Insights from the Engineering Geological Mapping of Four Basement Rocks Derived Soils

O. F. Olabode, Y. A. Asiwaju-Bello
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引用次数: 3

Abstract

Due to the rapid expansion and associated construction of civil engineering structures on the Federal University of Technology, Akure (FUTA) campus, there arose an urgent need for an engineering geological mapping of the underlying soils (residual soils). Generalized geological mapping revealed four types of basement rocks namely migmatite-gneisses, granites, quartzites and charnockites. Results from the fifty (50) soil samples from twenty-five test pits collected all over the spread of the campus coverage of 6.4 km2revealed that the campus is underlain by soils of granular and clayey composition, generally lateritic, having reddish to brownish colour. Engineering geological tests such as natural moisture content, particle size analysis, consistency limits, California bearing ratio and consolidation were carried out on the soils following standard procedures revealed that the values of natural moisture content do not generally follow a consistent pattern and varied from location to location. The grain size characteristics curve, displayed 84% and 16% subsoils are of well graded and poorly graded type respectively. The soils were grouped into CL (low plasticity), CI (medium plasticity) and CH (high plasticity) from consistency limits results. Compaction characteristics of the subsoils revealed 36% and 64% representative of fair to good and poor to very poor foundation materials respectively. Soils with settlement rates greater than 1mm/year were designated as high settlement subsoils. 72% and 28% of the subsoils fell into hard to stiff and soft categories from the shear strength characteristics respectively, and classified as c-ø soils. California Bearing Ratios values range from 10 – 70, indicating their suitability for pavement construction. Conclusively, areas underlain by migmatite-gneiss and charnockite-derived soils, and granite and quartzite-derived soils possessed low and high strength characteristics respectively which can be attributed to their textural characteristics. The subsoils of the entire campus spread are however capable of bearing very substantial loads.
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四种基岩衍生土工程地质填图的启示
由于阿库尔联邦科技大学(FUTA)校园内土木工程结构的快速扩张和相关建设,迫切需要对下卧土壤(残余土壤)进行工程地质测绘。综合地质填图揭示了杂岩片麻岩、花岗岩、石英岩和砂绿岩四种基底岩类型。从校园6.4平方公里范围内的25个测试坑中收集的50个土壤样本的结果显示,校园是由颗粒和粘土组成的土壤构成的,通常是红土,具有红色到棕色。按照标准程序对土壤进行了自然含水率、粒径分析、一致性极限、加州承载比和固结等工程地质测试,结果表明,自然含水率的值通常不遵循一致的模式,并且因地点而异。粒度特征曲线显示,84%的底土为级配良好型,16%的底土为级配不良型。根据一致性极限结果将土壤分为CL(低塑性)、CI(中塑性)和CH(高塑性)。地基的压实特性分别为36%和64%,代表了一般到良好的地基材料和差到极差的地基材料。沉降速率大于1mm/年的土为高沉降底土。72%和28%的底土从抗剪强度特征上分别属于硬-硬和软两类,属于c-ø土。加州承载比值范围从10 - 70,表明它们适合路面施工。混杂岩片麻岩和绿绿岩土、花岗岩和石英岩土分别具有低强度和高强度特征,这可归因于它们的结构特征。然而,整个校园的底土能够承受非常大的载荷。
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