JOURNAL ARTICLE

Optimizing soil erosion estimates of RUSLE model by analyzing land use/cover dynamics in upper Awash River Basin, Central Ethiopia

Eyasu MekonnenAsfaw KebedeSolomon AsfawSamuel Feyissa

Year: 2023 Journal:   Geomatics Natural Hazards and Risk Vol: 14 (1)   Publisher: Taylor & Francis

Abstract

AbstractThe Revised Universal Soil Loss Equation (RUSLE) is the most widely used erosion model for decision making on conservation priority. However, interpreting estimates of the mean annual soil loss alone could not accurately depict the spatial variation of soil erosion severity due to its inherent mathematical errors. This study aims to optimize the model’s outputs through detailed analysis of land use/cover dynamics in Upper Awash River Basin, central Ethiopia (7815.1 km2). The analysis include annual rate of change, net gain or loss, and conversion pathways. Results of the estimated mean annual soil loss in the basin varies between 4.1 t/ha/y and 5.1 t/ha/y during three consecutive decades (1990-2000, 2000-2010, and 2010-2020). The cultivated land cover exhibits slight erosion severity (< 5 t/ha/y), while contributing up to 59% the total annual soil loss (3198.8 Mt/ha). Although the net loss of cultivated land cover outweighing the gain during these decades, it progressively encroaches forests (142.2 km2), shrubs (780.8 km2), and grasslands (274.5 km2). Such net loss of protective land covers will inevitably increase the soil erosion risk. Findings from the study would be useful, enabling conservation practitioners to understand the overall severity of soil erosion and make informed decisions.

Keywords:
Universal Soil Loss Equation Erosion Soil conservation Land cover Hydrology (agriculture) Soil loss Environmental science Structural basin Land use Drainage basin Surface runoff Cover (algebra) Physical geography Geography Ecology Geology Agriculture Geomorphology

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17
Cited By
4.09
FWCI (Field Weighted Citation Impact)
53
Refs
0.92
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Soil erosion and sediment transport
Life Sciences →  Agricultural and Biological Sciences →  Soil Science
Rangeland Management and Livestock Ecology
Physical Sciences →  Environmental Science →  Management, Monitoring, Policy and Law
Aeolian processes and effects
Physical Sciences →  Earth and Planetary Sciences →  Earth-Surface Processes
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