Optimizing the design of horizontal-axis small wind turbines: From the laboratory to market. Issue 154 (July 2016)
- Record Type:
- Journal Article
- Title:
- Optimizing the design of horizontal-axis small wind turbines: From the laboratory to market. Issue 154 (July 2016)
- Main Title:
- Optimizing the design of horizontal-axis small wind turbines: From the laboratory to market
- Authors:
- Scappatici, Lorenzo
Bartolini, Nicola
Castellani, Francesco
Astolfi, Davide
Garinei, Alberto
Pennicchi, Marcello - Abstract:
- Abstract: The design process for small wind turbines is usually based on standard methods and tools used for higher-scale turbines. However, small wind turbines have peculiar features due to their field of application. In this work, a laboratory to market approach for the design of blades for small wind turbines is proposed. The choice of profiles is based on the optimization of the aerodynamic behavior, compatibly with limitations due to the need of a simple mechanical structure. The blade is made of glass fiber-reinforced polymer, realized through injection molding. Finite Element Method is employed for numerical simulation of the distribution of the stresses along the blade. Static and dynamic experimental tests are conducted to validate the structural model against experiment. A mean difference of 3.8% between simulated and measured modal frequencies is recorded, and a maximum variation of 6.8%, as concerns strain values, is obtained. An example of structural optimization is proposed, and a twofold structural validation is conducted: in operation, at critical working conditions, and static at extreme wind conditions. In conclusion, wind tunnel tests reveal that the rpm–power curve displays significant rpm intervals along which the output is almost flat, supporting the use of the turbine also in considerably turbulent environments. Abstract : Highlights: The design of a micro wind turbine is depicted in a laboratory to market approach. A FEM model is proposed for theAbstract: The design process for small wind turbines is usually based on standard methods and tools used for higher-scale turbines. However, small wind turbines have peculiar features due to their field of application. In this work, a laboratory to market approach for the design of blades for small wind turbines is proposed. The choice of profiles is based on the optimization of the aerodynamic behavior, compatibly with limitations due to the need of a simple mechanical structure. The blade is made of glass fiber-reinforced polymer, realized through injection molding. Finite Element Method is employed for numerical simulation of the distribution of the stresses along the blade. Static and dynamic experimental tests are conducted to validate the structural model against experiment. A mean difference of 3.8% between simulated and measured modal frequencies is recorded, and a maximum variation of 6.8%, as concerns strain values, is obtained. An example of structural optimization is proposed, and a twofold structural validation is conducted: in operation, at critical working conditions, and static at extreme wind conditions. In conclusion, wind tunnel tests reveal that the rpm–power curve displays significant rpm intervals along which the output is almost flat, supporting the use of the turbine also in considerably turbulent environments. Abstract : Highlights: The design of a micro wind turbine is depicted in a laboratory to market approach. A FEM model is proposed for the blades made of glass fibre reinforced polymer. Static and dynamic tests are conducted and the numerical model is validated. Numerical modelling gives hints for structural optimization of the blades. Experiments confirm structural reliability and stable performances for several rpm. … (more)
- Is Part Of:
- Journal of wind engineering and industrial aerodynamics. Issue 154(2016)
- Journal:
- Journal of wind engineering and industrial aerodynamics
- Issue:
- Issue 154(2016)
- Issue Display:
- Volume 154, Issue 154 (2016)
- Year:
- 2016
- Volume:
- 154
- Issue:
- 154
- Issue Sort Value:
- 2016-0154-0154-0000
- Page Start:
- 58
- Page End:
- 68
- Publication Date:
- 2016-07
- Subjects:
- Small wind turbine -- Rotor blade design -- Finite element model -- Experimental modal analysis
Wind-pressure -- Periodicals
Buildings -- Aerodynamics -- Periodicals
Pression du vent -- Périodiques
Constructions -- Aérodynamique -- Périodiques
Buildings -- Aerodynamics
Wind-pressure
Periodicals - Journal URLs:
- http://www.sciencedirect.com/science/journal/01676105 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.jweia.2016.04.006 ↗
- Languages:
- English
- ISSNs:
- 0167-6105
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5072.632000
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