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Geotechnical Investigation of Soils and Underlying Basement Rock for the Construction of Southern Parkway Bridge at Federal Capital Territory (FCT), Abuja, Northcentral Nigeria

机译:尼日利亚北部中部阿布贾联邦首都辖区(FCT)南部公园大道桥梁施工的土壤和地下基底岩土工程调查

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It has been shown in several studies that factors such as composition, texture, degree of weathering, and presence of fissures or discontinuities have a first order control on engineering properties and behavior of soils and rocks. This paper investigates geotechnical properties of soils and the underlying basement rock at the site of the proposed Southern Parkway Bridge in Federal Capital Territory (FCT), Abuja, Nigeria with a view to assessing their strength and suitability to carry the load of the bridge and support the road under construction.The study involved two exploration borings to about 30 m on either side of the road using percussion drilling rig. A total number of six soil samples and four rock samples were collected for various geotechnical analyses. The borehole logs showed that the subsoil is composed of a suite of residual materials such as silty laterite with traces of clay, underlain by migmatite as the basement rock; with a subtle difference in the composition of materials from the two drilled borehole pits.The results of the particle size analysis revealed that the soils are generally poorly graded, while the Atterberg’s Limits indicated that the analyzed soils have high natural moisture content (14.3 – 21.3%), high Liquid Limit (31 – 49%), high Plastic Limit (22 – 34%) and high Plasticity Index (9 – 16%); all suggesting that the studied soils (regolith) can be regarded as poor for sub-base or base course materials, and thus could not be considered suitable for bridge construction. The results of unconfined compressive strength (170.21 – 184.63 MPa) and point load strength (3.42 – 6.60 MPa) show that the underlying basement rock (migmatite) has medium to high strength, and this implies that it has the desired load-bearing capacity to support the overlying weight of the proposed bridge.It is therefore concluded that the regolith at the site for the proposed bridge are unsuitable to support the bridge and for road construction, while the underlying basement rock has the desired capacity or strength to carry the bridge. We therefore recommended that the soils should be excavated and replaced with a higher grade, better quality material of improved geotechnical properties.
机译:在多项研究中已经表明,诸如成分,质地,风化程度以及裂缝或不连续性的存在等因素对土壤和岩石的工程特性和行为具有一级控制。本文调查了尼日利亚阿布贾联邦首都特区(FCT)拟建的南部公园路大桥工地的土壤和地下基底岩石的岩土特性,以评估其强度和承载桥梁和支撑物的适宜性该研究涉及使用冲击钻机在道路两侧各进行两次勘探钻孔,钻探至约30 m。总共收集了六个土壤样品和四个岩石样品用于各种岩土分析。钻孔测井表明,地基土由一系列残余物组成,如粉红色的红土带粘土的痕迹,并以蒙脱石作为基底岩层。粒度分析的结果表明,土壤的分级一般较差,而阿特伯格极限表明,所分析的土壤具有较高的天然水分含量(14.3 – 21.3) %),高液体极限(31 – 49%),高塑料极限(22 – 34%)和高可塑性指数(9 – 16%);所有这些都表明,所研究的土壤(软土)对于次基层或基层材料而言可认为是差的,因此不适合用于桥梁建设。无侧限抗压强度(170.21 – 184.63 MPa)和点载荷强度(3.42 – 6.60 MPa)的结果表明,下层基岩(蒙脱石)具有中等至高强度,这意味着它具有所需的承压能力。因此,可以得出结论:拟建桥梁工地的碎石不适合支撑桥梁和道路建设,而下面的基底岩石具有承载桥梁所需的能力或强度。因此,我们建议挖掘土壤,并用具有较高岩土性能的更高等级,质量更好的材料代替。

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