Investigation of a horizontal low power wind turbine

THE PURPOSE. Development and creation of an experimental stand, carrying out a full-scale experiment, verification the numerical model of a NREL S809 airfoil based on its dimensionless characteristics, analyze the flow around the airfoil at different angles of attack.METHODS. A technique for studyin...

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Main Authors: S. Yu. Shamanin, V. L. Blinov, V. V. Savchenko, Yu. M. Brodov
Format: Article
Language:English
Published: Kazan State Power Engineering University 2023-04-01
Series:Известия высших учебных заведений: Проблемы энергетики
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Online Access:https://www.energyret.ru/jour/article/view/2552
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author S. Yu. Shamanin
V. L. Blinov
V. V. Savchenko
Yu. M. Brodov
author_facet S. Yu. Shamanin
V. L. Blinov
V. V. Savchenko
Yu. M. Brodov
author_sort S. Yu. Shamanin
collection DOAJ
description THE PURPOSE. Development and creation of an experimental stand, carrying out a full-scale experiment, verification the numerical model of a NREL S809 airfoil based on its dimensionless characteristics, analyze the flow around the airfoil at different angles of attack.METHODS. A technique for studying the flow structure around a wind turbine using numerical methods of gas dynamics based on solving the system of Navier-Stokes equations is considered. Mathematical modeling methods were used using the k-ε and SST turbulence model.RESULTS. In this study, a laboratory stand is designed using CAD systems and created using additive FDM printing technologies An experimental study of the dependence of the rotation speed on the blade angle and the resulting voltage in the electric system, the change in the power factor and efficiency of a wind power plant depending on the wind speed was carried out.CONCLUSION. The developed wind turbine has a power of 2.6 W at a wind speed of 4 m / s. This invention is recommended for the purpose of teaching methods of design and construction of similar installations. For the developed wind turbine, it is possible to optimize the work using the method of numerical three-dimensional thermogasdynamic modeling, to evaluate the nature of the flow at off-design operating modes, which speeds up the process of creating the final installation and improves its efficiency parameters.
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publisher Kazan State Power Engineering University
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series Известия высших учебных заведений: Проблемы энергетики
spelling doaj-art-8a55d73026864e50b49e1b4104473e052025-08-20T01:53:26ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032023-04-01251455710.30724/1998-9903-2023-25-1-45-57913Investigation of a horizontal low power wind turbineS. Yu. Shamanin0V. L. Blinov1V. V. Savchenko2Yu. M. Brodov3Ural Federal University named after the first President of Russia B.N. YeltsinUral Federal University named after the first President of Russia B.N. YeltsinUral Federal University named after the first President of Russia B.N. YeltsinUral Federal University named after the first President of Russia B.N. YeltsinTHE PURPOSE. Development and creation of an experimental stand, carrying out a full-scale experiment, verification the numerical model of a NREL S809 airfoil based on its dimensionless characteristics, analyze the flow around the airfoil at different angles of attack.METHODS. A technique for studying the flow structure around a wind turbine using numerical methods of gas dynamics based on solving the system of Navier-Stokes equations is considered. Mathematical modeling methods were used using the k-ε and SST turbulence model.RESULTS. In this study, a laboratory stand is designed using CAD systems and created using additive FDM printing technologies An experimental study of the dependence of the rotation speed on the blade angle and the resulting voltage in the electric system, the change in the power factor and efficiency of a wind power plant depending on the wind speed was carried out.CONCLUSION. The developed wind turbine has a power of 2.6 W at a wind speed of 4 m / s. This invention is recommended for the purpose of teaching methods of design and construction of similar installations. For the developed wind turbine, it is possible to optimize the work using the method of numerical three-dimensional thermogasdynamic modeling, to evaluate the nature of the flow at off-design operating modes, which speeds up the process of creating the final installation and improves its efficiency parameters.https://www.energyret.ru/jour/article/view/2552wind turbineecologycharacteristiccfdverificationrenewable energy sources
spellingShingle S. Yu. Shamanin
V. L. Blinov
V. V. Savchenko
Yu. M. Brodov
Investigation of a horizontal low power wind turbine
Известия высших учебных заведений: Проблемы энергетики
wind turbine
ecology
characteristic
cfd
verification
renewable energy sources
title Investigation of a horizontal low power wind turbine
title_full Investigation of a horizontal low power wind turbine
title_fullStr Investigation of a horizontal low power wind turbine
title_full_unstemmed Investigation of a horizontal low power wind turbine
title_short Investigation of a horizontal low power wind turbine
title_sort investigation of a horizontal low power wind turbine
topic wind turbine
ecology
characteristic
cfd
verification
renewable energy sources
url https://www.energyret.ru/jour/article/view/2552
work_keys_str_mv AT syushamanin investigationofahorizontallowpowerwindturbine
AT vlblinov investigationofahorizontallowpowerwindturbine
AT vvsavchenko investigationofahorizontallowpowerwindturbine
AT yumbrodov investigationofahorizontallowpowerwindturbine