尼日尔三角洲东部哈科特港Rumuokwuta地基设计地基承载力评价

Tammy Morrison, Erefama Ekine Esonanjor
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摘要

目的:进行地下岩土工程勘察,为某单层建筑的基础设计和施工确定合格土的深度。研究设计:本研究旨在利用工程地质学和岩土技术评估尼日尔三角洲东部地基设计的底土能力。研究地点和时间:该研究于2019年4月至9月在哈科特港(尼日尔三角洲东部)Rumuokwuta轴沿线的三个地点进行。方法:采用现场抽样和实验室分析相结合的方法。这涉及土壤钻孔,以检索受干扰和相对未受干扰的样品进行分析,其中包括粒度分析,阿特伯格极限,水分含量和单位重量。此外,还进行了Oedometer固结试验和不排水、未固结的三轴试验。结果:研究揭示了两个主要地层,在浅基础水平(0.0-3.0m)内大部分为细地层。结果表明,土具有液限(41 ~ 46%)、塑性限(21 ~ 23%)、塑性指数(18 ~ 24%)、含水率范围(20.6 ~ 24.7%)等岩土力学特性。不排水黏聚力值为55kpa,平均摩擦角为50o。压缩系数(Mv)为0.20 m2/ MN,固结系数(Cv)为40.7 m2/yr。结论:在浅基础水平范围内支座和沉降值适中的情况下,目的结构采用浅基础的可行性是可以接受的。建议浅基础(最小1.4m),允许承受压力100kpa。
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Evaluation of Subsoil Competence for Foundation Design Design in Rumuokwuta, Port Harcourt, Eastern Niger Delta
Aim: A subsurface geotechnical investigation was carried out for the purpose of establishing the depth of competent soil for foundation design and construction of a one-storey building. Study Design: The study was aimed at assessing the subsoil competence for a foundation design in the Eastern Niger Delta using engineering geology and geotechnics. Place and Duration of Study: The research was conducted in three locations along the Rumuokwuta axis of Port Harcourt (the eastern Niger Delta) between April and September 2019. Method: The study involved both field sampling and laboratory analysis. This involved soil boring for the retrieval of disturbed and relatively undisturbed samples for analysis, which involves grain size analysis, the Atterberg limits, moisture content, and unit weights. Also, Oedometer consolidation Oedometer and undrained, unconsolidated triaxial tests were carried out. Results: The study revealed two main stratigraphic layers that are mostly fine within the shallow foundation level (0.0–3.0m). From the results, the soil exhibited the following geotechnical properties: liquid limit (41-46%), plastic limit (21-23%), plasticity index (18-24%), and moisture content range (20.6-24.7%). The undrained cohesion value is 55 kPa, and the average frictional angle is 5o. The coefficients of compression (Mv) and consolidation (Cv) were 0.20 m2 /MN and 40.7 m2/yr, respectively. Conclusion: With the moderate bearing and settlement values within the shallow foundation level, the feasibility of adopting a shallow foundation for the purposed structure is tolerable. A shallow foundation (1.4m minimum) with an allowable bearing pressure of 100 kPa is therefore recommended.
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