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首页> 外文期刊>Quarterly Journal of Engineering Geology and Hydrogeology >Pitfalls In the geological characterization of alluvial deposits: investigation for reactive barrier installation at Aznalcollar, Spain
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Pitfalls In the geological characterization of alluvial deposits: investigation for reactive barrier installation at Aznalcollar, Spain

机译:冲积矿床地质特征中的陷阱:西班牙Aznalcollar的反应性屏障安装调查

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摘要

The alluvial deposits of the Agrio River in SW Spain have been studied using terrace mapping, boreholes, trenching and vertical electrical sounding to select an adequate place for a Permeable Reactive Barrier. Geological and hydrogeo-logical data available prior to the barrier construction suggested a simple geological model based on three terraces, the most modern being deeper than the oldest. The barrier was accordingly trenched through the youngest terrace. However, excavation of the barrier and subsequent subsoil data demonstrated that the internal structure of the Agrio alluvial deposits does not follow such a simple model. A revised model, less favourable to the existing barrier design, revealed the oldest terrace to be deeper than the youngest, and to form a palaeochan-nel oblique to the surface terraces and river trends. The study methods used are standard, but proved to have insufficient resolution to detect key features of the alluvial geology. It is concluded that such characterization methods, though widely used, are not appropriate where alluvial terraces may display complex internal structures not reflected in the modern surface geomorphology. In hindsight, the study area should have been larger, so as (to encompass at least the width of the alluvial plain and to extend for a hundred metres or so up and downstream from the proposed barrier location. Lithological logs of the boreholes should have been carefully described from both cuttings and downhole geophysical logs, which would have allowed more accurate delineation of the stratigraphy of the alluvial deposit. Subsequent geophysical methods should have been calibrated to this stratigraphy to characterize the internal structure and basal contact of the alluvial deposit.
机译:西班牙的阿格里奥河冲积沉积物已通过梯田测绘,钻孔,挖沟和垂直电测深进行了研究,以选择合适的位置作为渗透性反应屏障。在屏障建设之前可获得的地质和水文地质数据表明,基于三个阶地的简单地质模型,最现代的比最古老的更深。因此,障碍物穿过最小的梯田。但是,对障碍物的挖掘和随后的地下土壤数据表明,阿格里奥冲积沉积物的内部结构没有遵循这样的简单模型。修改后的模型不利于现有的屏障设计,它揭示了最古老的阶地比最小的阶地更深,并形成了与地表阶地和河流趋势倾斜的古漏斗。所使用的研究方法是标准的,但事实证明其分辨率不足以检测出冲积地质的关键特征。结论是,这种表征方法虽然被广泛使用,但在冲积阶地可能显示出未反映在现代地表地貌中的复杂内部结构时并不适用。事后看来,研究区域应该更大,以便(至少包括冲积平原的宽度,并从拟议的屏障位置向下游延伸一百米左右。钻孔的岩性测井应该是在钻屑和井下地球物理测井资料中进行了仔细的描述,可以更准确地描述冲积层的地层学,随后的地球物理方法也应针对该地层进行校准,以表征冲积层的内部结构和基础接触。

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