Search results for "Hydropower"

showing 10 items of 30 documents

Migratory passage structures at hydropower plants as potential physiological and behavioural selective agents

2019

Anthropogenic activities affect fish populations worldwide. River dams have profound impacts on ecosystems by changing habitats and hindering migration. In an effort to counteract such effects, a range of mitigation measures have been installed at hydroelectric power plants. However, not all individuals in a population use these measures, potentially creating strong selection processes at hydroelectric power plants. This may be especially true during migration; fish can get heavily delayed or pass through a hydropower turbine, thus facing increased mortality compared with those using a safe bypass route. In this study, we quantify migration route choices of descending wild passive integrate…

0106 biological sciences1001Atlantic salmonsmoltRange (biology)Population60selectionmigration010603 evolutionary biology01 natural sciencesTurbinesurvivalHydroelectricityEcosystemlcsh:ScienceeducationHydropowerVDP::Landbruks- og Fiskerifag: 900::Fiskerifag: 920education.field_of_studyMultidisciplinarybusiness.industry010604 marine biology & hydrobiology70Biology (Whole Organism)14VDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480::Marinbiologi: 497FisheryhydropowerHabitatFish <Actinopterygii>Environmental sciencelcsh:QbusinessResearch Article
researchProduct

Introduction of Mysis relicta (Mysida) reduces niche segregation between deep-water Arctic charr morphs

2019

This is a post-peer-review, pre-copyedit version of an article published in Hydrobiologia. The final authenticated version is available online at https://doi.org/10.1007/s10750-019-3953-4. Niche diversification of polymorphic Arctic charr can be altered by multiple anthropogenic stressors. The opossum-shrimp (Mysis relicta) was introduced to compensate for reduced food resources for fish following hydropower operations in Lake Limingen, central Norway. Based on habitat use, stomach contents, stable isotopes (δ13C, δ15N) and trophically transmitted parasites, the zooplanktivorous upper water-column dwelling ‘normal’ morph was clearly trophically separated from two sympatric deep-water morphs…

0106 biological sciencesHydrobiologiaanimal structuresgenetic structuresMysis relictaistutus (eläimet)stable isotopes:Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480 [VDP]Aquatic Science010603 evolutionary biology01 natural sciencesZooplanktonäyriäisetpolymorphismnieriäeriytyminenhydropower effectsloisetVDP::Mathematics and natural scienses: 400::Zoology and botany: 48014. Life underwaterspecies introductionsecological divergencereproductive and urinary physiologySalvelinus alpinusbiologyEcology010604 marine biology & hydrobiologyfungiNiche segregationPlanktonbiology.organism_classificationDeep waterekologinen lokeroMysidaArcticVDP::Matematikk og naturvitenskap: 400::Zoologiske og botaniske fag: 480parasite communitypsychological phenomena and processes
researchProduct

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
researchProduct

Numerical analysis of a new cross-flow type hydraulic turbine for high head and low flow rate

2021

Cross-flow turbines have recently been proposed for energy recovery in aqueducts when the outlet pressure is greater than zero, owing to their constructive simplicity and good efficiency within a large range of flow rates and head drops. In the case of high head drop (higher than 150 m) and relatively small discharge (lower than 0.2 m3/s), the traditional design of these turbines leads to very small widths of the nozzle and the runner; as a consequence, friction losses grow dramatically and efficiency drops down to very low values. Standard Pelton turbines require zero outlet pressure and cannot be used as alternatives. A new counter-pressure hydraulic turbine for high head and low flow rat…

Energy recoveryGeneral Computer ScienceNumerical analysisenergy recoveryMechanicsEngineering (General). Civil engineering (General)ConstructiveVolumetric flow rateSettore ICAR/01 - Idraulicabanki–michell turbinecross-flow turbineModeling and SimulationSimplicity (photography)water distribution networkHead (vessel)Cross-flow turbineTA1-2040micro-hydropowerMicro-hydropower energy recovery cross-flow turbine water distribution network Banki–Michell turbineHydraulic turbinesMathematicsEngineering Applications of Computational Fluid Mechanics
researchProduct

A New Device for Pressure Control and Energy Recovery in Water Distribution Networks

2017

The potential energy of the water in Water Distribution Networks (WDNs) usually exceeds the amount needed for delivery and consumption and, at the present time, it is mainly dissipated through Pressure Reducing Valves (PRVs) or Open Water Tanks. The present study suggests the use of a new energy-producing device, a Cross-flow turbine with positive outlet pressure named PRS (Power Recovery System), which can provide the same service as PRVs and water tanks, with additional significant hydropower production. After a short presentation of the PRS, the management rules of the proposed device are laid out, according to two possible modes. In the ‘passive’ mode, the piezometric level downstream o…

Engineering020209 energy0208 environmental biotechnologyGeography Planning and Development02 engineering and technologyAquatic ScienceBiochemistryTurbineSettore ICAR/01 - Idraulicaturbine; power recovery system; hydropower; water supply networkControl theory0202 electrical engineering electronic engineering information engineeringProduction (economics)HydropowerWater Science and Technologypower recovery systemEnergy recoverywater supply networkbusiness.industryPressure controlMode (statistics)Environmental engineering020801 environmental engineeringPower (physics)hydropowerWater supply networkbusinessTurbineWater
researchProduct

