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Mechanistic-Empirical Pavement Design for Minor Collector Streets Incorporating Cement-Treated Base Layers

机译:结合水泥处理基层的小型集热街的机械-经验路面设计

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The objective of this work was to perform project-level studies of selected pavement segments in Springville City to develop new standard pavement designs based on appropriate traffic levels, material properties, and climatic conditions. Mechanistic-empirical (M-E) analyses were then performed to design new standard pavement structures for minor collector streets in Springville City. Because of the engineering, economic, and environmental benefits of re-using existing materials, full-depth reclamation in conjunction with cement stabilization was specifically considered. The results of the M-E analyses indicate that, as the asphalt and CTB layer thicknesses increase, the number of allowable equivalent single axle loads (ESALs) also increases. In addition, as the 7-day unconfined compressive strength (UCS) values increase, the number of allowable ESALs increases. Among the options, a 7-day UCS value of 500 psi may be preferred in many instances to allow the shallowest pavement designs with the least amount of asphalt, which would be expected to be the least expensive. The advanced M-E design process demonstrated in this study has broad application for developing standard pavement designs, especially those incorporating CTB layers, for other street classes and in other regions.
机译:这项工作的目的是对斯普林维尔市的选定人行道段进行项目级研究,以根据适当的交通水平,材料特性和气候条件开发新的标准人行道设计。然后进行了机械经验(M-E)分析,以设计用于斯普林维尔市未成年人收集街道的新标准路面结构。由于重复使用现有材料在工程,经济和环境方面的好处,因此特别考虑了结合水泥稳定剂的全深度填海。 M-E分析的结果表明,随着沥青和CTB层厚度的增加,允许的等效单轴载荷(ESAL)的数量也会增加。此外,随着7天无限制抗压强度(UCS)值的增加,允许的ESAL数量也会增加。在这些选项中,在许多情况下,最好使用7天UCS值为500 psi,以允许使用最少的沥青量来进行最浅的路面设计,而这预计是最便宜的。这项研究中展示的先进的M-E设计过程已广泛应用于开发标准路面设计,尤其是那些包含CTB层的路面设计,适用于其他街道等级和其他地区。

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