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Sediment-landform assemblages and digital elevation data: Testing an improved methodology for the assessment of sand and gravel aggregate resources in north-western Britain

机译:沉积物-地形组合和数字高程数据:测试一种改进的方法以评估英国西北部的砂石砾石资源

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This paper uses the results of a series of sand and gravel resource assessment surveys to refine and improve the methods used for identifying aggregate resources in north-western Britain. Geomorphological surveys of the Cors Geirch and Rhosesmor areas of north Wales and the lower Ribble valley in Lancashire, carried out by 1:10,000 scale field mapping, are compared to resource assessments made using high resolution Digital Elevation Models (DEMs) of the same ground. The DEMs proved useful tools for remote geomorphological survey, but precision was significantly better for the Intermap NEXTMAP and, particularly, the Environment Agency LiDAR dataset. Only the LiDAR data revealed with any clarity small-scale and low relief features, for example scroll-bar palaeochannels on river terraces. The identification of sediment-landform assemblage zones from geomorphological survey permits the identification of the primary sedimentary process responsible for each assemblage and the attachment of an ideal sedimentary facies model to it. Each model can then be used to predict sedimentary composition, the optimal location of boreholes and the location of resource blocks. Combining the use of DEM data and the Spatial Analyst toolset within ArcGIS? (ESRI) allows rapid accurate delineation of landforms and the use of cut and fill functions allows more accurate estimation of the volume of resources than the traditional calculations based on area and average thickness. These new methods improve the accuracy and cost-effectiveness of geomorphology-based aggregate assessments, notably where the mineral-bodies are concealed beneath minimal overburden and produce characteristic landforms.
机译:本文利用一系列砂石资源评估调查的结果来完善和改进用于识别英国西北部总资源的方法。通过1:10,000比例的野外制图对北威尔士的Cors Geirch和Rhosesmor地区以及兰开夏郡的下Ribble谷进行地貌调查,并与使用同一地面的高分辨率数字高程模型(DEM)进行的资源评估进行了比较。 DEM被证明是用于远程地貌勘查的有用工具,但对于Intermap NEXTMAP尤其是环境局LiDAR数据集,其精度明显更高。只有LiDAR数据清楚地显示了小规模和低浮雕特征,例如河阶上的滚动条古河道。从地貌学调查中确定沉积物-地貌组合带可以确定负责每个组合的主要沉积过程,并可以在其上附加理想的沉积相模型。然后可以使用每种模型来预测沉积物成分,钻孔的最佳位置和资源块的位置。结合使用DEM数据和ArcGIS中的Spatial Analyst工具集? (ESRI)可以快速准确地描述地形,并且使用填挖功能可以比基于面积和平均厚度的传统计算更准确地估算资源量。这些新方法提高了基于地貌的骨料评估的准确性和成本效益,特别是在矿体被隐藏在最小覆盖层之下并产生特征地貌的地方。

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