Search results for " idrologia"

showing 10 items of 476 documents

Separate and combined sewer systems: a long-term modelling approach

2009

Sewer systems convey mostly dry weather flow, coming from domestic and industrial sanitary sewage as well as infiltration flow, and stormwater due to meteoric precipitations. Traditionally, in urban drainage two types of sewer systems are adopted: separate and combined sewers. The former convey dry and wet weather flow separately into two different networks, while the latter convey dry and wet weather flow together. Which is the best solution in terms of cost-benefit analysis still remains a controversial subject. The present study was aimed at comparing the pollution loads discharged to receiving bodies by Wastewater Treatment Plant (WWTP) and Combined Sewer Overflow (CSO) for different ki…

Time FactorsEnvironmental EngineeringRainStormwaterSewageComputer SimulationSanitary sewerDrainagewastewater treatment plantWater Science and TechnologyHydrologyseparate sewer systemFourier AnalysisSewageSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryDrainage SanitarySettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaEnvironmental engineeringModels TheoreticalInfiltration (hydrology)WastewaterEnvironmental sciencewater quality managementSewage treatmentCombined sewerbusinessWater Pollutants Chemicalmathematical modelWater Science and Technology
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EFFECTS OF DATA GAP ON THE CAPABILITY TO DETECT TREND IN HYDROCLIMATOLOGICAL TIME SERIES

2012

In the last decades the growing concerns about the existence of global climatic changes push many researchers to use different trend test in order to identify whether monotonic trends exist in hydroclimatological time series such as temperature, precipitation, and streamflow. Unfortunately, these time series often suffer from missing data values mainly due to malfunctioning of gauge for specific time periods. Starting from this premise, the main target of our work is to investigate the effect of data gap in a time series on the results provided by the most used trend test: the nonparametric Mann–Kendall statistical test. Firstly, different synthetic time series characterized by different si…

Trend AnalysisData GapSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologia
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The use of soil water retention curve models in analyzing slope stability in differently structured soils

2017

Abstract This study analyzes whether and at what rate the parameterization of the Soil Water Retention Curve (SWRC) affects the analysis of shallow slope stability for differently structured unsaturated soils. Advanced empirical or physically-based equations of SWRCs have been proposed in literature to describe soil systems characterized by the so-called bimodal porous domain. In unsaturated soils, SWRC affects the stability assessment in two ways. It influences the resistance properties in terms of shear strengths, which depend on the soil water suction; and it affects the hydrological process modeling (e.g. infiltration) directly influencing soil moisture patterns and indirectly influenci…

Unsaturated soilsSoil texture0208 environmental biotechnologySettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaFactor of safety04 agricultural and veterinary sciences02 engineering and technologyHydrological modelingBimodal pore size distributionBimodal pore size distribution; Factor of safety; Hydrological modeling; Slope failure; Unsaturated soils; Earth-Surface Processes020801 environmental engineeringInfiltration (hydrology)Factor of safetySlope stabilitySoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceGeotechnical engineeringUnsaturated soilSlope failureSaturation (chemistry)PorosityWater contentEarth-Surface Processes
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Monthly Hydrological Indicators to Assess Possible Alterations on Rivers’ Flow Regime

2018

Assessing potential deviations of the fundamental river basins’ hydrological processes and streamflow characteristics from the “natural trajectory” represents a high-priority objective to understand the biological impact of altered flow regime on river ecosystems. Existing approaches are mainly based on the analysis of daily-based indicators of hydrologic alteration, which requires wide database, including “pre-impact” and “post-impact” daily flow data frequently unavailable. The hydrological modeling is commonly used to face data missing problems or reconstruct natural conditions, even if models, especially at the daily scales, are often complex and computationally intensive. The use of si…

Upstream (petroleum industry)geographyHydrological indicatorHydrogeologyRiver ecosystemgeography.geographical_feature_categoryHydrological changeSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologia0208 environmental biotechnologyDrainage basin02 engineering and technologyDam impactIARINatural (archaeology)020801 environmental engineeringStreamflowTrajectoryRange (statistics)Environmental scienceWater resource managementIHAFlow regime alterationWater Science and TechnologyCivil and Structural EngineeringWater Resources Management
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Urban runoff modelling uncertainty: Comparison among Bayesian and pseudo-Bayesian methods

2009

Urban stormwater quality modelling plays a central role in evaluation of the quality of the receiving water body. However, the complexity of the physical processes that must be simulated and the limited amount of data available for calibration may lead to high uncertainty in the model results. This study was conducted to assess modelling uncertainty associated with catchment surface pollution evaluation. Eight models were compared based on the results of a case study in which there was limited data available for calibration. Uncertainty analysis was then conducted using three different methods: the Bayesian Monte Carlo method, the GLUE pseudo-Bayesian method and the GLUE method revised by m…

Urban stormwater modellingEnvironmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-AmbientaleCalibration (statistics)Computer scienceEcological ModelingSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaBayesian probabilityMonte Carlo methodBayesian methodGeneralised Likelihood Uncertainty EstimationStatisticsUncertainty assessmentSensitivity analysisSurface runoffGLUESoftwareReliability (statistics)Uncertainty analysisEnvironmental Modelling & Software
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Effetti di urbanizzazione e cambiamenti climatici sui deflussi a scala di bacino

