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Geotechnical Identification and Classification of Soils as Flexible Pavement Subgrade of the Section Fongo Tongo-Melong

机译:Fongo Tongo-Melong段的柔性路面路基土壤的岩土工程识别和分类

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摘要

The present study is inscribed within the framework of the geotechnical characterization of the soils of the Santchou plain, their classification for employment as pavement subgrade, various identification tests were carried out on the samples. The results obtained showed that with a wide range of different grain sizes, the studied soils showed low content in clay grains and dominance of either sand grains or silt grains, this can be explaining how most of these soil are poorly graded. According to the USDA textural classification, the grain size distribution of these soils makes them to be classified as Silty Loam types to Sandy Loam types. Despite of their organic matter content which is less than 10%, according to their respective methylene blue values, the soils studied along the section should be mainly loamy soil of medium plasticity to clayed soil, therefore showing a sensibility of its behavior to variation of water content. That last one is confirmed by the consistency parameters of these soils which show intermediate plasticity to highly plastic. Also, the bearing capacity proposed by these soils at their respective optimum dry densities is relatively small, although most of these experimental CBR values of the studied soils are more important than the ones prescribed by the AASHTO Classification system for A5, A6, and A7 types, and the French Highway Earthworks Manual Classifications system (GTR) for the corresponding A2 and A3 types.
机译:本研究刻入了Santchou平原土壤土壤岩土性表征的骨架框架内,其就业作为路面路基的分类,在样品上进行了各种鉴定试验。所得到的结果表明,随着各种不同的晶粒尺寸,所研究的土壤显示粘土颗粒和砂粒或淤泥颗粒的优势含量低,这可以解释这些土壤的大部分差异很差。根据USDA纹理分类,这些土壤的粒度分布使得它们被归类为粉质壤土类型。尽管其有机质含量小于10%,但根据其各自的亚甲基蓝色值,沿着该部分研究的土壤应主要是中等可塑性的粘土土壤,因此表现出其对水变异的感觉内容。最后一个通过这些土壤的一致性参数证实了中间可塑性的高度塑料。此外,这些土壤在各自的最佳干燥密度提出的承载能力相对较小,尽管所研究的土壤的大多数实验CBR值比AASHTO分类系统为A5,A6和A7类型规定的大多数更重要,以及法国公路土方工程手动分类系统(GTR),适用于相应的A2和A3类型。

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