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Water erosion modeling by the Erosion Potential Method and the Revised Universal Soil Loss Equation: a comparative analysis

机译:侵蚀电位法和修订通用土壤损失方程的水腐蚀建模:比较分析

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摘要

Water erosion is the principal degradation process of tropical soils, and its effects can be measured by modeling techniques. Erosion models provide a diagnosis of the soil loss intensity and can support the planning of soil conservation practices. Models with low data requirements, such as the Revised Universal Soil Loss Equation (RUSLE) and, more recently, the Erosion Potential Method (EPM), are mainly applied in Brazil. Thus, the objective of this work was to estimate water erosion soil-loss rates using the EPM and RUSLE models on a tropical subbasin, followed by a comparison of their outcomes. The models’ application considered soil physical parameters, edaphoclimatic conditions of the area, land use, and subbasin management practices. The accuracy of the methods was verified using total transported sediment and water discharge data. We compared the models using Pearson's correlation analyses, considering a 5% of significance. We found a predominance of moderate-intensity erosion with average soil loss of 1.17 and 1.46 Mg ha-1 year-1, measured by EPM and RUSLE, respectively. The EPM model underestimated soil losses by 15.27%, and RUSLE overestimated by 19.08%, indicating a higher percentage of areas with high erosion rates (4.60%). The models presented results with a different order of magnitude, but with significant correlations, indicating that both methods pointed out similar zones of intense and light-erosion rates.
机译:水腐蚀是热带土壤的主要退化过程,其效果可以通过建模技术来测量。侵蚀模型提供了对土壤损失强度的诊断,并可以支持土壤保护实践的规划。具有低数据要求的模型,如修订后的通用土壤损失方程(风格)以及最近,侵蚀潜在方法(EPM)主要应用于巴西。因此,这项工作的目的是利用热带亚巴西的EPM和风险模型来估计水腐蚀土壤损失率,然后比较它们的结果。模型的应用被认为是土壤物理参数,面积的抚伐条件,土地利用和子巴西管理实践。使用总运输的沉积物和排水数据来验证方法的准确性。我们使用Pearson的相关分析进行了比较模型,考虑到了5%的重要性。我们发现中等强度侵蚀的主要原因侵蚀,平均土壤损失为1.17和1.46mg HA-1年级-1,分别通过EPM和风格测量。 EPM模型低估了15.27%的土壤损失,并高估了19.08%的风险,表明侵蚀率高的百分比较高(4.60%)。模型呈现出不同数量级的结果,但具有显着的相关性,表明两种方法指出了相似的强烈和光侵蚀速率的区域。

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