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RUSLE Model Based Annual Soil Loss Quantification for Soil Erosion Protection: A Case of Fincha Catchment, Ethiopia
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In this study, Revised Universal Soil Loss Equation (RUSLE) model and Geographic Information System (GIS) platforms were successfully applied to quantify the annual soil loss for the protection of soil erosion in Fincha catchment, Ethiopia. The key physical factors such as rainfall erosivity ( R-factor), soil erodibility ( K-factor), topographic condition (LS-factor), cover management ( C-factor), and support practice ( P-factor) were prepared in GIS environment from rainfall, soil, Digital Elevation Model (DEM), Land use/Land cover (LULC) respectively. The RUSLE equation was used in raster calculator of ArcGIS spatial tool analyst. The individual map of the derived factors was multiplied in the raster calculator and an average annual soil loss ranges from 0.0 to 76.5 t ha
−1
yr
−1
was estimated. The estimated annual soil loss was categorized based on the qualitative and quantitative classifications as Very Low (0–15 t ha
−1
yr
−1
), Low (15–45 t ha
−1
yr
−1
), Moderate (45–75 t ha
−1
yr
−1
), and High (>75 t ha
−1
yr
−1
). It was found from the generated soil erosion severity map that about 45% of the catchment area was vulnerable to the erosion with an annual soil loss of (>75 t ha
−1
yr
−1
), and this demonstrates that the erosion reduction actions are immediately required to ensure the sustainable soil resources in the study area. The soil erosion severity map generated based on RUSLE model and GIS platforms have a paramount role to alert all stakeholders in controlling the effects of the erosion. The results of the RUSLE model can also be further considered along with the catchment for practical soil loss protection practices.
Title: RUSLE Model Based Annual Soil Loss Quantification for Soil Erosion Protection: A Case of Fincha Catchment, Ethiopia
Description:
In this study, Revised Universal Soil Loss Equation (RUSLE) model and Geographic Information System (GIS) platforms were successfully applied to quantify the annual soil loss for the protection of soil erosion in Fincha catchment, Ethiopia.
The key physical factors such as rainfall erosivity ( R-factor), soil erodibility ( K-factor), topographic condition (LS-factor), cover management ( C-factor), and support practice ( P-factor) were prepared in GIS environment from rainfall, soil, Digital Elevation Model (DEM), Land use/Land cover (LULC) respectively.
The RUSLE equation was used in raster calculator of ArcGIS spatial tool analyst.
The individual map of the derived factors was multiplied in the raster calculator and an average annual soil loss ranges from 0.
0 to 76.
5 t ha
−1
yr
−1
was estimated.
The estimated annual soil loss was categorized based on the qualitative and quantitative classifications as Very Low (0–15 t ha
−1
yr
−1
), Low (15–45 t ha
−1
yr
−1
), Moderate (45–75 t ha
−1
yr
−1
), and High (>75 t ha
−1
yr
−1
).
It was found from the generated soil erosion severity map that about 45% of the catchment area was vulnerable to the erosion with an annual soil loss of (>75 t ha
−1
yr
−1
), and this demonstrates that the erosion reduction actions are immediately required to ensure the sustainable soil resources in the study area.
The soil erosion severity map generated based on RUSLE model and GIS platforms have a paramount role to alert all stakeholders in controlling the effects of the erosion.
The results of the RUSLE model can also be further considered along with the catchment for practical soil loss protection practices.
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