Search results for "idraulica"

showing 10 items of 1075 documents

Testing soil water repellency in a Sicilian area two years after a fire

2019

The water drop penetration time (WDPT) technique was applied in 2018 to check persistence of soil water repellency (SWR) in a Sicilian mountain area affected by a wildfire on June 2016. A total of four sites, that were severely water repellent immediately after burning, were sampled. Depending on the site, wettable soil conditions, less SWR and maintenance of a noticeable SWR were detected two years later. At the site showing a near-constant SWR, WDPTs were particularly high in the top soil layer (0-0.03 m) and they appreciably decreased more in depth. Signs of decreasing SWR in drier soil conditions and in association with coarser soil particles were also detected at this site. High gradie…

0208 environmental biotechnologyBioengineeringSoil science02 engineering and technologySoil surfaceIndustrial and Manufacturing Engineeringlcsh:AgricultureField and laboratory investigationFire-induced soil water repellencyWater repellentSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestalifield and laboratory investigations.lcsh:Agriculture (General)temporal persistenceTopsoilMechanical Engineeringlcsh:S04 agricultural and veterinary scienceslcsh:S1-972020801 environmental engineeringInfiltration (hydrology)Soil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental sciencewater drop penetration time technique
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Comparing two applicative criteria of the soil erosion physical model concept

2017

The physical model represented by a replicated plot has been suggested to be the best possible, unbiased, real world model to predict plot soil erosion. The aim of this investigation was to compare the original applicative criterion of the physical model concept proposed by Nearing with that later suggested by Bagarello et al. The comparison was performed by using three empirical soil erosion models (the Universal Soil Loss Equation [USLE], a modified USLE [USLE-MM], and the Central and Southern Italy [CSI] model) and plot soil loss data collected at the experimental station of Sparacia, in Sicily (southern Italy). The investigation showed that (i) the new criterion was generally more restr…

0208 environmental biotechnologySoil ScienceEnvironmental scienceSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliGeotechnical engineeringErosion Forecasting Sediment transport02 engineering and technology020801 environmental engineering
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Analytical approach extending the Granier method to radial sap flow patterns

2020

Abstract The Granier thermal dissipation (TD) method is probably the most applied method to compute the transpiration flux of trees, due to its simplicity and effective compromise between theory and data availability. Starting from the heat transfer equations at the basis of Granier’s method, the objective of this paper is to derive an analytical solution for the transpiration flux to extend the sap flow equations to the radial domain. We adopted a flexible approach to cope with the differences in radial sapflow density (SFD) profile shapes that are known to occur in relation to wood anatomy (diffuse porous vs. ring- or non-porous xylem). With this purpose, we investigated the robustness of…

0208 environmental biotechnologySoil ScienceMonotonic function04 agricultural and veterinary sciences02 engineering and technologyMechanicsFlow patternAnalytical solutions020801 environmental engineeringSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeTree structureRadial sap flow patternExtended formulation040103 agronomy & agriculture0401 agriculture forestry and fisheriesGranier methodSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliHeat equationCambiumAgronomy and Crop ScienceTree speciesEarth-Surface ProcessesWater Science and TechnologyTranspirationMathematics
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River processes and Links between fluvial and coastal systems in a changing climate

2018

It is well known that a changing climate leads to changes in the frequency, intensity, spatial extent, duration, and timing of extreme weather and climate events. Models indicate substantial warming in temperature extremes by the end of the 21st century (IPCC, 2012). The global warming determines several environmental problems altering the hydrologic cycle, with changes to the amount, timing, and intensity of precipitation (see as an example Rahimpour Golroudbary et al., 2016), and impacting on the soil erosion rate and on the quality of aquatic and marine environments (see as an example Robins et al., 2016). The present Special Issue collects main contributions arising from the aforementio…

021110 strategic defence & security studiesEarth science0211 other engineering and technologiesFluvialRiver Climate changes risks02 engineering and technologyGeologySettore ICAR/01 - IdraulicaWater Science and TechnologyAdvances in Water Resources
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Performance Study of Twisted Darrieus Hydrokinetic Turbine With Novel Blade Design

2021

Abstract Twisted Darrieus water turbine is receiving growing attention for small-scale hydropower generation. Accordingly, the need for raised water energy conversion incentivizes researchers to focus on the blade shape optimization of twisted Darrieus turbine. In view of this, experimental analysis has been performed to appraise the efficiency of a spiral Darrieus water rotor in the present work. To better the performance parameters of the studied water rotor with twisted blades, three novel blade shapes, namely U-shaped blade, V-shaped blade, and W-shaped blade, have been numerically tested using a computational fluid dynamics three-dimensional numerical model. The maximum power coefficie…

060102 archaeologyBlade (geometry)Renewable Energy Sustainability and the Environmentbusiness.industryTurbulence020209 energyMechanical EngineeringEnergy Engineering and Power Technology06 humanities and the arts02 engineering and technologyComputational fluid dynamicsTurbineSettore ICAR/01 - IdraulicaFuel TechnologyGeochemistry and Petrology0202 electrical engineering electronic engineering information engineeringEnvironmental science0601 history and archaeologybusinessalternative energy sources blade shape CFD efficiency energy extraction of energy from its natural resource flow characteristics power (co-) generation renewable energy twisted bladeHydraulic turbinesMarine engineeringJournal of Energy Resources Technology
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Analytical solution of kinematic wave time of concentration for overland flow under green-ampt infiltration

