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Determining thermal properties of asphalt concrete using field data and laboratory testing

机译:使用现场数据和实验室测试确定沥青混凝土的热性能

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摘要

Recently developed pavement design guide, Mechanistic-Empirical Pavement Design Guide (MEPDG), uses thermal properties such as Coefficient of Thermal Contraction or Expansion (CTC or CTE), thermal conductivity (k) and specific heat capacity (C) as inputs to predict pavement distresses such as thermal cracking and aging. To this day, thermal properties of asphalt concrete have been determined based on laboratory testing. This study determines CTC and CTE using field collected strain and temperature data from an instrumented pavement section on Interstate 40 at mile post 141 near Albuquerque, New Mexico, USA. Average CTC and CTE values of asphalt concrete are determined to be 2.69 × 10~(-5) per ℃ and 2.42 × 10~(-5) per ℃ in fall (October-November) and 2.47 × 10~(-5) per ℃ and 2.77 × 10~(-5) per ℃ in winter (December-February) respectively. For validation, CTC and CTE values of asphalt concrete are measured in the laboratory and found to be 2.64 × 10~(-5) per ℃ and 2.28 × 10~(-5) per ℃ respectively. In addition, C value is measured in laboratory and k value is determined by developing Finite Element Model (FEM). The measured C and the FEM determined k values are validated using real field data.
机译:新近开发的路面设计指南《机械-经验性路面设计指南》(MEPDG)使用诸如热收缩系数或膨胀系数(CTC或CTE),导热系数(k)和比热容(C)等热属性作为预测路面的输入诸如热裂纹和老化之类的困扰。迄今为止,已经根据实验室测试确定了沥青混凝土的热性能。这项研究使用现场收集的应变和温度数据来确定CTC和CTE,该数据来自美国新墨西哥州阿尔伯克基附近141号英里后40号州际公路上的人行道。沥青混凝土的平均CTC和CTE值分别确定为每℃2.69×10〜(-5)和秋天(十月至十一月)每℃2.42×10〜(-5)和2.47×10〜(-5)每℃冬季(12月至2月)分别为℃和2.77×10〜(-5)/℃。为了进行验证,在实验室中测量了沥青混凝土的CTC和CTE值,分别为每℃2.64×10〜(-5)和2.28×10〜(-5)。另外,在实验室中测量C值,并通过开发有限元模型(FEM)确定k值。使用实地数据验证测得的C和FEM确定的k值。

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