Search results for "universal soil loss equation"

showing 10 items of 28 documents

Applying the RUSLE and ISUM in the Tierra de Barros Vineyards (Extremadura, Spain) to Estimate Soil Mobilisation Rates

2020

Spain is one of the largest wine producers in the world, with Extremadura (south-west Spain) being its second-largest producing region after Castilla La Mancha. Within Extremadura, the most traditional and productive viticulture region is the Tierra de Barros, which boasts an annual production of 3&times

soil management system010501 environmental sciences01 natural sciencesVineyardlcsh:AgriculturevineyardsRUSLETierra de Barros0105 earth and related environmental sciencesNature and Landscape ConservationHydrologyGlobal and Planetary Changesoil erosionEcologylcsh:S04 agricultural and veterinary sciencesTillageUniversal Soil Loss EquationSoil water040103 agronomy & agricultureErosionLand degradation0401 agriculture forestry and fisheriesEnvironmental scienceViticultureSoil conservationISUMLand
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Supporting USLE-MM reliability by analyzing soil loss measurement errors

2017

Sampling the collected suspension in a storage tank is a common procedure to obtain soil loss data. A calibration curve of the tank has to be used to obtain actual concentration values from those measured by sampling. However, literature suggests that using a tank calibration curve was not a common procedure in the past. For the clay soil of the Sparacia (Italy) experimental station, this investigation aimed to establish a link between the relative performances of the USLE-M and USLE-MM models, usable to predict plot soil loss at the event temporal scale, and soil loss measurement errors. Using all available soil loss data, lower soil loss prediction errors were obtained with the USLE-MM (e…

soil erosionUSLE-MUSLE-MMSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestalisoil loUniversal Soil Loss Equationplot measurementsoil loss errorWater Science and Technology
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Testing the long term applicability of USLE-M equation at a olive orchard microcatchment in Spain

2016

Abstract Universal Soil Loss Equation USLE-based erosion models have been used extensively to complement erosion measurements, to understand the interactions of the different geophysical features into erosion processes and to assess adequate alternative management practices and scenarios analyses. Despite its proved usefulness on different land-uses around the world, there is an urgent need to set up simple tools which do not require an advanced management expertise in terms of both choose of model parameters and calculation ability and which are accurate particularly at the event scale. In this paper the suitability of the Modified USLE (USLE-M) model at the event and the annual scale were…

HydrologyScale (ratio)USLE-M model RUSLE olive orchard crop factor soil losses sediment delivery0208 environmental biotechnologySediment02 engineering and technology020801 environmental engineeringTerm (time)Universal Soil Loss EquationCrop factorErosionSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliEnvironmental scienceNash–Sutcliffe model efficiency coefficientEarth-Surface ProcessesEvent (probability theory)CATENA
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A pedotransfer function for estimating the soil erodibility factor in Sicily

2009

The soil erodibility factor, K, of the Universal Soil Loss Equation (USLE) is a simple descriptor of the soil susceptibility to rill and interrill erosion. The original procedure for determining K needs a knowledge of soil particle size distribution (PSD), soil organic matter, OM, content, and soil structure and permeability characteristics. However, OM data are often missing and soil structure and permeability are not easily evaluated in regional analyses. The objective of this investigation was to develop a pedotransfer function (PTF) for estimating the K factor of the USLE in Sicily (south Italy) using only soil textural data. The nomograph soil erodibility factor and its associated firs…

geographygeography.geographical_feature_categorySoil textureMechanical EngineeringSoil organic matterlcsh:SBioengineeringSoil sciencelcsh:S1-972Industrial and Manufacturing EngineeringSoil gradationRilllcsh:AgricultureSoil erosion Soil erodibility Pedotransfer functionsUniversal Soil Loss EquationSoil structurePedotransfer functionErosionSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestalilcsh:Agriculture (General)Mathematics
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Predicting maximum annual values of event soil loss by USLE-type models

2017

Abstract Previous experimental investigations showed that a large proportion of total plot soil erosion over a long time period is generally due to relatively few, large storms. Consequently, erosion models able to accurately predict the highest plot soil loss values have practical importance since they could allow to improve the design of soil conservation practices in an area of interest. At present USLE-based models are attractive from a practical point of view, since the input data are generally easy to obtain. The USLE was developed with specific reference to the mean annual temporal scale but it was also applied at the event scale. Other models, such as the USLE-M and the USLE-MM, app…

Annual maximaHydrologyData collectionScale (ratio)0208 environmental biotechnologyBare plotEvent soil lo04 agricultural and veterinary sciences02 engineering and technology020801 environmental engineeringData setUniversal Soil Loss Equation040103 agronomy & agricultureErosionUSLE-MUSLE-MMSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestali0401 agriculture forestry and fisheriesEnvironmental scienceUSLESurface runoffSoil conservationEarth-Surface ProcessesEvent (probability theory)CATENA
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Establishing soil loss tolerance: an overview

2016

Soil loss tolerance is a criterion for establishing if a soil is potentially subjected to erosion risk, productivity loss and if a river presents downstream over-sedimentation or other off-site effects are present at basin scale. At first this paper reviews the concept of tolerable soil loss and summarises the available definitions and the knowledge on the recommended values and evaluating criteria. Then a threshold soil loss value, at the annual temporal scale, established for limiting riling was used for defining the classical soil loss tolerance. Finally, some research needs on tolerable soil loss are listed.