2015

In this paper the well-known kinematic wave equation for computing the time of concentration for impervious surfaces has been extended to the case of pervious hillslopes, accounting for infiltration. An analytical solution for the time of concentration for overland flow on a rectangular plane surface is derived using the kinematic wave equation under the Green-Ampt infiltration. The relative time of concentration is defined as the ratio between the time of concentration of an infiltrating plane and the soil sorptivity time scale, depending on the normalized rainfall intensity and a parameter synthesizing the soil and hillslope characteristics. It is shown that for a more complex case (corre…

2300Sorptivity0208 environmental biotechnologyGreen-Ampt infiltration model; Hillslope hydrology; Kinematic wave equations; 2300; Environmental Chemistry; Water Science and Technology; Civil and Structural Engineering02 engineering and technologyMechanicsGreen-Ampt infiltration modelHillslope hydrologyPhysics::Geophysics020801 environmental engineeringKinematic wave equationKinematic waveInfiltration (hydrology)Error analysisImpervious surfaceEnvironmental ChemistrySettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliGeotechnical engineeringSurface runoffTime of concentrationGeologyGeneral Environmental ScienceWater Science and TechnologyCivil and Structural Engineering
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The role of the tidal and wind forces on the hydrodynamic flow pattern in the Augusta Harbour (Italy)

2012

3D numerical modelingwindHydrodynamicSettore ICAR/01 - Idraulica
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EXTERNAL RECIRCULATION IN PRS TYPE TURBINE: EXPERIMENTAL AND NUMERICAL RESULTS.

2022

Cavitation is a relevant phenomenon for structural safety and noise level in hydraulic turbines, occurring when water pressure falls below the vapor value at a given temperature. In this case bubbles of vapor grow inside the liquid and move along with it. When the pressure returns above the vapor value the bubble collapses, and the pressure can locally achieve very high values, up to 7000 bars (Kumar & Saini, 2010). Moreover, if the bubble was confined also by the solid wall of a blade, the solid particles suspended in the fluid can be transported by the fluid ones and hit the solid wall at very high velocity, generating erosion. Cavitation is also the source of high frequency noise, ve…

3D simulations of a PRS type turbine identify low pressure zones inside the runner.3D Numerical simulations of the modified device confirm the sought after improvement.Experimental measures on a 5 kW prototype also confirm the sought after improvement.External recirculation of a small flux provides the required pressure increment in the target area.Settore ICAR/01 - Idraulica
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Polyester microplastic fibers affect soil physical properties and erosion as a function of soil type

2021

Microplastics are recognized as a factor of global change contaminating many environmental compartments. Agricultural soils are very likely to receive microplastic contamination and are of particular concern due to their role in food production. Microplastic fibers have already been shown to be able to affect soil properties, but their effect on different soil types is poorly understood. Moreover, limited information is available on how the presence of this pollutant can affect soil water erosion processes, which are extremely important issues in many environments. In the light of this, we performed two experiments (carried out on a microscale) to investigate how the presence of polyester m…

570soil erosion600 Technik Medizin angewandte Wissenschaften::630 Landwirtschaft::630 Landwirtschaft und verwandte Bereiche550Microplastic in soil500 Naturwissenschaften und Mathematik::570 Biowissenschaften; Biologie::570 Biowissenschaften; Biologieerosioncomplex mixtures630Settore AGR/02 - Agronomia E Coltivazioni ErbaceePolyester microplasticsoil typesoil propertiessoil physical properties500 Naturwissenschaften und Mathematik::550 Geowissenschaften Geologie::550 GeowissenschaftenSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-Forestali
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Extent and persistence of soil water repellency induced by pines in different geographic regions

2018

The extent (determined by the repellency indices RI and RIc) and persistence (determined by the water drop penetration time, WDPT) of soil water repellency (SWR) induced by pines were assessed in vastly different geographic regions. The actual SWR characteristics were estimated in situ in clay loam soil at Ciavolo, Italy (CiF), sandy soil at Culbin, United Kingdom (CuF), silty clay soil at Javea, Spain (JaF), and sandy soil at Sekule, Slovakia (SeF). For Culbin soil, the potential SWR characteristics were also determined after oven-drying at 60°C (CuD). For two of the three pine species considered, strong (Pinus pinaster at CiF) and severe (Pinus sylvestris at CuD and SeF) SWR conditions we…

631 - Agricultura. Agronomía. Maquinaria agrícola. Suelos. Edafología agrícola0208 environmental biotechnologyRepellency indexSoil science02 engineering and technologySoilSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliClay soilWater Science and TechnologyFluid Flow and Transfer Processesrepellency indexbiologyMechanical EngineeringHydraulic engineering04 agricultural and veterinary sciencesbiology.organism_classificationPine020801 environmental engineeringRepellency index.Water repellencyLoamSoil water040103 agronomy & agricultureGeographic regions0401 agriculture forestry and fisheriesEnvironmental sciencePinus pinasterTC1-978Water drop penetration time
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