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Soil erosion mapping and severity analysis based on RUSLE model and local perception in the Beshillo Catchment of the Blue Nile Basin, Ethiopia

机译:基于RUSLE模型和局部感知的埃塞俄比亚青尼罗河流域Beshillo流域的土壤侵蚀测绘和严重性分析

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Background Water induced soil erosion is the most prevailing form of land resources deterioration in the highlands of Ethiopia, where huge amount of fertile soil is being lost annually. The purpose of this study was to estimate and map mean annual soil loss rates in the Gedalas watershed of the Blue Nile Basin, Northeastern Ethiopia. The estimation was carried out by using RUSLE model coupled with local perceptions. Soil, land use/cover, DEM, rainfall and support practice data were used as an input parameters. The raster layers were processed to present the required input parameters in ArcGIS platform and finally the inputs were multiplied together to quantify annual average soil loss rate and generate intensity maps of the watershed. Results The estimated annual mean soil loss rate of the watershed was found to be 37 ?t?ha_(?1)?year_(?1), which is more than two times higher as compared to the maximum tolerable soil loss value (16?t?ha_(?1)?year_(?1)) and the annual erosion rates range from 0 to above 935?ton?ha_(?1)?year_(?1). The annual mean soil loss values below 5?ton?ha_(?1)?year_(?1)were rated as very slight, while those above 50?ton?ha_(?1)?year_(?1)were categorized as very severe soil erosion risk. Areas experiencing values between these two were further classified into slight, moderate, and severe erosion zones. Soil loss in more than 1/3rd of the study area (36.4%) was below moderate ( ?30?t?ha_(?1)?year_(?1)) soil erosion risk zones. While 62% of the watershed still undergoes from very slight to moderate levels of soil loss, yet 72.6% of soil erosion occurred in zones less than 3200?m in elevation which represents more than half (51%) of the total surface area of the watershed. The study also demonstrated that the northeastern parts of the watershed suffer more from high soil erosion risk due to steep slope and rugged landforms of the area. Similarly, 43% and 35% of soil erosion occurred on cropland and grasslands areas, respectively. Conclusion The quantitative soil loss estimation results and farmers’ perception of soil erosion revealed that soil erosion has still remained significant problems in the watershed. The results underscore the urgent need for comprehensive and site-specific SLM practices in the watershed.
机译:背景技术水土流失是埃塞俄比亚高地土地资源恶化的最主要形式,埃塞俄比亚每年都会流失大量肥沃的土壤。这项研究的目的是估计和绘制埃塞俄比亚东北部Blue Nile盆地Gedalas流域的年平均土壤流失率。估计是通过使用RUSLE模型结合局部感知来进行的。土壤,土地利用/覆盖,DEM,降雨量和支持实践数据被用作输入参数。处理栅格图层以在ArcGIS平台中提供所需的输入参数,最后将输入相乘以量化年平均土壤流失率并生成流域强度图。结果该流域的估计年平均土壤流失率为37?t?ha _(?1)?year _(?1),比最大容许土壤流失值(16?t?ha _(?1)?year _(?1))高两倍以上。 t?ha _(?1)?year _(?1)),年侵蚀率从0到935?ton?ha _(?1)?year _(?1)以上。低于5?ton?ha _(?1)?year _(?1)的年平均土壤流失值被定为非常轻微,而高于50?ton?ha _(?1)?year _(?1)的土壤年平均损失值被定为非常。严重的水土流失风险。介于这两个值之间的区域进一步分为轻度,中度和重度侵蚀区。在研究区域的三分之一以上(36.4%)的水土流失低于中等水土流失危险区(?30?t?ha _(?1)?年_(?1))。虽然62%的流域仍然遭受非常轻微到中等程度的土壤流失,但是72.6%的土壤侵蚀发生在海拔低于3200?m的区域,占该地区总表面积的一半以上(51%)分水岭。研究还表明,由于该地区陡峭的坡度和崎land的地形,该流域的东北部遭受较高的土壤侵蚀风险。同样,土壤侵蚀的43%和35%分别发生在农田和草地地区。结论定量的水土流失估算结果和农民对水土流失的认识表明,水土流失仍然是流域中的重大问题。结果强调了在流域中迫切需要全面且针对特定地点的SLM实践。

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