首页> 外文会议>International Conference on Soil Mechanics and Geotechnical Engineering(16 ICSMGE) vol.2; 2005; Osaka(JP) >Engineering performance of soils of the humid tropical zone of Southern Nigeria
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Engineering performance of soils of the humid tropical zone of Southern Nigeria

机译:尼日利亚南部潮湿热带地区土壤的工程性能

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The principal factor to which the observed engineering performance of the soils in the humid tropical zone of Southern Nigeria can be attributed has been determined to be the laterization phenomenon. During the process, oxides and hydroxides of iron and aluminum accumulate as the cementing agents binding the soil particles together. Clay-size particles aggregate into coarse grains giving the impression of a granular texture. The soil mass, in turn, correspondingly exhibits characteristics reflecting this texture when undisturbed in the field. When subjected to mechanical reworking or remolding however, such as in the process of pre-test sample preparation, the grains are disaggregated releasing a large quantity of fines. The laboratory test results therefore usually differ from predictions based on field observations. This paper presents a broad framework, which can be used for a preliminary estimate of the engineering performance of the soils as well as formulating a generalised soil classification scheme for the area. The framework has been realised from a synthesis of selected previous works on the soils, a task, which included detailed evaluation of all the soil formations in the whole area and correlation of their engineering properties with various physical characteristics. The genetic and climatic factors and the post-formation alterations, which influence the engineering behaviour of the soils, were also investigated, with emphasis on their significance in engineering design and construction.
机译:可以确定归因于尼日利亚南部潮湿热带地区土壤的观测工程性能的主要因素是后土现象。在此过程中,铁和铝的氧化物和氢氧化物会随着胶结剂的结合而积聚,从而将土壤颗粒粘合在一起。粘土大小的颗粒会聚集成粗粒,给人以颗粒感的印象。相应地,当在田间不受干扰时,土壤质量相应地表现出反映该质地的特性。但是,当进行机械加工或重塑时,例如在预测试样品的制备过程中,颗粒会分解,释放出大量的细屑。因此,实验室测试结果通常不同于基于现场观察的预测。本文提出了一个广泛的框架,可用于初步估算土壤的工程性能以及制定该地区的广义土壤分类方案。该框架是通过对先前选定的土壤工作进行综合而实现的,该任务包括对整个地区的所有土壤形成进行详细评估,并将其工程特性与各种物理特征相关联。还研究了影响土壤工程行为的遗传和气候因素以及形成后的变化,并着重指出了它们在工程设计和施工中的意义。

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