Pengaruh Panjang Batang dan Bentuk Daun Ekor pada Turbin Angin Sumbu Horizontal dengan Mekanisme Furling terhadap Performa Turbin

Small-scale wind turbines that operate at low wind speeds regularly will face yawing performance problems. The purpose of this study was to determine the effect of stem length and tail shape on turbine performance through the power generated and the yawing angle and furling angle that formed. An exp...

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Main Authors: Basori Hidayatullah, Dony Hidayat Al-Janan, Danang Dwi Saputro
Format: Article
Language:English
Published: University of Brawijaya 2020-08-01
Series:Rekayasa Mesin
Subjects:
Online Access:https://rekayasamesin.ub.ac.id/index.php/rm/article/view/639
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author Basori Hidayatullah
Dony Hidayat Al-Janan
Danang Dwi Saputro
author_facet Basori Hidayatullah
Dony Hidayat Al-Janan
Danang Dwi Saputro
author_sort Basori Hidayatullah
collection DOAJ
description Small-scale wind turbines that operate at low wind speeds regularly will face yawing performance problems. The purpose of this study was to determine the effect of stem length and tail shape on turbine performance through the power generated and the yawing angle and furling angle that formed. An experimental method was used in this research. Tail stem length variations that used were 0.35 m, 0.53 m and 0.71 m. The tail shape varies Rectangular, Trapezoidal, Triangular, Up Rectangular, Down Rectangular, Up Trapezoidal, Down Trapezoidal, Up Triangular and Down Triangular. Wind speed used in this case is 4.3 m/s, 4.8 m/s and 5.2 m/s. The tests carried out at Marina Beach, Semarang. Power measurements using a digital multimeter. Yawing and furling angle measurements using video recordings and measured using Solidworks. Wind speed measurements using a digital anemometer. The results showed that the best configuration is the triangular tail shape with 0,53 m of tail stem length. The power generated of this configuration has increased from wind speed of 4.3 m/s (0.816 Watt) to 4.8 m/s (1.140 Watt) and decreased at a wind speed of 5.2 m/s (1.081 Watt). This phenomenon is related to the design where at wind speed above 5 m/s, the design of furling mechanism will work to reduce the capture of wind energy by diverting the direction of the rotor towards the wind direction. So that the damage of the blade due to higher wind pressure can be minimized.
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spelling doaj.art-013e9ac864844db49ce973e3e932e0232022-12-22T01:57:54ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412020-08-0111216517710.21776/ub.jrm.2020.011.02.4401Pengaruh Panjang Batang dan Bentuk Daun Ekor pada Turbin Angin Sumbu Horizontal dengan Mekanisme Furling terhadap Performa TurbinBasori Hidayatullah0Dony Hidayat Al-Janan1Danang Dwi Saputro2Universitas Negeri SemarangUniversitas Negeri SemarangUniversitas Negeri SemarangSmall-scale wind turbines that operate at low wind speeds regularly will face yawing performance problems. The purpose of this study was to determine the effect of stem length and tail shape on turbine performance through the power generated and the yawing angle and furling angle that formed. An experimental method was used in this research. Tail stem length variations that used were 0.35 m, 0.53 m and 0.71 m. The tail shape varies Rectangular, Trapezoidal, Triangular, Up Rectangular, Down Rectangular, Up Trapezoidal, Down Trapezoidal, Up Triangular and Down Triangular. Wind speed used in this case is 4.3 m/s, 4.8 m/s and 5.2 m/s. The tests carried out at Marina Beach, Semarang. Power measurements using a digital multimeter. Yawing and furling angle measurements using video recordings and measured using Solidworks. Wind speed measurements using a digital anemometer. The results showed that the best configuration is the triangular tail shape with 0,53 m of tail stem length. The power generated of this configuration has increased from wind speed of 4.3 m/s (0.816 Watt) to 4.8 m/s (1.140 Watt) and decreased at a wind speed of 5.2 m/s (1.081 Watt). This phenomenon is related to the design where at wind speed above 5 m/s, the design of furling mechanism will work to reduce the capture of wind energy by diverting the direction of the rotor towards the wind direction. So that the damage of the blade due to higher wind pressure can be minimized.https://rekayasamesin.ub.ac.id/index.php/rm/article/view/639furlinghorizontal axis wind turbineyawingtail stem lengthtail shape
spellingShingle Basori Hidayatullah
Dony Hidayat Al-Janan
Danang Dwi Saputro
Pengaruh Panjang Batang dan Bentuk Daun Ekor pada Turbin Angin Sumbu Horizontal dengan Mekanisme Furling terhadap Performa Turbin
Rekayasa Mesin
furling
horizontal axis wind turbine
yawing
tail stem length
tail shape
title Pengaruh Panjang Batang dan Bentuk Daun Ekor pada Turbin Angin Sumbu Horizontal dengan Mekanisme Furling terhadap Performa Turbin
title_full Pengaruh Panjang Batang dan Bentuk Daun Ekor pada Turbin Angin Sumbu Horizontal dengan Mekanisme Furling terhadap Performa Turbin
title_fullStr Pengaruh Panjang Batang dan Bentuk Daun Ekor pada Turbin Angin Sumbu Horizontal dengan Mekanisme Furling terhadap Performa Turbin
title_full_unstemmed Pengaruh Panjang Batang dan Bentuk Daun Ekor pada Turbin Angin Sumbu Horizontal dengan Mekanisme Furling terhadap Performa Turbin
title_short Pengaruh Panjang Batang dan Bentuk Daun Ekor pada Turbin Angin Sumbu Horizontal dengan Mekanisme Furling terhadap Performa Turbin
title_sort pengaruh panjang batang dan bentuk daun ekor pada turbin angin sumbu horizontal dengan mekanisme furling terhadap performa turbin
topic furling
horizontal axis wind turbine
yawing
tail stem length
tail shape
url https://rekayasamesin.ub.ac.id/index.php/rm/article/view/639
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AT donyhidayataljanan pengaruhpanjangbatangdanbentukdaunekorpadaturbinanginsumbuhorizontaldenganmekanismefurlingterhadapperformaturbin
AT danangdwisaputro pengaruhpanjangbatangdanbentukdaunekorpadaturbinanginsumbuhorizontaldenganmekanismefurlingterhadapperformaturbin