Search results for "Rainfall-runoff model"

showing 7 items of 7 documents

Generation of Natural Runoff Monthly Series at Ungauged Sites Using a Regional Regressive Model

2016

Many hydrologic applications require reliable estimates of runoff in river basins to face the widespread lack of data, both in time and in space. A regional method for the reconstruction of monthly runoff series is here developed and applied to Sicily (Italy). A simple modeling structure is adopted, consisting of a regression-based rainfall–runoff model with four model parameters, calibrated through a two-step procedure. Monthly runoff estimates are based on precipitation, temperature, and exploiting the autocorrelation with runoff at the previous month. Model parameters are assessed by specific regional equations as a function of easily measurable physical and climate basin descriptors. Th…

lcsh:Hydraulic engineeringCalibration (statistics)ungauged sitesUngauged siteRainfall-runoff model0208 environmental biotechnologyGeography Planning and DevelopmentDrainage basinmonthly runoff series; Natural streamflow; Rainfall-runoff model; Regionalization; Regression method; Ungauged sites; Aquatic Science; Biochemistry; Water Science and Technology; Geography Planning and Development02 engineering and technologyAquatic ScienceStructural basinRunoff curve numberBiochemistrylcsh:Water supply for domestic and industrial purposeslcsh:TC1-978monthly runoff serieWater Science and TechnologyHydrologygeographylcsh:TD201-500geography.geographical_feature_categorynatural streamflowmonthly runoff series; regression method; rainfall–runoff model; regionalization; ungauged sites; natural streamflowAutocorrelationSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaRegression analysisrainfall–runoff model020801 environmental engineeringRunoff modelregression methodregionalizationEnvironmental scienceSurface runoffmonthly runoff seriesWater
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Influence of rating curve uncertainty on daily rainfall–runoff model predictions

2005

River discharge observations are usually affected by uncertainty, which is due to many concurrent causes and strongly affects the response of rainfall-runoff models. The present paper is aimed at studying the influence of imperfect rating curve knowledge on the uncertainty of the response of a daily conceptual linear-nonlinear rainfall-runoff model. To describe the impact of imperfect rating curve knowledge, simulations have been conducted using a conceptual rainfall-runoff model and continuous daily series of rainfall, air temperature and discharges recorded in a Sicilian catchment. The GLUE procedure was used to introduce the uncertainty of the rating curve in a classical rainfall-runoff …

Rainfall-runoff modelSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaRating curveUncertaintyGLUEIHACRES
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An automatic tool for reconstructing monthly time-series of hydro-climatic variables at ungauged basins

2017

Abstract Integrative information models for filling/reconstructing hydro-climatic time-series are required for a variety of practical applications. A GIS-based model for a rapid and reliable assessment of monthly time-series of several key hydro-climatic variables at the basin scale, is here developed as plug-in and applied to the entire region of Sicily (Italy). The plug-in, once the desired basin outlet section and time-window are selected, uses appropriate spatial techniques and algorithms to identify its drainage area and estimate the corresponding mean areal rainfall and temperatures time-series. A recent regional regressive rainfall-runoff model is successively applied for the assessm…

Environmental EngineeringMeteorologyInterface (computing)Rainfall-runoff model0208 environmental biotechnologyDrainage basin02 engineering and technologyStructural basinWater balanceEcosystem modelEvapotranspirationHydrologygeographygeography.geographical_feature_categoryEcological ModelingSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaGIS020801 environmental engineeringMODISInformation modelEnvironmental scienceThornthwaite methodWater balance modelSurface runoffSoftwareMonthly time-serieEnvironmental Modelling & Software
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Estimation of synthetic flood design hydrographs using a distributed rainfall–runoff model coupled with a copula-based single storm rainfall generator

