Search results for "Environmental Biotechnology"

showing 10 items of 568 documents

Testing infiltration run effects on the estimated water transmission properties of a sandy-loam soil

2016

Abstract Testing factors influencing determination of soil water transmission properties by an infiltrometer method helps better interpretation of the collected data and allows the development of appropriate sampling strategies for the intended use of the data. These factors include the soil water content at the start of the experiment, the height from which water is poured onto the soil surface, and the duration of the infiltration run. A sandy-loam soil was sampled with the BEST (Beerkan Estimation of Soil Transfer parameters) procedure of soil hydraulic characterization and two heights of pouring of water (0.03 and 1.5 m) under three different initial soil water content, θ i (0.12 ≤ θ i …

HydrologySoil test0208 environmental biotechnologySoil Science02 engineering and technologyRun duration020801 environmental engineeringInfiltration (hydrology)Hydraulic conductivitySoil hydraulic propertieLoamSoil waterSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliEnvironmental scienceBeerkan infiltration runInfiltrometerBEST procedureHeight of pouring of waterSurface runoffWater contentGeoderma
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Quick and Slow Components of the Hydrologic Response at the Hillslope Scale

2016

It is widely recognized that the Hortonian mechanism of runoff generation occurs in arid and semi-arid regions, generally characterized by high rainfall intensity on soils exhibiting low infiltrabilities. Differently, in steeply sloping forested watersheds in humid climates, by infiltrating through a highly permeable upper soil horizon, water moves beneath the soil surface determining a slow response. However, in most real cases, for example when in arid regions mountain forested areas take place, both (quick and slow) runoff generation processes coexist and together contribute to the hydrologic hillslope response. In this paper, based on analytical solutions of the hydrologic response, ins…

HydrologySubsurface stormflowGamma probability density function0208 environmental biotechnologyhillslope scale overland flow subsurface stormflow instantaneous response function gamma probability density function02 engineering and technologySoil surfaceAgricultural and Biological Sciences (miscellaneous)Arid020801 environmental engineeringInstantaneous response functionOverland flowSoil waterEnvironmental scienceSoil horizonSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliSlow responseHillslope scaleScale (map)Surface runoffIntensity (heat transfer)Water Science and TechnologyCivil and Structural Engineering
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Experimental investigation on dispersion mechanisms in rigid and flexible vegetated beds

2018

Vegetation in channels strongly affects flow structure and turbulence, with consequences on the hydrological storage of nutrients and chemical tracers, the shelter of stream biota as well as the trapping or transport of sediments. At the same time, all these phenomena are inevitably subjected to alteration of hydrological conditions in fluvial systems due to climate change. The present study intends to provide a thorough investigation into the processes of transport and dispersion induced by flow turbulence within the vegetation structure. Specifically, velocity measurements in vegetated channels were intensively conducted and analyzed in the case of both flexible submerged and rigid emerge…

HydrologyTurbulence0208 environmental biotechnologyFlow (psychology)Rigid vegetationClimate changeSoil scienceBiotaAdvective transport02 engineering and technologyVegetationRigid vegetation flexible vegetation turbulent length dispersion advective transportDispersionPhysics::Geophysics020801 environmental engineeringSettore ICAR/01 - IdraulicaPhysics::Fluid DynamicsCurrent (stream)Environmental scienceSpatial variabilityDispersion (water waves)Flexible vegetationTurbulent lengthWater Science and Technology
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Derivation of Rainfall Thresholds for Flash Flood Warning in a Sicilian Basin Using a Hydrological Model

2016

Abstract The damages caused by flash floods are among the most onerous in terms of loss of lives and damage to properties. Derivation of rainfall threshold is one of the approaches commonly used for the development of flash flood warning systems. Specifically, rainfall threshold is the rainfall amount that, for a given basin area and duration, is enough to cause flooding and, therefore, it indicates the maximal sustainable rainfall for a basin. The aim of this paper is deriving flash flood-rainfall thresholds for a Sicilian basin (Italy) throughout a deterministic approach. The conceptual hydrological model TOPDM was used to estimate the amount of rainfall that, for given duration, hydrolog…

HydrologyWarning systemMeteorologySettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologia0208 environmental biotechnologyFlooding (psychology)hydrological modelrainfall threshold02 engineering and technologyGeneral MedicineStructural basinrainfall thresholds020801 environmental engineeringRunoff modelhydrological model.Engineering (all)Hyetographflash flood; hydrological model; rainfall thresholds; Sicily; Engineering (all)Flash floodEnvironmental scienceflash floodWater contentSicilyIntensity (heat transfer)Engineering(all)Procedia Engineering
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Testing the Outflow Process over a Triangular Labyrinth Weir

2017

In this paper, the dimensionless stage-discharge relation for a sharp-crested triangular labyrinth weir, determined in a previous study, is initially tested by some experimental runs carried out in a laboratory flume. According to this relationship, the flow magnification is affected by the length-magnification ratio and the head to one cycle width ratio. The measurements allowed to test the applicability of this dimensionless relation for different values of both the angle of the sidewall to the main flow direction and the weir height. Finally, the proposed dimensionless equation was also tested by using experimental measurements carried out for broad-crested triangular labyrinth weir.

