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    Publication Date: 2018-03-07
    Description: The present study demonstrates a spatially distributed application of field-scale annual soil loss model the modified-MMF (MMMF) to a large watershed using hydrological routing techniques, remote sensing data and geospatial technologies. In this study, the MMMF model is implemented after incorporating the corrections suggested in recent literature along with appropriate modifications in the model to suit the agro-climatological conditions prevailing in most parts of India. Sensitivity analysis carried out through an Average Linear Sensitivity approach indicates that the model outputs are highly sensitive to soil moisture (MS), bulk density (BD), effective hydraulic depth (EHD), ground cover (GC) and settling velocity for clay (VS c ). During calibration and validation, the performance evaluation statistics are mostly in the range of very good to satisfactory for both runoff and soil loss at the watershed outlet. Even spatial validation of the results of intermediate processes in the water phase and the sediment phase, though qualitatively, seems to be reasonable and rational. Furthermore, the soil erosion severity analysis for different land-use existing in the watershed indicates that about 90% of the watershed area especially those occupied by agricultural lands are vulnerable to the long-term effects of soil erosion.
    Print ISSN: 0197-9337
    Electronic ISSN: 1096-9837
    Topics: Geography , Geosciences
    Published by Wiley-Blackwell
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