0000000000722560

AUTHOR

Bouzid Mosbahi

0000-0003-4932-7744

showing 3 related works from this author

Performance Improvement of a Drag Hydrokinetic Turbine

2021

Hydropower is at present in many locations, among all the other possible renewable energy sources, the best one for net cost per unit power. In contrast to traditional installation, based on water storage in artificial basins, free flow river turbines also provide a very low environmental impact due to their negligible effect on solid transport. Among them, kinetic turbines with vertical axis are very inexpensive and have almost zero impact on fish and local fauna. In application to tidal waves and sea waves, where vertically averaged velocities have alternate direction, a Savonius rotor also has the advantage of being productive during the whole time cycle. In this work, the effect of an u…

lcsh:Hydraulic engineering020209 energykinetic turbines water flow deflectorGeography Planning and Development02 engineering and technologyAquatic ScienceComputational fluid dynamics01 natural sciencesBiochemistryTurbinelaw.inventionSettore ICAR/01 - Idraulicalcsh:Water supply for domestic and industrial purposeslcsh:TC1-978lawSavonius rotor0202 electrical engineering electronic engineering information engineering0101 mathematicsHydropowerWater Science and Technologykinetic turbineslcsh:TD201-500business.industryRotor (electric)010102 general mathematicsPower (physics)Renewable energyElectricity generationDragwater flow deflectorEnvironmental sciencebusinessCFD analysisMarine engineeringWater
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Performance improvement of a Savonius water rotor with novel blade shapes

2021

Abstract Savonius water rotor is a prominent drag based turbine able to extract energy available in flowing water with low velocity like river streams, tidal currents or other man made water canals. However, in view of its low performance, an enhanced design of the rotor blades is necessary to better its efficiency. Therefore, the present study aims to improve the efficiency of Savonius rotor by changing the blade design. Different blade shapes were investigated numerically using computational fluid dynamics (CFD). Using conventional design, the peak power coefficient was found to be 0.166 at tip-speed ratio of 0.78. However, the peak power coefficient reaches 0.184 using the optimal blade …

Work (thermodynamics)Environmental EngineeringMaterials scienceBlade (geometry)Rotor (electric)business.industryOcean EngineeringComputational fluid dynamicsTurbinelaw.inventionSettore ICAR/01 - IdraulicaSavonius rotor Blade shape Hydrokinetic rotor Efficiency CFD Flow characteristicsDraglawPerformance improvementbusinessEnergy (signal processing)Marine engineering
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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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