The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades

Wind turbines are typically classified as Horizontal Axis Wind Turbines (HAWT) or Vertical Axis Wind Turbines (VAWT). VAWT has a superior ability to accelerate from rest to rotation than HAWT, allowing it to rotate the rotor even when the wind speed is low; additionally, the produced torque is relat...

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Main Authors: Prabowo, Handy, Susilo Wijayanto, Danar, Wisnu Saputra, Taufik, Mohd. Shafie, Bakar
Format: Article
Language:English
Published: Technical and Vocational Education Faculty of Teacher Training and Education 2023
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/40402/1/The%20optimization%20of%20savonius%20helix%20wind%20turbine%20cut-in%20speed%20with%20the%20variation%20of%20blades-twist%20rotor%20and%20number%20of%20blades.pdf
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author Prabowo, Handy
Susilo Wijayanto, Danar
Wisnu Saputra, Taufik
Mohd. Shafie, Bakar
author_facet Prabowo, Handy
Susilo Wijayanto, Danar
Wisnu Saputra, Taufik
Mohd. Shafie, Bakar
author_sort Prabowo, Handy
collection UMP
description Wind turbines are typically classified as Horizontal Axis Wind Turbines (HAWT) or Vertical Axis Wind Turbines (VAWT). VAWT has a superior ability to accelerate from rest to rotation than HAWT, allowing it to rotate the rotor even when the wind speed is low; additionally, the produced torque is relatively high. Using the Savonius helix VAWT is one of the numerous methods for enhancing VAWT performance. The effect of the number of blades and the blade twist of the rotor or the angle of rotation of the blades on the rotor from the bottom end to the top end on the speed cut generated by the VAWT Savonius helix was investigated experimentally. Variations in the number of blades used in the study included 2 and 3 blades, as well as 90°, 180°, 270°, and 360° for the rotor twist blades. In a wind tunnel, data was collected at wind speeds ranging from 0 to 5 m/s. The best performance research results were obtained With three blades, a twist angle of 180 degrees, and a cutting speed of 1.51 m/s. By modifying the Savonius Helix VAWT design in this study, it is possible to increase the efficiency and performance of turbines, mainly when used at low wind speeds, and the potential for using wind energy as a more efficient and sustainable alternative energy source.
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spelling UMPir404022024-02-19T01:25:34Z http://umpir.ump.edu.my/id/eprint/40402/ The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades Prabowo, Handy Susilo Wijayanto, Danar Wisnu Saputra, Taufik Mohd. Shafie, Bakar TJ Mechanical engineering and machinery TK Electrical engineering. Electronics Nuclear engineering Wind turbines are typically classified as Horizontal Axis Wind Turbines (HAWT) or Vertical Axis Wind Turbines (VAWT). VAWT has a superior ability to accelerate from rest to rotation than HAWT, allowing it to rotate the rotor even when the wind speed is low; additionally, the produced torque is relatively high. Using the Savonius helix VAWT is one of the numerous methods for enhancing VAWT performance. The effect of the number of blades and the blade twist of the rotor or the angle of rotation of the blades on the rotor from the bottom end to the top end on the speed cut generated by the VAWT Savonius helix was investigated experimentally. Variations in the number of blades used in the study included 2 and 3 blades, as well as 90°, 180°, 270°, and 360° for the rotor twist blades. In a wind tunnel, data was collected at wind speeds ranging from 0 to 5 m/s. The best performance research results were obtained With three blades, a twist angle of 180 degrees, and a cutting speed of 1.51 m/s. By modifying the Savonius Helix VAWT design in this study, it is possible to increase the efficiency and performance of turbines, mainly when used at low wind speeds, and the potential for using wind energy as a more efficient and sustainable alternative energy source. Technical and Vocational Education Faculty of Teacher Training and Education 2023 Article PeerReviewed pdf en cc_by_4 http://umpir.ump.edu.my/id/eprint/40402/1/The%20optimization%20of%20savonius%20helix%20wind%20turbine%20cut-in%20speed%20with%20the%20variation%20of%20blades-twist%20rotor%20and%20number%20of%20blades.pdf Prabowo, Handy and Susilo Wijayanto, Danar and Wisnu Saputra, Taufik and Mohd. Shafie, Bakar (2023) The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades. Jurnal Ilmiah Pendidikan Teknik dan Kejuruan, 16 (2). pp. 81-89. ISSN 2598-6430. (Published) https://doi.org/10.20961/jiptek.v16i2.71389 10.20961/jiptek.v16i2.71389
spellingShingle TJ Mechanical engineering and machinery
TK Electrical engineering. Electronics Nuclear engineering
Prabowo, Handy
Susilo Wijayanto, Danar
Wisnu Saputra, Taufik
Mohd. Shafie, Bakar
The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades
title The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades
title_full The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades
title_fullStr The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades
title_full_unstemmed The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades
title_short The optimization of savonius helix wind turbine cut-in speed with the variation of blades-twist rotor and number of blades
title_sort optimization of savonius helix wind turbine cut in speed with the variation of blades twist rotor and number of blades
topic TJ Mechanical engineering and machinery
TK Electrical engineering. Electronics Nuclear engineering
url http://umpir.ump.edu.my/id/eprint/40402/1/The%20optimization%20of%20savonius%20helix%20wind%20turbine%20cut-in%20speed%20with%20the%20variation%20of%20blades-twist%20rotor%20and%20number%20of%20blades.pdf
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