Hydropower Generation on The Nysa Klodzka River

2014

Abstract Adopted in 2009, the Directive of the European Parliament and of the Council on the promotion of the use of energy from renewable sources sets out the rules for how Poland is to achieve the 15% target of total primary energy from renewables by 2020. However, there are fears that the goals set out in this Directive may not be met. The share of Renewable Energy Sources (RES) in national energy consumption (150 TWh) is estimated at 8.6 TWh in 2009 and 12 TWh in 2011 (5.7 and 8% respectively). The level of RES in Poland until 2005 was approx. 7.2%. The analysis of RES technologies currently in use in Poland shows that in terms of the share in the total capacity, the 750 hydro-electric …

Environmental EngineeringPower stationChemistrybusiness.industryEcology (disciplines)Environmental engineeringEnergy engineeringCivil engineeringEnergy policyRenewable energyElectricity generationEnvironmental ChemistrybusinessHydropowerHydropower engineeringEcological Chemistry and Engineering S
researchProduct

Impacts of Green Electricity Markets in the United Kingdom, Germany and Finland

2014

In liberalized electricity markets, a wide variety of competing green electricity products are available to customers in addition to competition on tariff price. These voluntary products are marketed as environmentally friendly and claimed to support renewable energy production, new capacity building and offer other environmental benefits. We review products in the UK, Germany and Finland and find that they encompass different mechanisms such as renewable sourcing, green funds or carbon offsetting. The interface between voluntary markets and renewable energy policies is especially studied. We assess if voluntary products offer additional benefits and identify possible problems like double c…

Environmental EngineeringTransparency (market)business.industryNatural resource economicsSustainabilityTariffBusinessElectricityElectricity retailingHydropowerRenewable energyEfficient energy useJournal of Green Engineering
researchProduct

Experimental and numerical investigation of the leading edge sweep angle effect on the performance of a delta blades hydrokinetic turbine

2020

Abstract In the last decades, an increase of energy consumption has been noted around the world. Hence, the excessive use of fossil fuels can lead to serious environmental concerns. Indeed, the use of renewable energy sources is needed to reduce the greenhouse gas effects and the CO2 emissions in the atmosphere. Small-scale hydropower could be an interesting and renewable alternative solution. The cross-flow turbines present several advantages compared to the axial-flow turbines. Therefore, increasing efforts are taken to enhance the efficiency and extend the applicability of the cross-flow turbines. In this paper, experimental investigation was carried out to evaluate the performance of a …

Leading edge060102 archaeologyRenewable Energy Sustainability and the Environmentbusiness.industry020209 energyFlow (psychology)06 humanities and the arts02 engineering and technologyEnergy consumptionComputational fluid dynamicsTurbineRenewable energySettore ICAR/01 - IdraulicaDelta Blades Leading Edge Sweep Angle CFD Rotor Efficiency Hydrodynamic Characteristic0202 electrical engineering electronic engineering information engineeringSwept wingEnvironmental science0601 history and archaeologybusinessHydropowerMarine engineering
researchProduct

Hydropower Optimization Using Deep Learning

2019

This paper demonstrates how deep learning can be used to find optimal reservoir operating policies in hydropower river systems. The method that we propose is based on the implicit stochastic optimization (ISO) framework, using direct policy search methods combined with deep neural networks (DNN). The findings from a real-world two-reservoir hydropower system in southern Norway suggest that DNNs can learn how to map input (price, inflow, starting reservoir levels) to the optimal production pattern directly. Due to the speed of evaluating the DNN, this approach is from an operational standpoint computationally inexpensive and may potentially address the long-standing problem of high dimension…

Mathematical optimizationMarkov chainArtificial neural networkbusiness.industryComputer science020209 energyDeep learning0208 environmental biotechnologyScheduling (production processes)02 engineering and technologyInflow020801 environmental engineering0202 electrical engineering electronic engineering information engineeringProduction (economics)Stochastic optimizationArtificial intelligencebusinessHydropower
researchProduct

Performance study of a Helical Savonius hydrokinetic turbine with a new deflector system design

2019

Abstract The use of renewable energy sources has becoming a necessity to generate electricity. Helical Savonius rotors have been preferred for small-scale hydropower generation. Numerous studies were carried out to improve the performance of the Helical Savonius rotor which has not been fully explored. In this paper, an experimental study was carried out to evaluate the performance of a Helical Savonius water rotor in an irrigation channel. In order to enhance the performance of the studied water rotor, a new deflector system design was proposed. Different configurations of the proposed deflector system were tested numerically using the commercial software ANSYS FLUENT 17.0. Without a defle…

Maximum power principleComputer science020209 energyEnergy Engineering and Power TechnologyDeflector system02 engineering and technologyTurbinelaw.inventionPower coefficientSettore ICAR/01 - Idraulica020401 chemical engineeringlawValidation0202 electrical engineering electronic engineering information engineeringHelical Savonius rotor0204 chemical engineeringHydropowerRotor (electric)business.industryRenewable Energy Sustainability and the EnvironmentTorque coefficientRenewable energyElectricity generationFuel TechnologyNuclear Energy and EngineeringSystems designElectricitybusinessMarine engineeringRotor performance
researchProduct