Hydrologyanimal structures010504 meteorology & atmospheric sciences0208 environmental biotechnologyGeometry02 engineering and technology01 natural sciencesAgricultural and Biological Sciences (miscellaneous)020801 environmental engineeringOpen-channel flowPhysics::Fluid Dynamicsembryonic structuresWeirOpen-channel flowSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliDischargeOutflowWeirHeadNonlinear Sciences::Pattern Formation and SolitonsGeology0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringJournal of Irrigation and Drainage Engineering
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A GIS-Based Model for the analysis of an urban flash flood and its hydro-geomorphic response. The Valencia event of 1957

2016

Summary Flash floods are recurrent events around the Mediterranean region. Extreme episodes activate hydro-geomorphic high-intensity processes with low frequency. In urban environments, the complexity becomes higher due to the existence of very quick-response runoff. However, immediate recovery works remove the urban marks. After a short time both the significance and magnitude of the hydro-geomorphic event become completely unrecognizable. Nevertheless, these episodes generate extensive documentation which is testimony of the processes in almost real time. It is necessary to exploit this source typology in order to draw flood sketches when events far in time may lack a sufficiently rich da…

Hydrologygeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesFlood mythbusiness.industry0208 environmental biotechnologyEnvironmental resource management02 engineering and technologySTREAMS01 natural sciencesMetropolitan areaDeposition (geology)020801 environmental engineeringFlash floodStage (hydrology)LeveeSurface runoffbusiness0105 earth and related environmental sciencesWater Science and TechnologyJournal of Hydrology
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Using post-flood surveys and geomorphologic mapping to evaluate hydrological and hydraulic models: The flash flood of the Girona River (Spain) in 2007

2016

This paper analyzes the Girona River (Spain) flash flood, occurred on the 12th of October 2007, combining hydrological and hydraulic modeling with geomorphologic mapping and post-flood survey information. This research aims to reproduce the flood event in order to understand and decipher the flood processes and dynamics on a system of prograding alluvial fans. The hydrological model TETIS was used to characterize the shape and dimension of the October 2007 Girona River hydrograph. Subsequently, the flood event was reproduced using the free surface flow module of the model RiverFlow2D. The combination of hydrological and hydraulic models was evaluated using post-flood surveys defining maximu…

Hydrologygeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesFloodplainFlood mythHydraulic engineering0208 environmental biotechnologyFlash floodsAlluvial fanAlluvial fansGeomorphologic mappingHydrograph02 engineering and technology01 natural sciencesHydrological modeling020801 environmental engineeringPost-flood surveys100-year floodFlash floodHydraulic modelingSurface runoffGeology0105 earth and related environmental sciencesWater Science and Technology
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Morphological Similarity of Channels: From Linear Erosional Features (Rill, Gully) to Alpine Rivers

2017

Hydrologygeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesMorphological similarity0208 environmental biotechnologySoil Science02 engineering and technologyDevelopmentChannel geometry01 natural sciences020801 environmental engineeringRillEnvironmental ChemistryGeomorphologyGeology0105 earth and related environmental sciencesGeneral Environmental ScienceLand Degradation & Development
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Vegetation effects on cross-sectional flow in a large amplitude meandering bend

2017

ABSTRACTCross-stream circulation, which develops in meandering bends, exerts an important role in velocity redistribution. This paper investigates how the presence of vegetation could affect the evolution pattern of cross-stream flow along a high-curvature meandering bend. The analysis is conducted with the aid of data collected in a meandering laboratory flume over non-vegetated and vegetated beds. The experiments reveal that, once the vegetation is introduced, the flow pattern determined by the channel’s curvature is interrupted. In the presence of vegetation, the central-region circulation cell seems to be divided into thin circulation cells developing at the top of the vegetated layer a…

Hydrologygeographygeography.geographical_feature_category0208 environmental biotechnologyFlow (psychology)Point bar02 engineering and technologySecondary flowCurvatureChannel bend flow pattern meandering secondary flow vegetated flow020801 environmental engineeringFlumeCirculation (fluid dynamics)medicinemedicine.symptomVegetation (pathology)GeologyChannel (geography)Water Science and TechnologyCivil and Structural EngineeringJournal of Hydraulic Research
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ASSESSMENT OF RIVER FLOW WITH SIGNIFICANT LATERAL INFLOW THROUGH REVERSE ROUTING MODELING

2017

The discharge hydrograph estimation in rivers based on reverse routing modeling and using only water level data at two gauged sections is here extended to the most general case of significant lateral flow contribution, without needing to deploy rainfall-runoff procedures. The proposed methodology solves the Saint-Venant equations in diffusive form also involving the lateral contribution using an ‘head driven’ modeling approach where lateral inflow is assumed to be function of the water level at the tributary junction. The procedure allows to assess the discharge hydrograph at ends of a selected river reach with significant lateral inflow, starting from the stage recorded there and without n…

Hydrologygeographygeography.geographical_feature_categoryHydraulics0208 environmental biotechnologydischarge estimation lateral inflow reverse routing model hydraulic modelingHydrograph02 engineering and technologyInflow020801 environmental engineeringlaw.inventionSettore ICAR/01 - IdraulicaUpstream and downstream (DNA)Routing (hydrology)lawStreamflowTributaryStage (hydrology)GeologyWater Science and Technology
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