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Sensitivity analysis of flexible pavement response and AASHTO 2002 design guide for properties of unbound layers

机译:柔性路面响应的灵敏度分析和AASHTO 2002设计指南(针对未粘结层的性能)

摘要

Unbound granular materials are generally used in road pavements as base and subbase layers. The granular materials provide load distribution through aggregate contacts to a level that can help the subgrade to withstand the applied loads. Several research studies have shown that unbound pavement layers exhibit anisotropic properties. Anisotropy is caused by the preferred orientation of aggregates and compaction forces. The result is unbound pavement layers that have higher stiffness in the vertical direction than in the horizontal direction. This behavior is not accounted for in the design and analysis procedures included in the proposed AASHTO 2002 design guide. One of the objectives of this study is to conduct a comparative analysis of flexible pavement response using different models for unbound pavement layers: linear isotropic, nonlinear isotropic, linear anisotropic and nonlinear anisotropic. Pavement response is computed using a finite element program. The computations from nonlinear isotropic and anisotropic models of unbound layers are compared to the AASHO field experimental measurements. The second objective is to analyze the influence of using isotropic and anisotropic properties for the pavement layers on the performance of flexible pavements calculated using the AASHTO 2002 models. Finally, a comprehensive sensitivity analysis of the proposed AASHTO 2002 performance models to the properties of the unbound pavement layers is conducted. The sensitivity analysis includes different types of base materials, base layer thicknesses, hot mix asphalt type and thickness, environmental conditions, and subgrade materials.
机译:未结合的粒状材料通常在路面中用作基础层和次基层。粒状材料通过集料接触提供载荷分布,该载荷可以帮助路基承受施加的载荷。多项研究表明,未结合的路面层表现出各向异性。各向异性是由骨料和压实力的首选方向引起的。结果是未结合的路面层在垂直方向上具有比在水平方向上更高的刚度。拟议的AASHTO 2002设计指南中所包含的设计和分析过程中未解决此问题。这项研究的目的之一是对未结合的路面层使用不同的模型进行线性路面响应的比较分析:线性各向同性,非线性各向同性,线性各向异性和非线性各向异性。使用有限元程序计算路面响应。将未结合层的非线性各向同性和各向异性模型的计算结果与AASHO现场实验测量结果进行了比较。第二个目标是分析使用路面各向同性和各向异性特性对使用AASHTO 2002模型计算的柔性路面性能的影响。最后,对拟议的AASHTO 2002性能模型对未粘结的路面层的性质进行了全面的敏感性分析。敏感性分析包括不同类型的基础材料,基础层厚度,热拌沥青类型和厚度,环境条件以及路基材料。

著录项

  • 作者

    Masad Sanaa Ahmad;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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