Comparison of aerodynamics of vertical-axis wind turbine with single and combine Darrieus and Savonius rotors

Vertical-axis wind turbines (VAWT) with Darrieus and Savonius rotors were studied based on the developed specialized package of computational aerodynamics. The flow structure around the Savonius and Darrieus rotors was numerically reconstructed, considering the mutual influence. From this reconstruc...

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Main Authors: Dmytro Redchyts, Unai Fernandez-Gamiz, Serhii Tarasov, Koldo Portal-Porras, Andrii Tarasov, Svitlana Moiseienko
Format: Article
Language:English
Published: Elsevier 2024-12-01
Series:Results in Engineering
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Online Access:http://www.sciencedirect.com/science/article/pii/S2590123024014579
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author Dmytro Redchyts
Unai Fernandez-Gamiz
Serhii Tarasov
Koldo Portal-Porras
Andrii Tarasov
Svitlana Moiseienko
author_facet Dmytro Redchyts
Unai Fernandez-Gamiz
Serhii Tarasov
Koldo Portal-Porras
Andrii Tarasov
Svitlana Moiseienko
author_sort Dmytro Redchyts
collection DOAJ
description Vertical-axis wind turbines (VAWT) with Darrieus and Savonius rotors were studied based on the developed specialized package of computational aerodynamics. The flow structure around the Savonius and Darrieus rotors was numerically reconstructed, considering the mutual influence. From this reconstruction, the main stages of the vortex structure formation during the flow of the turbulent wind around the rotors were identified. Qualitative and quantitative assessments of the influence of the Savonius rotor on the total aerodynamic and energy characteristics of a VAWT were carried out. It is shown that the main contribution to the torque of the VAWT is due to the Darrieus rotor, mainly in the windward section of the trajectory. The Savonius rotor accounts for only a few percent of the total torque produced by the installation. The interaction of the Darrieus rotor blades with macrovortices from the Savonius rotor in the leeward part of the trajectory leads to a sharp drop in the torque coefficient. In the absence of a Savonius rotor, the vortices separated from supported tower are much smaller both in size and intensity. Therefore, their interaction with the blades of the Darrieus rotor does not lead to a significant change in the aerodynamic characteristics. A power characteristics comparison of two VAWTs showed that the torque coefficient is higher for wind turbines with only single Darrieus rotor. The developed approaches and techniques make it possible to reproduce real aerodynamic processes of flow most reliably around bodies of arbitrary shape and calculate their aerodynamic characteristics.
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spelling doaj-art-3105e68bdb554ff187b886e8dadb0b322024-12-19T10:58:33ZengElsevierResults in Engineering2590-12302024-12-0124103202Comparison of aerodynamics of vertical-axis wind turbine with single and combine Darrieus and Savonius rotorsDmytro Redchyts0Unai Fernandez-Gamiz1Serhii Tarasov2Koldo Portal-Porras3Andrii Tarasov4Svitlana Moiseienko5Institute of Transport Systems and Technology of the National Academy of Sciences of Ukraine, Dnipro, Ukraine; Corresponding authors.University of the Basque Country, Vitoria-Gasteiz, Spain; Corresponding authors.Institute of Transport Systems and Technology of the National Academy of Sciences of Ukraine, Dnipro, UkraineUniversity of the Basque Country, Vitoria-Gasteiz, SpainInstitute of Transport Systems and Technology of the National Academy of Sciences of Ukraine, Dnipro, UkraineKherson National Technical University, Kherson, UkraineVertical-axis wind turbines (VAWT) with Darrieus and Savonius rotors were studied based on the developed specialized package of computational aerodynamics. The flow structure around the Savonius and Darrieus rotors was numerically reconstructed, considering the mutual influence. From this reconstruction, the main stages of the vortex structure formation during the flow of the turbulent wind around the rotors were identified. Qualitative and quantitative assessments of the influence of the Savonius rotor on the total aerodynamic and energy characteristics of a VAWT were carried out. It is shown that the main contribution to the torque of the VAWT is due to the Darrieus rotor, mainly in the windward section of the trajectory. The Savonius rotor accounts for only a few percent of the total torque produced by the installation. The interaction of the Darrieus rotor blades with macrovortices from the Savonius rotor in the leeward part of the trajectory leads to a sharp drop in the torque coefficient. In the absence of a Savonius rotor, the vortices separated from supported tower are much smaller both in size and intensity. Therefore, their interaction with the blades of the Darrieus rotor does not lead to a significant change in the aerodynamic characteristics. A power characteristics comparison of two VAWTs showed that the torque coefficient is higher for wind turbines with only single Darrieus rotor. The developed approaches and techniques make it possible to reproduce real aerodynamic processes of flow most reliably around bodies of arbitrary shape and calculate their aerodynamic characteristics.http://www.sciencedirect.com/science/article/pii/S2590123024014579Mathematical modelingVertical-axis wind turbineDarrieus and Savonius rotorsNavier-Stokes equationsAerodynamicsWind energy
spellingShingle Dmytro Redchyts
Unai Fernandez-Gamiz
Serhii Tarasov
Koldo Portal-Porras
Andrii Tarasov
Svitlana Moiseienko
Comparison of aerodynamics of vertical-axis wind turbine with single and combine Darrieus and Savonius rotors
Results in Engineering
Mathematical modeling
Vertical-axis wind turbine
Darrieus and Savonius rotors
Navier-Stokes equations
Aerodynamics
Wind energy
title Comparison of aerodynamics of vertical-axis wind turbine with single and combine Darrieus and Savonius rotors
title_full Comparison of aerodynamics of vertical-axis wind turbine with single and combine Darrieus and Savonius rotors
title_fullStr Comparison of aerodynamics of vertical-axis wind turbine with single and combine Darrieus and Savonius rotors
title_full_unstemmed Comparison of aerodynamics of vertical-axis wind turbine with single and combine Darrieus and Savonius rotors
title_short Comparison of aerodynamics of vertical-axis wind turbine with single and combine Darrieus and Savonius rotors
title_sort comparison of aerodynamics of vertical axis wind turbine with single and combine darrieus and savonius rotors
topic Mathematical modeling
Vertical-axis wind turbine
Darrieus and Savonius rotors
Navier-Stokes equations
Aerodynamics
Wind energy
url http://www.sciencedirect.com/science/article/pii/S2590123024014579
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