Publication | Open Access
Fluid flow nozzle energy harvesters
13
Citations
16
References
2015
Year
Electrical EngineeringEnergy HarvestingEngineeringEnergy EfficiencyEnergy ConversionPiezoelectric NanogeneratorsMechanical EngineeringSpline Nozzle ConfigurationsEnergy GenerationFluid PowerPiezoelectric StructurePropulsionPower GenerationGas-liquid FlowOil WellFluid Machinery
Power generation schemes that could be used downhole in an oil well to produce about 1 Watt average power with long-life (decades) are actively being developed. A variety of proposed energy harvesting schemes could be used to extract energy from this environment but each of these has their own limitations that limit their practical use. Since vibrating piezoelectric structures are solid state and can be driven below their fatigue limit, harvesters based on these structures are capable of operating for very long lifetimes (decades); thereby, possibly overcoming a principle limitation of existing technology based on rotating turbo-machinery. An initial survey [1] identified that spline nozzle configurations can be used to excite a vibrating piezoelectric structure in such a way as to convert the abundant flow energy into useful amounts of electrical power. This paper presents current flow energy harvesting designs and experimental results of specific spline nozzle/ bimorph design configurations which have generated suitable power per nozzle at or above well production analogous flow rates. Theoretical models for non-dimensional analysis and constitutive electromechanical model are also presented in this paper to optimize the flow harvesting system.
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Toward energy harvesting using active materials and conversion improvement by nonlinear processing Daniel Guyomar, Adrien Badel, Élie Lefeuvre, IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control EngineeringEnergy-saving MaterialEnergy EfficiencyEnergy ConversionMechanical Engineering | 2005 | 1K |
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