Horizontal axis wind turbine performance analysis

The present work uses the method of Blade Element Momentum Theory as suggested by Hansen. The method applied to three blade models adopted from Rahgozar S. with the airfoil data used the data provided by Wood D. The wind turbine performance described in term of the thrust coefficient CT, torque...

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Main Authors: Asmuin, N., B., Basuno, Nor Salim, N. A., Ramli, M. F., Ariffin, L. M., Yaakub, M. F.
Format: Article
Language:English
Published: Penerbit UTHM 2021
Subjects:
Online Access:http://eprints.uthm.edu.my/7602/1/J13786_a53db5c92cd0054f81fd6c86d6c55df5.pdf
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author Asmuin, N.
B., Basuno
Nor Salim, N. A.
Ramli, M. F.
Ariffin, L. M.
Yaakub, M. F.
author_facet Asmuin, N.
B., Basuno
Nor Salim, N. A.
Ramli, M. F.
Ariffin, L. M.
Yaakub, M. F.
author_sort Asmuin, N.
collection UTHM
description The present work uses the method of Blade Element Momentum Theory as suggested by Hansen. The method applied to three blade models adopted from Rahgozar S. with the airfoil data used the data provided by Wood D. The wind turbine performance described in term of the thrust coefficient CT, torque coefficient CQ and the power coefficient Cp . These three coefficient can be deduced from the Momentum theory or from the Blade element Theory(BET). The present work found the performance coefficient derived from the Momentum theory tent to over estimate. It is suggested to used the BET formulation in presenting these three coefficients. In overall the Blade Element Momentum Theory follows the step by step as described by Hansen work well for these three blade models. However a little adjustment on the blade data is needed. To the case of two bladed horizontal axis wind turbine, Hansen’s approach works well over if the blade radius is RB the calculation should start from r = 0.1RB.
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spelling uthm.eprints-76022022-08-29T07:36:50Z http://eprints.uthm.edu.my/7602/ Horizontal axis wind turbine performance analysis Asmuin, N. B., Basuno Nor Salim, N. A. Ramli, M. F. Ariffin, L. M. Yaakub, M. F. T Technology (General) The present work uses the method of Blade Element Momentum Theory as suggested by Hansen. The method applied to three blade models adopted from Rahgozar S. with the airfoil data used the data provided by Wood D. The wind turbine performance described in term of the thrust coefficient CT, torque coefficient CQ and the power coefficient Cp . These three coefficient can be deduced from the Momentum theory or from the Blade element Theory(BET). The present work found the performance coefficient derived from the Momentum theory tent to over estimate. It is suggested to used the BET formulation in presenting these three coefficients. In overall the Blade Element Momentum Theory follows the step by step as described by Hansen work well for these three blade models. However a little adjustment on the blade data is needed. To the case of two bladed horizontal axis wind turbine, Hansen’s approach works well over if the blade radius is RB the calculation should start from r = 0.1RB. Penerbit UTHM 2021 Article PeerReviewed text en http://eprints.uthm.edu.my/7602/1/J13786_a53db5c92cd0054f81fd6c86d6c55df5.pdf Asmuin, N. and B., Basuno and Nor Salim, N. A. and Ramli, M. F. and Ariffin, L. M. and Yaakub, M. F. (2021) Horizontal axis wind turbine performance analysis. Progress in Aerospace and Aviation Technology, 1 (1). pp. 15-24. https://doi.org/10.30880/paat.2021.01.01.003
spellingShingle T Technology (General)
Asmuin, N.
B., Basuno
Nor Salim, N. A.
Ramli, M. F.
Ariffin, L. M.
Yaakub, M. F.
Horizontal axis wind turbine performance analysis
title Horizontal axis wind turbine performance analysis
title_full Horizontal axis wind turbine performance analysis
title_fullStr Horizontal axis wind turbine performance analysis
title_full_unstemmed Horizontal axis wind turbine performance analysis
title_short Horizontal axis wind turbine performance analysis
title_sort horizontal axis wind turbine performance analysis
topic T Technology (General)
url http://eprints.uthm.edu.my/7602/1/J13786_a53db5c92cd0054f81fd6c86d6c55df5.pdf
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AT yaakubmf horizontalaxiswindturbineperformanceanalysis