公路弯道段路面径流与行车安全评价

Yan-fen Geng, Huanyun Zhou, Xiaojing Gong, Yaolu Ma, Xianhua Chen
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引用次数: 0

摘要

为了分析曲线段路面径流的时空变化规律,利用二维数值模拟模型得到了凹曲线段和圆曲线段上的径流深度分布。与经验方程和一维模型相比,经现场数据验证的二维模型能更准确地描述路面走向。比较了自由排水和中心线排水在凹断面和圆曲线断面上的径流量。结果表明,二维模型是分析中心线排水的必要条件。径流深度可以通过合理的路缘高度和位置间隔来控制。排水类型影响了近巷径流深度的变化,中线排水下凹断面最大水深可达80 mm以上,圆曲线断面最大水深可达近60 mm。除了现有的打滑结果外,还应考虑车轮迹线的径流深度差来评估行车安全性。在径流深度小于胎面深度(7mm)的情况下,当深度差大于6mm时,会发生侧滑。当径流深度大于胎面深度时,一旦深度差超过4mm就会发生侧滑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Pavement Runoff and Driving Safety on Highway Curve Segment
Runoff depth distribution on the concave and circular curve sections is obtained from a two-dimensional numerical simulating model in order to analyze the temporal and spatial variation of the pavement runoff on the curve section. The two-dimensional model verified by the field data can depict the alignment of pavement more accurately as compared to the empirical equation and a one-dimensional model. The runoff on the concave section and circular curve section is compared for the free water drainage and centerline drainage. Results show that a two-dimensional model is essential for the analysis of the centerline drainage. The runoff depth can be controlled by a reasonable curb height and location interval. The drainage type affects the variation of the runoff depth on the nearside lane, and the maximum water depth can be up to more than 80 mm on the concave section and nearly 60 mm on the circular curve section under centerline drainage. Besides the existing hydroplaning results, the runoff depth difference of the wheel trace should be considered to evaluate driving safety. Sideslip will occur when the depth difference becomes more than 6 mm under condition that the runoff depth is less than the tread depth (7 mm). When the runoff depth is more than the tread depth, sideslip will occur once the depth difference exceeds 4 mm.
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