2016

Fra le pressioni di natura antropica agenti sui bacini idrografici, particolare rilevanza hanno sia la progressiva perdita di suoli naturali in favore di suoli poco, o per nulla, permeabili (es. strade, edifici, parcheggi, etc.) che la regimazione e regolazione dei deflussi sulla rete di drenaggio naturale mediante interventi idraulici. In particolare, l’ultima relazione sullo stato dell’ambiente europeo a cura dell’Agenzia Europea dell’Ambiente (AEA, 2010) considera l’impermeabilizzazione dei bacini naturali come uno dei maggiori processi di degrado del suolo. L’aumento del grado di urbanizzazione dei bacini naturali, inteso come aumento della frazione impermeabile del suolo derivante dell…

Urbanizzazione Cambiamenti Climatici Cambiamenti Idrologici tRIBS Generatore Climatico Modello di Land Use ChangeCambiamenti IdrologicitRIBSSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaUrbanizzazioneUrbanizzazione; Cambiamenti Climatici; Cambiamenti Idrologici; tRIBS; Generatore Climatico; Modello di Land Use ChangeGeneratore ClimaticoCambiamenti ClimaticiModello di Land Use Change
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DETERMINAZIONE DELLE CARATTERISTICHE OTTICHE DI VEGETAZIONE SOMMERSA TRAMITE METODO MONTE CARLO

2001

Si presentano i risultati di una ricerca volta alla determinazione della risposta spettrale della vegeta-zione sommersa mediante simulazioni stocastiche, con l’obiettivo di porre in risalto il range d’applicabilità (in termini di profondità e di lunghezza d’onda) delle tecniche di monitoraggio della vegetazione sommersa a partire da dati telerilevati. Per fare ciò è stato sviluppato e implementato un codice di calcolo che permette di ricostruire, mediante simulazioni stocastiche, la firma spettrale di oggetti posti sul fondale, una volta note le caratteristiche ottiche degli oggetti stessi e della colonna d’acqua. La flessibilità del modello di calcolo implementato ha inoltre permesso di es…

Vegetazione sommersa telerilevamento Monte CarloSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologia
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Using very high resolution (VHR) imagery within a GEOBIA framework for gully mapping: an application to the Calhoun Critical Zone Observatory

2019

AbstractGully erosion is a form of accelerated erosion that may affect soil productivity, restrict land use, and lead to an increase of risk to infrastructure. An accurate mapping of these landforms can be difficult because of the presence of dense canopy and/or the wide spatial extent of some gullies. Even where possible, mapping of gullies through conventional field surveying can be an intensive and expensive activity. The recent widespread availability of very high resolution (VHR) imagery has led to a remarkable growth in the availability of terrain information, thus providing a basis for the development of new methodologies for analyzing Earth's surfaces. This work aims to develop a ge…

Very high resolutionAtmospheric Science010504 meteorology & atmospheric sciencesSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologia0211 other engineering and technologiesCritical zoneeCognition GEOBIA gully erosion landform analysis soil erosion02 engineering and technologyGeotechnical Engineering and Engineering Geology01 natural sciencesObservatorySettore ICAR/06 - Topografia E CartografiaGeology021101 geological & geomatics engineering0105 earth and related environmental sciencesCivil and Structural EngineeringWater Science and TechnologyRemote sensingJournal of Hydroinformatics
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Object-based image analysis technique for gully mapping using topographic data at very high resolution (VHR)

2018

An accurate mapping of gullies is important since they are still major contributors of sediment to streams. Mapping gullies can be difficult because of the presence of dense canopy, which precludes the identification through aerial photogrammetry and other traditional remote sensing methods. Moreover, the wide spatial extent of some gullies makes their identification and characterization through field surveys a very large and expensive proposition. One cheaper and more expeditious way to detect gullies can be achieved in terms of morphological characteristics by the Digital Elevation Models (DEMs). The recent widespread availability of very high resolution (VHR) imagery, such as LIDAR data,…

Very high resolutionObject-based very high resolution segmentation classification eCognitionobject-based very high resolution segmentation classification eCognitionSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaObject basedGeologyImage (mathematics)Remote sensing
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On the influences of vegetation biomass on COSMO-Skymed X-band

2011

The knowledge of spatial and temporal variability of land cover is important to manage water resources for yield forecasting, water stress prediction, irrigation water management and flood protection. Cloud cover dramatically reduces the temporal resolution of optical data thus limiting their operational use; in addition, the spatial resolution is often inadequate for applications in heterogeneous areas. On the other hand, algorithms based on Synthetic Aperture Radar (SAR) implemented to retrieve vegetation parameters are not yet fully validated. New SAR missions (COSMO-Skymed and Terrasar-X) may represent a suitable source of data for operational uses due to the high spatial and temporal r…

Water resourcesSynthetic aperture radarRemote Sensing HydrologyGeographyTemporal resolutionCloud coverSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaVegetationLand coverNormalized Difference Vegetation IndexOlive treesRemote sensingSPIE Proceedings
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