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首页> 外文期刊>Trends in Ecology & Evolution >Analysis of pedological factors and USCS in the contact area of Dakovo loess plateau and Dilj gora, Croatia
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Analysis of pedological factors and USCS in the contact area of Dakovo loess plateau and Dilj gora, Croatia

机译:Dakovo黄土高原与克罗地亚帝国帝国帝国高原联络区的教学因素和USC分析

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The pedological factors concerning the Unified Soil Classification System (USCS) in the contact area of Dakovo loess plateau and Dilj gora have been explored. The study was carried out to create a cross-country mobility map for vehicles. The spatial GIS analysis included soil units of Basic Soil Map (BSM) at a scale of 1:50000, which, according to the World Reference Base (WRB), contain within themselves the distribution of soil units, particle size distribution according to the United States Department of Agriculture (USDA) soil classification and organic content, as well as data from the Basic Geological Map (BGM) at a scale of 1:100000, together with the information on the original parent material from which the soils originate. Field sampling (72 samples) and laboratory sample analysis were performed according to the USCS. The samples were collected at the same locations (50 samples) as the profiles which had been extracted during the development of BSM to enable a comparison of the two classification systems. The analysis did not confirm a clear statistical connection between the USDA and USCS. The compatibility of BSM pedological units and low plasticity clays (CL) is clearly visible in all units, except for the units located on the alluvium. The presence of low plasticity clay (CL) and high plasticity clay (CH) has been confirmed in the stagnosols on the alluvium. By incorporating the geological basis into the spatial analysis, low plasticity clays were found to belong to the Quaternary source material, whereas high plasticity clays were formed on the parent substrate of Neogene age. Data analysis and cartographic representation of the results according to the Waterways Experiment Station (WES) Method of the cone index were obtained using fuzzy logic. The principles of fuzzy logic were used at the boundaries of pedological units due to the inability to define clear boundaries or the cessation of a particular type of soil's presence.
机译:已经探讨了统一土壤分类系统(USCS)在Dakovo黄土高原和Dilj Gora的联络区域中的统一土壤分类系统(USC)的研究因素。该研究进行了为车辆创建越野移动地图。空间GIS分析包括碱性土壤图(BSM)的土壤单位,规模为1:50000,根据世界参考底座(WRB),在自己内部包含土壤单位的分布,粒度分布根据联合国国家农业部(美国农业部)土壤分类和有机含量,以及来自基本地质地图(BGM)的数据,规模为1:100000,以及土壤来自土壤的原始母体材料的信息。根据USCS进行现场采样(72个样品)和实验室样品分析。在与BSM的开发期间提取的曲线相同的位置(50个样本)收集样品以实现两个分类系统的比较。分析未确认USDA和USCS之间的明确统计联系。除了位于加容的单位之外,BSM Pocologology单元和低塑性粘土(CL)的兼容性清晰可见。在加砜上的雄溶胶中证实了低塑性粘土(Cl)和高塑性粘土(CH)的存在。通过将地质基础结合到空间分析中,发现低可塑性粘土属于季源材料,而在新生儿年龄的母体底物上形成高可塑性粘土。使用模糊逻辑获得了根据水道实验站(WES)方法的结果的数据分析和制图表示。由于无法定义明确的边界或特定类型的土壤存在的停止,在小学单元的界限下使用了模糊逻辑的原则。

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