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Methods for Remote Engineering Geology Terrain Analysis in Boreal Forest Regions of Ontario, Canada

机译:加拿大安大略省北方森林地区的远程工程地质地形分析方法

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摘要

The Ontario Geological Survey and Canada Centre for Remote Sensing have developed methods for engineering geology terrain analysis using digital elevation models (DEMs) and remotely sensed imagery for remote areas within the boreal forest region of the Canadian Shield. Traditional methods of terrain analysis would be expensive because of the limited access and the vast area involved. Four main components of the terrain are considered: material, landform, relief, and regional drainage conditions. Landform (roughness) and relief are derived automatically from an analysis of a detailed hydrological-conditioned DEM. Regional drainage conditions are estimated from RADARSAT imagery with a mask based on the use of aspect and slope to limit the effects of topography on backscatter. Various types of analysis of LANDSAT imagery are then combined with all the above digital data layers to interpret material type. An automated method that first determines the relationships of the various layers of digital information in areas of known terrain conditions and then predicts terrain conditions in adjacent unmapped areas, is discussed.
机译:安大略省地质调查局和加拿大遥感中心已经开发出了用于工程地质地形分析的方法,该方法使用了数字高程模型(DEM)和用于加拿大盾构北部森林地区偏远地区的遥感影像。传统的地形分析方法由于访问范围有限且涉及的面积较大而将非常昂贵。考虑了地形的四个主要部分:材料,地形,地形和区域排水条件。地形(粗糙度)和起伏是通过对详细的水文条件DEM的分析自动得出的。雷达排水状况是根据RADARSAT影像使用面罩和坡度的使用,使用面罩和坡度来限制地形对反向散射的影响来估计的。然后将各种类型的LANDSAT图像分析与以上所有数字数据层组合起来以解释材料类型。讨论了一种自动方法,该方法首先确定已知地形条件下区域中数字信息各层之间的关系,然后预测相邻未映射区域中的地形条件。

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