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首页> 外文期刊>The international journal of pavement engineering >Pavement skid resistance as a function of pavement surface and aggregate texture properties
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Pavement skid resistance as a function of pavement surface and aggregate texture properties

机译:作为路面表面和骨料纹理特性的函数的路面滑动阻力

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Skid resistance depends on the macro- and micro-textural characteristics of pavement surface. Mean profile depth (MPD) is a widely used two-dimensional macro-texture indicator calculated from a single pavement surface profile, while pavement micro-texture is primarily affected by the characteristics of aggregates contained within the surface. In this study, twenty-two pavement sites, constructed using six common types of preventive treatments and eight typical sources of aggregates in Oklahoma, are selected as the field test beds. Pavement skid resistance and surface macro-texture data are collected in parallel at highway speeds using a grip tester and a high speed texture profiler, while aggregate properties under 3D are measured using a portable ultra-high resolution 3D laser imaging scanner. MPD values are calculated to represent surface macro-texture. Thirty-one 3D aggregate parameters in four categories (textural, feature, height, and material ratio & volume parameters) are investigated to characterise micro-texture attributes. The Pearson correlation coefficient matrix is computed within each category to exclude the parameters with strong correlations and remove their potential multi-collinearity during friction model development. Multivariate analysis is subsequently performed to examine the relationship between pavement skid resistance, and surface and aggregate texture properties. Eight texture parameters have showed statistical significance on pavement friction. Entropy (T(etp)textural parameter) and peak curvature (S(pc)feature based parameter) present the most significant influences on pavement friction, while MPD demonstrates the least impact. The developed model based on surface and aggregate texture properties can better predict pavement friction performance. The comprehensive analysis of texture properties could assist highway agencies understanding the appropriate characterisation of aggregates and developing aggregate selection guideline for optimised skid resistance.
机译:防滑抵抗取决于路面表面的宏观和微观纹理特征。平均轮廓深度(MPD)是由单个路面表面轮廓计算的广泛使用的二维宏观纹理指示器,而路面微观纹理主要受表面内包含的聚集体的特性影响。在本研究中,使用六种常见类型的预防性治疗和俄克拉荷马州八种典型的骨料来源构建的二十两条路面位点被选为现场试验台。路面平滑和表面宏观纹理数据在使用握持测试仪和高速纹理分析器的高速公路速度下并联收集,而使用便携式超高分辨率3D激光成像扫描仪测量3D下的聚合属性。计算MPD值以表示表面宏观纹理。研究了四个类别的3D聚合参数(纹理,特征,高度和材料比率和体积参数),以表征微纹理属性。在每个类别中计算Pearson相关系数矩阵,以排除具有强相关的参数,并在摩擦模型开发期间去除它们的潜在的多联轴性。随后进行多变量分析以检查路面平滑电阻和表面和骨料纹理特性之间的关系。八个纹理参数对路面摩擦显示出统计学意义。熵(T(ETP)纹理参数)和峰值曲率(基于PC)的参数)对路面摩擦的影响最大,而MPD表现出最小影响。基于表面和骨料纹理特性的开发模型可以更好地预测路面摩擦性能。纹理特性的综合分析可以帮助公路机构了解聚集体的适当表征和开发总体选择指南,以获得优化的防滑性。

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