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Three-dimensional geophysical anatomy of an active landslide in Lias Group mudrocks, Cleveland Basin, UK

机译:英国克利夫兰盆地利亚斯群泥岩中活跃滑坡的三维地球物理解剖学

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摘要

A geoelectrical investigation of a slow moving earth slide-earth flow in Lower Jurassic Lias Group rocks of the Cleveland Basin, UK, is described. These mudrock slopes are particularly prone to failure and are a major source of lowland landslides in the UK, but few attempts have been made to spatially or volumetricaHy characterise the subsurface form of these slides. The primary aim of this study was to consider the efficacy of fully three-dimensional geoelectrical imaging for landslide investigation with reference to a geological setting typical of Lias Group escarpments. The approach described here included a reconnaissance survey phase using two-dimensional electrical resistivity tomography (ERT), resistivity mapping, self-potential (SP) profiling and mapping, followed by a detailed investigation of an area of the landslide using three-dimensional (3D) ERT and self-potential tomography (SPT). Interpretation of the geophysical data sets was supported by surface observations (aerial LiDAR and differential GPS geomorphological surveys) and intrusive investigations (boreholes and auger holes). The initial phase of the study revealed the existence of a strong SP signature at the site consistent with a streaming potential source and established the relationships between the main geological units, the geomorphologic expression of the landslide, and the resistivity of the materials in and around the study area. The 3D SPT model generated during the second phase of the study indicated drainage patterns across the landslide and preferential flow from the low permeability mud rocks into the underlying more permeable sandstone formation. Because of favourable resistivity contrasts between the clay-rich Whitby Mudstone Formation landslide material and the underlying Staithes Sandstone Formation, the volumetric 3D ERT image allowed a number of surface and subsurface landslide features to be identified and spatially located. These included the lateral extent of slipped material and zones of depletion and accumulation; the surface of separation and the thickness of individual earth flow lobes; and the dipping in situ geological boundary between the Whitby Mudstone and Staithes Sandstone bedrock formations.
机译:描述了英国克利夫兰盆地下侏罗统利亚斯群岩石中缓慢移动的地球滑坡土流的地电研究。这些泥岩斜坡特别容易发生破裂,并且是英国低地滑坡的主要来源,但很少有人尝试从空间或体积上表征这些滑坡的地下形式。这项研究的主要目的是考虑到利亚斯集团悬崖典型的地质环境,对滑坡调查进行全三维地电成像的有效性。此处描述的方法包括使用二维电阻率层析成像(ERT)的勘测阶段,电阻率映射,自势(SP)剖析和映射,然后使用三维(3D)对滑坡区域进行详细调查)ERT和自我电势层析成像(SPT)。地球物理数据集的解释由地面观测(航空LiDAR和差分GPS地貌学调查)和侵入性调查(钻孔和钻孔)支持。该研究的初始阶段揭示了该地点存在与流动电位源一致的强SP特征,并建立了主要地质单位,滑坡的地貌表达以及该地区及其周围地区的材料电阻率之间的关系。学习区。在研究的第二阶段生成的3D SPT模型表明,滑坡的排水方式以及从低渗透性泥岩到下层更具渗透性的砂岩地层的优先流动。由于富含粘土的Whitby泥岩组滑坡材料与下层的Staithes砂岩组之间具有良好的电阻率差异,因此三维3D ERT图像可以识别并确定空间上的许多地下和地下滑坡特征。这些包括滑移物料的横向范围以及耗尽和积聚的区域。分离的表面和各个土流波瓣的厚度;以及Whitby泥岩和Staithes砂岩基岩地层之间的浸入地质边界。

著录项

  • 来源
    《Geomorphology》 |2011年第4期|p.472-484|共13页
  • 作者单位

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

    British Geological Survey, Kingsley Dunham Centre, Nottingham, NCT2 5CG, UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    landslide; electrical resistivity tomography (ert); self-potential (sp); lias;

    机译:滑坡;电阻层析成像(ert);自电势(sp);别名;
  • 入库时间 2022-08-18 03:37:02

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