困难,车辙是在雨天水溶液中的案例中的主要影响因素。在水渗透事件期间,基于对水面上行驶的车辆在水面上行驶的车辆的转向稳定性的分析,车辆的转向稳定性性能大大​​降低,本文提出了用于车辙长度和深度严重程度分类的理论分析。通过创建车辆动力学模型和Carsim的使用,模拟了不同速度下横向偏移和横向加速的理论变化。通过该分析,发现当车辆的速度超过80km / h时,车辆的横向偏移和横向加速度将显着增加并且将超过安全阈值。另外,对于给定的车辙场景,车辙深度,车辙长度和车速之间的相互作用效果也是显而易见的。最终,建议使用不同车辙深度下的车辆的横向偏移和横向加速,以用作车辙长度的因素/指示器。

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