Search results for "erosivity index"

showing 2 items of 2 documents

Predicting unit plot soil loss in Sicily, south Italy

2008

Predicting soil loss is necessary to establish soil conservation measures. Variability of soil and hydrological parameters complicates mathematical simulation of soil erosion processes. Methods for predicting unit plot soil loss in Sicily were developed by using 5 years of data from replicated plots. At first, the variability of the soil water content, runoff, and unit plot soil loss values collected at fixed dates or after an erosive event was investigated. The applicability of the Universal Soil Loss Equation (USLE) was then tested. Finally, a method to predict event soil loss was developed. Measurement variability decreased as the mean increased above a threshold value but it was low als…

HydrologyThreshold limit valueStormcomplex mixturesUniversal Soil Loss Equationerosivity indexSoil waterErosionEnvironmental scienceUSLEsoil loSurface runoffSoil conservationWater contentWater Science and Technology
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Testing alternative erosivity indices to predict event soil loss from bare plots in Southern Italy

2009

Methods for predicting unit plot soil loss for the ‘Sparacia’ Sicilian (Southern Italy) site were developed using 316 simultaneous measurements of runoff and soil loss from individual bare plots varying in length from 11 to 44 m. The event unit plot soil loss was directly proportional to an erosivity index equal to (QREI30)1·47, being QREI30 the runoff ratio (QR) times the single storm erosion index (EI30). The developed relationship represents a modified version of the USLE-M, and therefore it was named USLE-MM. By the USLE-MM, a constant erodibility coefficient was deduced for plots of different lengths, suggesting that in this case the calculated erodibility factor is representative of a…

Hydrologysoil erosionScale (ratio)predicting soil lorunoff ratioStormSoil lossUniversal Soil Loss Equationerosivity indexSoil waterErosionSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliEnvironmental scienceSurface runoffWater Science and TechnologyEvent (probability theory)Hydrological Processes
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