Search results for "Hydrological modelling"

showing 10 items of 33 documents

Estimation of the spatially distributed surface energy budget for AgriSAR 2006, part II : Integration of remote sensing and hydrologic modeling

2011

In most hydrologic modeling studies, the hypothesis is made that an improvement in the modeled soil moisture leads to an improvement in the modeled surface energy balance. The objective of this paper is to assess whether this hypothesis is true. The study was performed over the winter wheat fields in the AgriSAR 2006 domain. Remotely sensed soil moisture values and latent heat fluxes were used, in combination with in situ observations. First, the land cover and saturated subsurface flow parameters were estimated using the in situ observations. A spatially distributed model simulation was then performed, for which the Brooks-Corey parameters were derived from a soil texture map, and of which…

Atmospheric ScienceMoistureSoil textureHydrological modellingMETIS-303906Soil scienceLand coverLatent heatEvapotranspirationSoil horizonEnvironmental scienceComputers in Earth SciencesWater contentRemote sensing
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Evaluating several satellite precipitation estimates and global ground-based dataset on Sicily (Italy)

2012

The developing of satellite-based precipitation retrieval systems, presents great potentialities for several ap­ plications ranging from weather and meteorological applications to hydrological modelling. Evaluating perfor­ mances for these estimates is essential in order to understand their real capabilities and suitability related to each application. In this study an evaluation analysis of satellite precipitation retrieval systems has been carried out for the area of Sicily (Italy). Sicily is an island in the Mediterranean sea with a particular climatology and morphology, which is considered as an interesting test site for satellite precipitation products on the European mid-latitude area…

CMORPHQuantitative precipitation estimationMeteorologyHydrological modellingSatellite precipitationSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaSampling (statistics)PERSIANNTMPAPhysical oceanographyMediterraneanMediterranean seaGeographyClimatologyPERSIANNSatellitePrecipitation
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Impacts of climate change on water availability in Burgundy : quantitative and qualitative aspects

2016

Numerous studies dealing with climate change impacts on water ressources have been done at global scale, but the moderated size watersheds scale is less studied. The Burgundy region is located over several hydrographical basins (Seine, Loire and Rhône river), and provides a great diversity of hydrogeological and climate contexts. For these reasons, impacts of climate change on water resources are expected to be very different in space, and require an entire hydroclimatic modelling chain at local scale to be assessed. The main objective of this thesis consisted of the implementation of a modelling tool at the moderated-size watersheds scale of Burgundy. In this way, several watersheds and tw…

Changement climatique[SDU.STU.CL] Sciences of the Universe [physics]/Earth Sciences/ClimatologyHydrological modellingModélisation hydrologique[SDU.STU] Sciences of the Universe [physics]/Earth Sciences[SDU.STU.HY] Sciences of the Universe [physics]/Earth Sciences/HydrologyClimate changeBourgogneGR4JSWATBurgundy
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Towards a new generation of high-resolution meteorological input data for small-scale hydrologic modeling

2011

Summary Current and future challenges of hydrologic sciences are to accurately predict and assess climate-driven impacts on water resources for the relevant scales of planning. However, process-based small-scale hydrologic modeling is data demanding and large uncertainties exist in data-sparse areas. The aim of our study was to test the applicability of the COSMO-DE analysis data (COSMO-DE-A) for hydrologic modeling. COSMO-DE-A data are a new meteorological data set with high temporal and spatial resolution that originates from the German Weather Service data assimilation system using the COSMO-DE weather prediction model. We collected field parameters in a small (10 km 2 ) mountainous catc…

Data setData assimilationMeteorologyHydrological modellingLatent heatReference data (financial markets)Data analysisEnvironmental scienceHydrographPrecipitationWater Science and TechnologyJournal of Hydrology
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Introduction to Hydrology

2013

Hydrology deals with the occurrence, movement, and storage of water in the earth system. Hydrologic science comprises understanding the underlying physical and stochastic processes involved and estimating the quantity and quality of water in the various phases and stores. The study of hydrology also includes quantifying the effects of such human interventions on the natural system at watershed, river basin, regional, country, continental, and global scales. The process of water circulating from precipitation in the atmosphere falling to the ground, traveling through a river basin (or through the entire earth system), and then evaporating back to the atmosphere is known as the hydrologic cyc…

Earth system scienceHydrologygeographygeography.geographical_feature_categoryHydrology (agriculture)EvapotranspirationHydrological modellingStreamflowDrainage basinEnvironmental scienceSurface-water hydrologyWater cycle
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ECOHYDROLOGICAL MODELLING IN MEDITERRANEAN AREAS AND WETLANDS

