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Experience in digital mapping of soil cover patterns

机译:进行土壤覆盖模式数字绘图的经验

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Methodological problems of large-scale soil mapping with the use of digital mapping technologies are discussed. Two variants of obtaining the maps of soil combinations for a test polygon (30 km(2)) in the area of soddy-podzolic soils with 996 studied soil pits are described. In the first variant, the initial state of soils at studied points was characterized by the taxonomic name of the soil (at the level of soil subtypes); the probability of occurrence of different subtypes within operation cells of the digital map was estimated, and the most probable soil subtypes were assigned to them. This approach was tested for the first time. In the second variant, the initial state of soils at studied points was described with the help of the grades of ecologically meaningful features of soil morphology; the degree of soil gleying and the degree of soil erosion or aggradation were indicated. The integral digital map represented the areas of different agroecological groups of soil combinations. The maps obtained with the help of these two approaches show a satisfactory agreement with the maps of soil cover patterns compiled by traditional methods earlier.
机译:讨论了使用数字地图技术进行大规模土壤制图的方法学问题。描述了获得具有996个研究土壤坑的泥质-坡地土壤区域中的测试多边形(30 km(2))的土壤组合图的两种变体。在第一个变体中,研究点的土壤初始状态以土壤的分类名称(在土壤亚型水平)为特征。估计了数字地图的操作单元内不同亚型出现的可能性,并为它们分配了最可能的土壤亚型。这种方法是第一次测试。在第二个变体中,借助于土壤形态的生态学意义特征的等级来描述研究点处土壤的初始状态。指出了土壤g曲的程度和土壤侵蚀或凝结的程度。完整的数字地图代表土壤组合的不同农业生态组的面积。在这两种方法的帮助下获得的地图显示出与先前通过传统方法编辑的土壤覆盖模式图令人满意的一致性。

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