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Estimating The Friction Performance of Hot Mix Asphalt Pavements Based on Aggregate Properties and Route Characteristics: Analysis, Modeling and Validation.

机译:基于骨料特性和路径特性估算热拌沥青路面的摩擦性能:分析,建模和验证。

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摘要

Traffic accidents are one of the major causes of death in the United States. In 2008 alone, more than 37,000 fatalities occurred, accounting for one fatality every thirteen minutes. More than one tenth of fatal accidents occur when pavements are wet and slippery. In wet conditions, a water film is created between the pavement surface and the tire, thereby reducing the amount of available friction.;There are several factors that affect the level and type of friction between tires and a wet pavement surface. Some of these factors are microtexture and macrotexture, age of pavement, seasonal and environmental factors, traffic level and composition, individual and blend aggregate properties, binder used in mix, and road location/geometry. The research presented in this dissertation explores the impact of aggregate and mixture properties as well as the role of route characteristics, such as traffic intensity and composition, on the friction performance of Hot Mix Asphalt (HMA) pavements.;In the research, various databases for construction, material, pavement management and traffic condition were examined. The data included 5 years of pavement friction readings, construction and material data, and traffic monitoring data. The research included reviewing aggregate quality requirements and friction measurements, and compiling, categorizing and examining the various databases to develop a working dataset/s. In addition, a methodology was developed to isolate and analyze data specific to a given roadway constructed using a known type of aggregate and mix material. The results were then used to estimate pavement friction service life in terms of cumulative traffic loading. Multivariate Regression methods were employed to establish the relationship between Friction Number (FN) and cumulative AADT, for specific aggregates.;The research also included establishing relationships between materialproperties/route characteristics and pavement friction, and investigating/developing a model that can be used to predict the friction performance of pavements based on these factors. Partial Least Squares (PLS) Regression, a type of Structural Equation Modeling (SEM) method, was used to extract factors from datasets in order to formulate, test and validate several models out of which the most significant model was selected.
机译:交通事故是美国主要的死亡原因之一。仅在2008年,就发生了37,000多人死亡,每13分钟造成1人死亡。当人行道湿滑时,致命事故的发生率超过十分之一。在潮湿的情况下,在路面和轮胎之间会形成水膜,从而减少可用的摩擦。;有几个因素会影响轮胎与潮湿的路面之间的摩擦程度和类型。这些因素中的一些因素是微观纹理和宏观纹理,路面使用年龄,季节和环境因素,交通水平和组成,单个和混合骨料的性质,混合中使用的粘合剂以及道路位置/几何形状。本文研究了骨料和混合料的性能以及道路特性(如交通强度和组成)对热拌沥青路面的摩擦性能的影响。对于建筑,材料,路面管理和交通状况进行了检查。数据包括5年的路面摩擦读数,建筑和材料数据以及交通监控数据。研究包括审查总体质量要求和摩擦测量,以及编译,分类和检查各种数据库以开发工作数据集。另外,开发了一种方法来隔离和分析使用已知类型的骨料和混合材料构造的给定道路的特定数据。然后将结果用于根据累积交通负荷估算路面摩擦使用寿命。采用多元回归方法建立了特定骨料的摩擦数(FN)与累积AADT的关系。该研究还包括建立材料特性/路线特性与路面摩擦之间的关系,并研究/开发可用于基于这些因素预测路面的摩擦性能。偏最小二乘(PLS)回归是一种结构方程模型(SEM)方法,用于从数据集中提取因子,以便制定,测试和验证几个模型,从中选择了最重要的模型。

著录项

  • 作者

    Awoke, Girum S.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 274 p.
  • 总页数 274
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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