This paper presents the results of a wide experimental study on an H-type vertical axis wind turbine (VAWT) carried out at the Politecnico di Milano. The experiments were carried out in a large-scale wind tunnel, where wind turbines for microgeneration can be tested in real-scale conditions. Integral torque and thrust measurements were performed, as well as detailed aerodynamic measurements to characterize the flow field generated by the turbine downstream of the rotor. The machine was tested in both a confined (closed chamber) and unconfined (open chamber) environment, to highlight the effect of wind tunnel blockage on the aerodynamics and performance of the VAWT under investigation. The experimental results, compared with the blockage correlations presently available, suggest that specific correction models should be developed for VAWTs. The experimental thrust and power curves of the turbine, derived from integral measurements, exhibit the expected trends with a peak power coefficient of about 0.28 at tip-speed ratio equal to 2.5. Flow measurements, performed in three conditions for tip speed ratio equal to 1.5, 2.5, and 3.5, show the fully three-dimensional character of the wake, especially in the tip region where a nonsymmetrical wake and tip vortex are found. The unsteady evolution of the velocity and turbulence fields further highlights the effect of aerodynamic loading on the wake unsteadiness, showing the time-dependent nature of the tip vortex and the onset of dynamic stall for tip speed ratio lower than 2.
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September 2015
Research-Article
An Experimental Study of the Aerodynamics and Performance of a Vertical Axis Wind Turbine in a Confined and Unconfined Environment
Vincenzo Dossena,
Vincenzo Dossena
1
Dipartimento di Energia,
e-mail: vincenzo.dossena@polimi.it
Laboratorio di Fluidodinamica delle Macchine
,Politecnico di Milano
,Via Lambruschini 4
,Milano I-20156
, Italy
e-mail: vincenzo.dossena@polimi.it
1Corresponding author.
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Giacomo Persico,
Giacomo Persico
Dipartimento di Energia,
Laboratorio di Fluidodinamica delle Macchine
,Politecnico di Milano
,Via Lambruschini 4
,Milano I-20156
, Italy
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Berardo Paradiso,
Berardo Paradiso
Dipartimento di Energia,
Laboratorio di Fluidodinamica delle Macchine
,Politecnico di Milano, Via Lambruschini 4
,Milano I-20156
, Italy
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Lorenzo Battisti,
Lorenzo Battisti
Department of Civil, Environmental
and Mechanical Engineering,
Interdisciplinary Laboratory
of Energetic Technologies,
e-mail: lorenzo.battisti@unitn.it
and Mechanical Engineering,
Università degli Studi di Trento
,Interdisciplinary Laboratory
of Energetic Technologies,
Via Mesiano 77
,Trento I-38123
, Italy
e-mail: lorenzo.battisti@unitn.it
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Sergio Dell'Anna,
Sergio Dell'Anna
Department of Civil, Environmental
and Mechanical Engineering,
Interdisciplinary Laboratory
of Energetic Technologies,
and Mechanical Engineering,
Università degli Studi di Trento
,Interdisciplinary Laboratory
of Energetic Technologies,
Via Mesiano 77
,Trento I-38123
, Italy
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Alessandra Brighenti,
Alessandra Brighenti
Department of Civil, Environmental
and Mechanical Engineering,
Interdisciplinary Laboratory
of Energetic Technologies,
and Mechanical Engineering,
Università degli Studi di Trento
,Interdisciplinary Laboratory
of Energetic Technologies,
Via Mesiano 77
,Trento I-38123
, Italy
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Enrico Benini
Enrico Benini
Department of Civil, Environmental
and Mechanical Engineering,
Interdisciplinary Laboratory
of Energetic Technologies,
and Mechanical Engineering,
Università degli Studi di Trento
,Interdisciplinary Laboratory
of Energetic Technologies,
Via Mesiano 77
,Trento I-38123
, Italy
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Vincenzo Dossena
Dipartimento di Energia,
e-mail: vincenzo.dossena@polimi.it
Laboratorio di Fluidodinamica delle Macchine
,Politecnico di Milano
,Via Lambruschini 4
,Milano I-20156
, Italy
e-mail: vincenzo.dossena@polimi.it
Giacomo Persico
Dipartimento di Energia,
Laboratorio di Fluidodinamica delle Macchine
,Politecnico di Milano
,Via Lambruschini 4
,Milano I-20156
, Italy
Berardo Paradiso
Dipartimento di Energia,
Laboratorio di Fluidodinamica delle Macchine
,Politecnico di Milano, Via Lambruschini 4
,Milano I-20156
, Italy
Lorenzo Battisti
Department of Civil, Environmental
and Mechanical Engineering,
Interdisciplinary Laboratory
of Energetic Technologies,
e-mail: lorenzo.battisti@unitn.it
and Mechanical Engineering,
Università degli Studi di Trento
,Interdisciplinary Laboratory
of Energetic Technologies,
Via Mesiano 77
,Trento I-38123
, Italy
e-mail: lorenzo.battisti@unitn.it
Sergio Dell'Anna
Department of Civil, Environmental
and Mechanical Engineering,
Interdisciplinary Laboratory
of Energetic Technologies,
and Mechanical Engineering,
Università degli Studi di Trento
,Interdisciplinary Laboratory
of Energetic Technologies,
Via Mesiano 77
,Trento I-38123
, Italy
Alessandra Brighenti
Department of Civil, Environmental
and Mechanical Engineering,
Interdisciplinary Laboratory
of Energetic Technologies,
and Mechanical Engineering,
Università degli Studi di Trento
,Interdisciplinary Laboratory
of Energetic Technologies,
Via Mesiano 77
,Trento I-38123
, Italy
Enrico Benini
Department of Civil, Environmental
and Mechanical Engineering,
Interdisciplinary Laboratory
of Energetic Technologies,
and Mechanical Engineering,
Università degli Studi di Trento
,Interdisciplinary Laboratory
of Energetic Technologies,
Via Mesiano 77
,Trento I-38123
, Italy
1Corresponding author.
Contributed by the Advanced Energy Systems Division of ASME for publication in the JOURNAL OF ENERGY RESOURCES TECHNOLOGY. Manuscript received February 16, 2015; final manuscript received April 21, 2015; published online May 14, 2015. Assoc. Editor: Ryo Amano.
J. Energy Resour. Technol. Sep 2015, 137(5): 051207 (12 pages)
Published Online: September 1, 2015
Article history
Received:
February 16, 2015
Revision Received:
April 21, 2015
Online:
May 14, 2015
Citation
Dossena, V., Persico, G., Paradiso, B., Battisti, L., Dell'Anna, S., Brighenti, A., and Benini, E. (September 1, 2015). "An Experimental Study of the Aerodynamics and Performance of a Vertical Axis Wind Turbine in a Confined and Unconfined Environment." ASME. J. Energy Resour. Technol. September 2015; 137(5): 051207. https://doi.org/10.1115/1.4030448
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