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首页> 外文期刊>Landslides >GIS-assisted classification of litho-geomorphological units using Maximum Likelihood Classification, Vipava Valley, SW Slovenia
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GIS-assisted classification of litho-geomorphological units using Maximum Likelihood Classification, Vipava Valley, SW Slovenia

机译:使用最大似然分类,VIPAVA谷,SW斯洛文尼亚的LITHO-地貌单元的GIS辅助分类

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摘要

In the Vipava Valley (SW Slovenia), various types of mass movements occur in a geologically and geomorphologically diverse setting. These comprise various types of landslides, creep, and Quaternary slope deposits of carbonate blocks and recent scree deposits. A general geological setting is represented as Mesozoic carbonate overthrust on Paleogene flysch (alternations of mostly sandstones and marlstones), resulting in steep slopes and mass movements. Our study is based on the automatic classification of various litho-geomorphological units including slope deposits, alluvial deposits, steep carbonate cliffs, flysch, two carbonate plateaus, and Quaternary deposits, based on supervised Maximum Likelihood Classification. Several polygons were used for training in the broader valley area, and later, the method was applied to automatically classify the complete area into the abovementioned six units. For input layers, we used data for elevation, slope, terrain ruggedness index (TRI), and curvature. Results show that generally, the method is suitable for classification of the litho-geomorphological units including slope deposits. However, comparison with a more detailed map, comprising mapped various mass movements indicated that the method correctly predicts high Trnovo plateau carbonates, steep carbonate slopes, translational carbonate blocks, and fossil rock avalanche deposits, and alluvial deposits, but is not able to clearly distinguish between flysch and more recent slope deposits of gravel and breccia due to their similar elevation, TRI, and slope values. The Slano blato mudflow and Stogovce landslide are not recognized. Therefore, this automatic classification can be carefully used to create a guidance map of general occurrences of litho-geomorphological units including slope deposits before going to the field, with the aim of delineation of slope deposits so they can be further studied in detail later in the field. However, such a map cannot be used as a direct su
机译:在VIPAVA谷(SW斯洛文尼亚)中,各种类型的质量运动在地质和整体上不同的环境中发生。这些包括各种类型的碳酸盐块和最近的碎屑沉积物的山体滑坡,蠕变和季坡沉积物。一般的地质环境代表为古钨鸟(多数砂岩和玛尔斯隆的替代)的中生代碳酸盐层推翻,导致陡坡和质量运动。我们的研究基于各种光谱 - 地貌单元的自动分类,包括斜坡沉积物,冲积沉积物,陡峭的碳酸盐悬崖,氟氯干,两种碳酸盐盐和第四纪矿床,基于受监督的最大可能性分类。几个多边形用于更广泛的谷地区培训,后来,该方法应用于自动将完整区域分类为上述六个单位。对于输入图层,我们使用了高程,坡度,地形坚固耐用索引(TRI)和曲率的数据。结果表明,通常,该方法适用于包括斜坡沉积物的地貌单元的分类。然而,与更详细的地图进行比较,包括映射各种质量运动,表明该方法正确地预测了高Trnovo碳酸盐,陡峭的碳酸盐倾斜,平移碳酸盐块和化石岩雪崩沉积物,而不是能够清楚地区分由于其类似的仰角,TRI和斜率值,碎屑和最近的砾石和Breccia的坡度沉积物之间。 Slano Blato Mudflow和Stogovce Landslide无法识别。因此,可以仔细地仔细地仔细分类本自动分类,以创建高岩石地貌单元的一般出现的指导图,包括斜坡沉积物,目的是划缝坡度沉积物,因此可以在后面进一步详细研究它们场地。但是,这样的地图不能用作直接苏

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