Soil erosion soil loss soil loss tolerance Universal Soil Loss Equation0208 environmental biotechnologyUniversal soil loss equationBioengineeringSoil science02 engineering and technologyAgricultural engineeringcomplex mixturesIndustrial and Manufacturing Engineeringlcsh:Agriculturesoil loss toleranceSoil lossSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestalilcsh:Agriculture (General)Basin scaleSoil loSoil loss toleranceMechanical EngineeringScale (chemistry)lcsh:S04 agricultural and veterinary sciencesLimitingResearch needslcsh:S1-972020801 environmental engineeringuniversal soil loss equation.Universal Soil Loss EquationSoil erosion040103 agronomy & agricultureErosionsoil loss0401 agriculture forestry and fisheriesEnvironmental scienceJournal of Agricultural Engineering
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Testing the USLE-M family of models at the Sparacia experimental site in south Italy

2017

The modified Universal Soil Loss Equation (USLE-M) was empirically deduced by a statistical analysis of the original data set of soil loss measurements used to derive the Universal Soil Loss Equation (USLE). The USLE-M, including the effect of runoffin the event rainfall-runofferosivity factor, is characterized by a better capacity to predict event soil loss. At first, in this paper, using the soil erosion representative variables of USLE-M and the reference condition adopted in the USLE, the dimensional analysis and the self-similarity theory are applied to theoretically deduce a multiplicative equation similar to the USLE-M. Then using the database of the Sparacia experimental site, the a…

Dimensional analysi23000208 environmental biotechnologySoil science02 engineering and technology020801 environmental engineeringOriginal dataPlot soil loSet (abstract data type)Universal Soil Loss EquationSoil lossSelf-similarity theorySoil erosionUSLE-MUSLE-MMEnvironmental ChemistrySettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliStatistical analysisUniversal Soil Loss Equation (USLE)General Environmental ScienceMathematicsCivil and Structural EngineeringWater Science and Technology
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Elaborazione e validazione di modelli dell’impatto antropico e dei cambiamenti climatici sulle qualità dei suoli in Sicilia, con particolare attenzio…

Il declino della sostanza organica e l’erosione idrica sono due fattori di rischio di degrado del suolo fra i più diffusi in Sicilia. In che misura è possibile contrastarli modificando le attività antropiche ed in particolare quelle in ambito agricolo? Lo scopo della presente ricerca di dottorato è stato quello di mettere a punto dei modelli che permettessero di spiegare le relazioni esistenti fra le azioni dell’uomo in ambito agricolo con la sostanza organica e con l’erosione idrica nei suoli siciliani, tenendo conto anche del clima. Le due indagini sono state svolte separatamente, in parallelo, in aree agricole della Sicilia occidentale per la sostanza organica, sull’intero territorio sic…

soil erosion by water riskrischio di declino del carbonio organico dei suoliagricoltura conservativa validazione bayesianaSettore AGR/14 - Pedologiarischio di erosione idrica dei suoliconservative agriculture Universal Soil Loss Equation bayesian validationsoil organic carbon decline risk
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Uso del método mejorado del uso del injerto (Isum) como herramienta para determinar el valor de factores topográficos alternativos en la estimación d…

2020

Made available in DSpace on 2020-12-12T02:01:35Z (GMT). No. of bitstreams: 0 Previous issue date: 2020-03-15 The Improved Stock Unearthing Method (ISUM) was initially designed to assess soil mobilisation rates in vineyards; however, other grafted crops such as citrus orchards could also be successfully used. The results obtained from ISUM have been used for several goals, but have not yet been applied for computing the LS factor (length and slope) as a part of the Universal Soil Loss Equation (USLE), which could give useful information to improve soil management system plans. This investigation was conducted in an 8-year old clementine field located in Canals (Valencia, Spain) and values of…

geographygeography.geographical_feature_categoryClementine cropErosive processSoil ScienceSoil scienceEnvironmental modelling04 agricultural and veterinary sciences010501 environmental sciences01 natural sciencesBulk densityRillSoil managementTillageAgricultural managementUniversal Soil Loss Equation040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceSurface runoffTransectStock (geology)LS factor0105 earth and related environmental sciencesSpanish Journal of Soil Science
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A comprehensive analysis of Universal Soil Loss Equation-based models at the Sparacia experimental area

2020

Improving Universal Soil Loss Equation (USLE)‐based models has large interest because simple and reliable analytical tools are necessary in the perspective of a sustainable land management. At first, in this paper, a general definition of the event rainfall‐ runoff erosivity factor for the USLE‐based models, REFₑ = (QR)ᵇ¹(EI₃₀)ᵇ², in which QR is the event runoff coefficient, EI₃₀ is the single‐storm erosion index, and b₁ and b₂ are coefficients, was introduced. The rainfall‐runoff erosivity factors of the USLE (b₁ = 0 and b₂ = 1), USLE‐M (b₁ = b₂ = 1), USLE‐MB (b₁ ≠ 1 and b₂ = 1), USLE‐MR (b₁ = 1 and b₂ ≠ 1), USLE‐MM (b₁ = b₂ ≠ 1), and USLE‐M2 (b₁ ≠ b₂ ≠ 1) can be defined using REFₑ. Then t…

USLE-type erosion modelssoil erosion010504 meteorology & atmospheric sciencesevent soil lo0207 environmental engineeringsoil loss prediction02 engineering and technology01 natural sciencesPlot (graphics)Term (time)Data setUniversal Soil Loss EquationStatisticsExponentErosionSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestali020701 environmental engineeringSurface runoff0105 earth and related environmental sciencesWater Science and TechnologyEvent (probability theory)Mathematics
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