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首页> 外文期刊>Journal of Environment and Earth Science >Stratigraphic Influence on Geotechnical Properties of Subgrade Soils along the Irrua-Auchi Road, South Eastern Nigeria
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Stratigraphic Influence on Geotechnical Properties of Subgrade Soils along the Irrua-Auchi Road, South Eastern Nigeria

机译:地层对尼日利亚东南部Irrua-Auchi路沿线路基土壤岩土特性的影响

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Geotechnical investigation of the Irrua – Auchi road was carried out to determine the engineering properties of the subgrade soils and evaluate the pavement conditions with a view to establishing the causes of failures along portions of the road. This involved a study of the route geology, measurement of pavement deflection using the Benkelman beam device and in-situ dry density test of the subgrade soils using the nuclear gauge. Other tests included the routine geotechnical laboratory tests to determine index properties, compaction and CBR characteristics of the subgrade soils. Results indicated that the road traversed terrain underlain by the Ajali sandstone, the Imo shale and the Ameki Formations. The subgrade soils, composed mainly of fine grained materials classified as A-4 to A-2-4., were characterized by plasticity index of 4 -19%, MDD of 1.83 – 1.92 Mg/m3, 48- hour soaked CBR of 0.86 to 1.12 to show the fairly similar geotechnical properties of the soils. The segment of the road underlain by the Ajali derived soils was characterized by average relative compaction of 0.96 and average deflection of 0.26 mm and is classified as stable. The segments underlain by the Ameki and the Imo shale derived soils were characterized by average relative compaction of 0.89 and 0.88 and average pavement deflections of 0.39 mm and 0.61 mm respectively and are accordingly classified as less stable and least stable. Conclusively, in this study, the pavement deflections revealed pattern that reflect the influence of soil structures derived from stratification of the underlying geologic units. Keywords: key words, Subgrade soils, Engineering properties, Pavement deflection, Route geology
机译:对Irrua – Auchi公路进行了岩土工程研究,以确定路基土壤的工程特性并评估了路面状况,以查明该公路部分路段的破坏原因。这包括对路线地质的研究,使用Benkelman梁装置测量路面挠度以及使用核规对路基土壤进行原位干密度测试。其他测试包括常规的岩土工程实验室测试,以确定路基土壤的指标特性,压实度和CBR特性。结果表明,该公路穿越了Ajali砂岩,Imo页岩和Ameki地层之下的地形。路基土壤主要由分类为A-4至A-2-4。的细粒材料组成,其可塑性指数为4 -19%,MDD为1.83-1.92 Mg / m3,48小时浸泡CBR为0.86到1.12,以显示土壤的岩土特性非常相似。由Ajali衍生的土壤铺设的路段的特征是平均相对压实度为0.96,平均挠度为0.26 mm,被分类为稳定。由Ameki和Imo页岩衍生的土壤所下的段的特征是平均相对压实度为0.89和0.88,平均路面挠度分别为0.39 mm和0.61 mm,因此被分类为较不稳定和最不稳定。最终,在这项研究中,路面挠度揭示了一种模式,该模式反映了来自基础地质单元分层的土壤结构的影响。关键词:关键词;路基土壤;工程特性;路面挠度;路线地质

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