2010

La seguente dissertazione verte sul campo di ricerca noto come Ecoidrologia. Sebbene tale scienza, che studia le mutue interazioni fra ciclo idrologico e gli ecosistemi naturali, sia stata recentemente oggetto di svariati studi, alcuni dei suoi numerosi aspetti rimangono tuttavia ancora alquanto inesplorati. L’obiettivo principale della presente tesi è quello di rivisitare la letteratura scientifica esistente sull’argomento, cercando di adattare concetti e modelli sviluppati per certi ecosistemi anche alle peculiarità di altri ambienti meno studiati, come quelli aridi e semiaridi tipici della zona Mediterranea o le cosiddette “wetlands”, zone umide e paludose. In particolare, viene approfon…

EcohydrologyArid and semi-arid regionWetlandSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaEcohydrological ModellingAnalytical and numerical models for soil moisture Plant water stress
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Nutrient mitigation under the impact of climate and land-use changes: A hydro-economic approach to participatory catchment management

2020

Abstract Excessive nutrient loadings into rivers are a well-known ecological problem. Implemented mitigation measures should ideally be cost-effective, but perfectly ranking alternative nutrient mitigation measures according to cost-effectiveness is a difficult methodological challenge. Furthermore, a particularly practical challenge is that cost-effective measures are not necessarily favoured by local stakeholders, and this may impede their successful implementation in practice. The objective of this study was to evaluate the cost-effectiveness of mitigation measures using a methodology that includes a participatory process and social learning to ensure their successful implementation. By …

Environmental EngineeringCost effectivenessClimateClimate ChangeHydrological modelling0208 environmental biotechnologyWetlandContext (language use)Contour plowing02 engineering and technology010501 environmental sciencesManagement Monitoring Policy and Law01 natural sciencesRiversWaste Management and DisposalEnvironmental planning0105 earth and related environmental sciencesCost databaseSwedengeographygeography.geographical_feature_categoryLand useNutrientsGeneral MedicineSocial learning020801 environmental engineeringEnvironmental scienceJournal of Environmental Management
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Implications of terrain resolution on modeling rainfall-triggered landslides using a TIN- based model

2021

Abstract This study employs a distributed eco-hydrological-landslide model, the tRIBS-VEGGIE-Landslide, to evaluate the influence of terrain resolution on the hydro-geomorphological processes involved in slope stability analysis. The model implements a Triangulated Irregular Network (TIN) to describe the topography starting from a grid-DEM. Five grid-DEM resolutions of the case study basin, i.e., 10, 20, 30 and 70 m, are used to derive the corresponding TINs. The results show that using irregular meshes reduces the loss of accuracy with coarser resolutions in the derived slope distribution in comparison to slope distributions estimated from the original grid-based DEM. From a hydrological p…

Environmental EngineeringSlope stability analysisEcological ModelingHydrological modellingSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaResolution (electron density)TerrainLandslideSoil scienceHydrologic modelingTriangulated irregular networkDigital elevation modelsSlope stabilityNumerical modelingDigital elevation models; Hydrologic modeling; Landslides; Numerical modeling; Slope stability analysisDigital elevation models Hydrologic modeling Landslides Numerical modeling Slope stability analysisDigital elevation modelSlope stability analysisLandslidesSoftwareGeologyEnvironmental Modelling & Software
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Impact of rainfall data resolution in time and space on the urban flooding evaluation.

2013

Climate change and modification of the urban environment increase the frequency and the negative effects of flooding, increasing the interest of researchers and practitioners in this topic. Usually, flood frequency analysis in urban areas is indirectly carried out by adopting advanced hydraulic models to simulate long historical rainfall series or design storms. However, their results are affected by a level of uncertainty which has been extensively investigated in recent years. A major source of uncertainty inherent to hydraulic model results is linked to the imperfect knowledge of the rainfall input data both in time and space. Several studies show that hydrological modelling in urban are…

Environmental EngineeringTime FactorsFlood mythSpacetimeMeteorologyGeographyHydrological modellingClimate ChangeRainFlooding (psychology)UncertaintyClimate changeStormModels TheoreticalFloodsItalyAdded valueCitiesGLUEWater Science and TechnologyEnvironmental MonitoringWater science and technology : a journal of the International Association on Water Pollution Research
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Estimation of flood design hydrographs using bivariate analysis (copula) and distributed hydrological modelling

2014

Abstract. In this paper a procedure to derive Flood Design Hydrographs (FDH) using a bivariate representation of rainfall forcing (rainfall duration and intensity) using copulas, which describe and model the correlation between these two variables independently of the marginal laws involved, coupled with a distributed rainfall-runoff model is presented. Rainfall-runoff modelling for estimating the hydrological response at the outlet of a watershed used a conceptual fully distributed procedure based on the soil conservation service – curve number method as excess rainfall model and a distributed unit hydrograph with climatic dependencies for the flow routing. Travel time computation, based o…

Flood mythHydrological modellingStatisticsEconometricsHydrographBivariate analysisCopula (probability theory)Mathematics
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