The Experimental Study of the Lens Wind Turbine Performance with Vortex Generator

Wind energy potential is available in several regions in Indonesia with wind ranges reaching 5 m/s. Wind turbine research continues to develop to produce optimal power. The aim of this research is to determine the performance of wind turbines equipped with diffusers or lens that put triangle fin vor...

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Main Authors: Lohdy Diana, Joke Pratilastiarso, Arrad Ghani Safitra, Nu Rhahida Arini, Firman Yunan Saputra, Ar Rayyan Ikhsan Syahputra, Firdaus Fhudoli Putra
Format: Article
Language:English
Published: Fakultas Teknik Universitas Negeri Padang 2025-06-01
Series:Invotek: Jurnal Inovasi Vokasional dan Teknologi
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Online Access:http://invotek.ppj.unp.ac.id/index.php/invotek/article/view/1237
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author Lohdy Diana
Joke Pratilastiarso
Arrad Ghani Safitra
Nu Rhahida Arini
Firman Yunan Saputra
Ar Rayyan Ikhsan Syahputra
Firdaus Fhudoli Putra
author_facet Lohdy Diana
Joke Pratilastiarso
Arrad Ghani Safitra
Nu Rhahida Arini
Firman Yunan Saputra
Ar Rayyan Ikhsan Syahputra
Firdaus Fhudoli Putra
author_sort Lohdy Diana
collection DOAJ
description Wind energy potential is available in several regions in Indonesia with wind ranges reaching 5 m/s. Wind turbine research continues to develop to produce optimal power. The aim of this research is to determine the performance of wind turbines equipped with diffusers or lens that put triangle fin vortex generator on lens’s surface. The turbine blade used Clark-Y that has a winglet angle of 45-degrees. There are three variations of lens wind turbine that were tested: without vortex generator, z/h=4.5, z/h=2.5, z/h=0.5. The research was carried out experimentally with fifth wind velocity 3 m/s, 3.5 m/s, 4 m/s, 4.5 m/s, and 5 m/s. The results analyzed to determine turbine performance are turbine rotation, the power produced due to wind direction. Based on the results of the experiments that have been carried out, the results were obtained a straight comparison between TSR and wind turbine rotation (rpm), and straight comparison between Cp and TRS. The Cp is largest in a lens wind turbine with a vortex generator z/h=0.5, which is 0.59 and has the highest power output of 473 watt.
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issn 1411-3414
2549-9815
language English
publishDate 2025-06-01
publisher Fakultas Teknik Universitas Negeri Padang
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series Invotek: Jurnal Inovasi Vokasional dan Teknologi
spelling doaj-art-223aee9cdc2f4af98219cee128fccf5f2025-08-20T03:31:38ZengFakultas Teknik Universitas Negeri PadangInvotek: Jurnal Inovasi Vokasional dan Teknologi1411-34142549-98152025-06-0124316116810.24036/invotek.v24i3.12371237The Experimental Study of the Lens Wind Turbine Performance with Vortex GeneratorLohdy Diana0Joke Pratilastiarso1Arrad Ghani Safitra2Nu Rhahida Arini3Firman Yunan Saputra4Ar Rayyan Ikhsan Syahputra5Firdaus Fhudoli Putra6Bachelor Program of Applied Engineering in Power Plant Engineering, Politeknik Elektronika Negeri Surabaya, Jl. Raya ITS, Keputih, Kecamatan Sukolilo, Surabaya, Indonesia-60111Bachelor Program of Applied Engineering in Power Plant Engineering, Politeknik Elektronika Negeri Surabaya, Jl. Raya ITS, Keputih, Kecamatan Sukolilo, Surabaya, Indonesia-60111Bachelor Program of Applied Engineering in Power Plant Engineering, Politeknik Elektronika Negeri Surabaya, Jl. Raya ITS, Keputih, Kecamatan Sukolilo, Surabaya, Indonesia-60111Bachelor Program of Applied Engineering in Power Plant Engineering, Politeknik Elektronika Negeri Surabaya, Jl. Raya ITS, Keputih, Kecamatan Sukolilo, Surabaya, Indonesia-60111Bachelor Program of Applied Engineering in Power Plant Engineering, Politeknik Elektronika Negeri Surabaya, Jl. Raya ITS, Keputih, Kecamatan Sukolilo, Surabaya, Indonesia-60111Bachelor Program of Applied Engineering in Power Plant Engineering, Politeknik Elektronika Negeri Surabaya, Jl. Raya ITS, Keputih, Kecamatan Sukolilo, Surabaya, Indonesia-60111Bachelor Program of Applied Engineering in Power Plant Engineering, Politeknik Elektronika Negeri Surabaya, Jl. Raya ITS, Keputih, Kecamatan Sukolilo, Surabaya, Indonesia-60111Wind energy potential is available in several regions in Indonesia with wind ranges reaching 5 m/s. Wind turbine research continues to develop to produce optimal power. The aim of this research is to determine the performance of wind turbines equipped with diffusers or lens that put triangle fin vortex generator on lens’s surface. The turbine blade used Clark-Y that has a winglet angle of 45-degrees. There are three variations of lens wind turbine that were tested: without vortex generator, z/h=4.5, z/h=2.5, z/h=0.5. The research was carried out experimentally with fifth wind velocity 3 m/s, 3.5 m/s, 4 m/s, 4.5 m/s, and 5 m/s. The results analyzed to determine turbine performance are turbine rotation, the power produced due to wind direction. Based on the results of the experiments that have been carried out, the results were obtained a straight comparison between TSR and wind turbine rotation (rpm), and straight comparison between Cp and TRS. The Cp is largest in a lens wind turbine with a vortex generator z/h=0.5, which is 0.59 and has the highest power output of 473 watt.http://invotek.ppj.unp.ac.id/index.php/invotek/article/view/1237diffuserenergywindperformancepower
spellingShingle Lohdy Diana
Joke Pratilastiarso
Arrad Ghani Safitra
Nu Rhahida Arini
Firman Yunan Saputra
Ar Rayyan Ikhsan Syahputra
Firdaus Fhudoli Putra
The Experimental Study of the Lens Wind Turbine Performance with Vortex Generator
Invotek: Jurnal Inovasi Vokasional dan Teknologi
diffuser
energy
wind
performance
power
title The Experimental Study of the Lens Wind Turbine Performance with Vortex Generator
title_full The Experimental Study of the Lens Wind Turbine Performance with Vortex Generator
title_fullStr The Experimental Study of the Lens Wind Turbine Performance with Vortex Generator
title_full_unstemmed The Experimental Study of the Lens Wind Turbine Performance with Vortex Generator
title_short The Experimental Study of the Lens Wind Turbine Performance with Vortex Generator
title_sort experimental study of the lens wind turbine performance with vortex generator
topic diffuser
energy
wind
performance
power
url http://invotek.ppj.unp.ac.id/index.php/invotek/article/view/1237
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