2014

Abstract. In this paper a procedure to derive synthetic flood design hydrographs (SFDH) using a bivariate representation of rainfall forcing (rainfall duration and intensity) via copulas, which describes and models the correlation between two variables independently of the marginal laws involved, coupled with a distributed rainfall–runoff model, is presented. Rainfall–runoff modelling (R–R modelling) for estimating the hydrological response at the outlet of a catchment was performed by using a conceptual fully distributed procedure based on the Soil Conservation Service – Curve Number method as an excess rainfall model and on a distributed unit hydrograph with climatic dependencies for the …

lcsh:GE1-350Return periodHydrologyFlood mythMeteorologySettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologialcsh:QE1-996.5Copula (linguistics)lcsh:Geography. Anthropology. RecreationHydrographRunoff curve numberlcsh:TD1-1066Runoff modelDesign hydrographs Flood frequency estimation bivariate analysis copula distributed rainfall-runoff models flood risk analysislcsh:Geologylcsh:GGeneral Earth and Planetary SciencesEnvironmental sciencelcsh:Environmental technology. Sanitary engineeringDigital elevation modellcsh:Environmental sciencesFlow routingNatural Hazards and Earth System Sciences
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Derivation of flood frequency curves in poorly gauged Mediterranean catchments using a simple stochastic hydrological rainfall-runoff model

2007

In this paper a Monte Carlo procedure for deriving frequency distributions of peak flows using a semi-distributed stochastic rainfall-runoff model is presented. The rainfall-runoff model here used is very simple one, with a limited number of parameters and practically does not require any calibration, resulting in a robust tool for those catchments which are partially or poorly gauged. The procedure is based on three modules: a stochastic rainfall generator module, a hydrologic loss module and a flood routing module. In the rainfall generator module the rainfall storm, i.e. the maximum rainfall depth for a fixed duration, is assumed to follow the two components extreme value (TCEV) distribu…

HydrologyFlood mythStochastic modellingfllod frequency curves rainfall-runoff modelMonte Carlo methodSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaAntecedent moistureSoil scienceRunoff modelEnvironmental scienceFrequency distributionExtreme value theorySurface runoffWater Science and Technology
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Daily streamlow prediction with uncertainty in ephemeral catchments using the GLUE methodology

2009

Abstract The Generalised Likelihood Uncertainty Estimation (GLUE) approach is presented here as a tool for estimating the predictive uncertainty of a rainfall–runoff model. The GLUE methodology allows to recognise the possible equifinality of different parameter sets and assesses the likelihood of a parameters set being acceptable simulator when model predictions are compared to observed field data. The results of the GLUE methodology depend greatly on the choice of the likelihood measure and on the choice of the threshold which determines if a parameters set is behavioural or not. Moreover the sampling size has a strong influence on the uncertainty assessment of the response of a rainfall–…

Computer scienceSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaEquifinalityVariance (accounting)Measure (mathematics)GeophysicsGeochemistry and PetrologySample size determinationStatisticsEconometricsSample varianceSensitivity analysisGLUEPredictive uncertainty Rainfall-Runoff model Generalized Likelehood Uncertainty Estimation Ephemeral catchmentsUncertainty analysis
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Identification of Potential Locations for Run-of-River Hydropower Plants Using a GIS-Based Procedure

2019

The increasing demand for renewable and sustainable energy sources has encouraged the development of small run-of-river plants. Preliminary studies are required to assess the technical and economic feasibility of such plants. In this context, the identification of optimal potential run-of-river sites has become a key issue. In this paper, an approach that is based on GIS tools coupled with a hydrological model has been applied to detect potential locations for a run-of-river plant. A great number of locations has been analyzed to identify those that could assure the achievement of different thresholds of potential power. The environmental and economic feasibility for small hydropower projec…

Control and OptimizationSoil and Water Assessment Toolsmall hydropower020209 energy0208 environmental biotechnologyDrainage basinEnergy Engineering and Power TechnologyContext (language use)GIS-based procedure02 engineering and technologyrun-of-riverlcsh:Technologyrainfall-runoff modelling0202 electrical engineering electronic engineering information engineeringSWATElectrical and Electronic EngineeringEngineering (miscellaneous)HydropowerSmall hydrogeographygeography.geographical_feature_categorylcsh:TRenewable Energy Sustainability and the Environmentbusiness.industryrenewable energy020801 environmental engineeringRenewable energyIdentification (information)Environmental sciencebusinessSurface runoffWater resource managementEnergy (miscellaneous)Energies
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