Turbin Hibrid Bi-Directional Sebagai Pemanen Energi pada Thermoacoustic Engine
Bi-directional turbines that are commonly applied to convert wave energy into motion energy are the types of Impulse turbines and Wells turbines. Both types of turbines each have advantages and disadvantages. In this research, hybrid turbine type is designed and made to bridge the weaknesses in impu...
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Format: | Article |
Language: | English |
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University of Brawijaya
2021-05-01
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Series: | Rekayasa Mesin |
Subjects: | |
Online Access: | https://rekayasamesin.ub.ac.id/index.php/rm/article/view/651 |
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author | Eko Wismo Winarto Sugiyanto Sugiyanto Soeadgihardo Siswantoro Isworo Djati |
author_facet | Eko Wismo Winarto Sugiyanto Sugiyanto Soeadgihardo Siswantoro Isworo Djati |
author_sort | Eko Wismo Winarto |
collection | DOAJ |
description | Bi-directional turbines that are commonly applied to convert wave energy into motion energy are the types of Impulse turbines and Wells turbines. Both types of turbines each have advantages and disadvantages. In this research, hybrid turbine type is designed and made to bridge the weaknesses in impulse turbine and turbine wells. Hybrid turbines are made by placing impulse turbines on the outside while turbine wells placed on the inside. In this research, the variation of hybrid bi-directional turbine design aims to find out the most optimal design of this turbine type. Six variations were carried out including a hub to tip ratio of 0.5 with 4 and 5 Wells blades, a hub to tip ratio of 0.6 with 4 and 5 Wells blades, and a hub to tip ratio of 0.7 with 4 and 5 Wells blades. From the test results on thermoacoustic engine media, based on the hub to tip ratio, the most optimal hub to tip ratio is in the order of 0.7 then 0.6, and 0.5. Whereas based on the number of Wells blade, obtained the number of Wells blade 5 is more optimal than the number of Wells blade 4. |
first_indexed | 2024-12-17T21:35:11Z |
format | Article |
id | doaj.art-1c47604b7b9b4eb094b1a05e3868469b |
institution | Directory Open Access Journal |
issn | 2338-1663 2477-6041 |
language | English |
last_indexed | 2024-12-17T21:35:11Z |
publishDate | 2021-05-01 |
publisher | University of Brawijaya |
record_format | Article |
series | Rekayasa Mesin |
spelling | doaj.art-1c47604b7b9b4eb094b1a05e3868469b2022-12-21T21:31:45ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412021-05-01121192510.21776/ub.jrm.2021.012.01.3442Turbin Hibrid Bi-Directional Sebagai Pemanen Energi pada Thermoacoustic EngineEko Wismo Winarto0Sugiyanto Sugiyanto1Soeadgihardo Siswantoro2Isworo Djati3Gadjah Mada UniversityGadjah Mada UniversityGadjah Mada UniversityGadjah Mada UniversityBi-directional turbines that are commonly applied to convert wave energy into motion energy are the types of Impulse turbines and Wells turbines. Both types of turbines each have advantages and disadvantages. In this research, hybrid turbine type is designed and made to bridge the weaknesses in impulse turbine and turbine wells. Hybrid turbines are made by placing impulse turbines on the outside while turbine wells placed on the inside. In this research, the variation of hybrid bi-directional turbine design aims to find out the most optimal design of this turbine type. Six variations were carried out including a hub to tip ratio of 0.5 with 4 and 5 Wells blades, a hub to tip ratio of 0.6 with 4 and 5 Wells blades, and a hub to tip ratio of 0.7 with 4 and 5 Wells blades. From the test results on thermoacoustic engine media, based on the hub to tip ratio, the most optimal hub to tip ratio is in the order of 0.7 then 0.6, and 0.5. Whereas based on the number of Wells blade, obtained the number of Wells blade 5 is more optimal than the number of Wells blade 4.https://rekayasamesin.ub.ac.id/index.php/rm/article/view/651bi-directional turbinehybrid turbinewave energythermoacoustic engine |
spellingShingle | Eko Wismo Winarto Sugiyanto Sugiyanto Soeadgihardo Siswantoro Isworo Djati Turbin Hibrid Bi-Directional Sebagai Pemanen Energi pada Thermoacoustic Engine Rekayasa Mesin bi-directional turbine hybrid turbine wave energy thermoacoustic engine |
title | Turbin Hibrid Bi-Directional Sebagai Pemanen Energi pada Thermoacoustic Engine |
title_full | Turbin Hibrid Bi-Directional Sebagai Pemanen Energi pada Thermoacoustic Engine |
title_fullStr | Turbin Hibrid Bi-Directional Sebagai Pemanen Energi pada Thermoacoustic Engine |
title_full_unstemmed | Turbin Hibrid Bi-Directional Sebagai Pemanen Energi pada Thermoacoustic Engine |
title_short | Turbin Hibrid Bi-Directional Sebagai Pemanen Energi pada Thermoacoustic Engine |
title_sort | turbin hibrid bi directional sebagai pemanen energi pada thermoacoustic engine |
topic | bi-directional turbine hybrid turbine wave energy thermoacoustic engine |
url | https://rekayasamesin.ub.ac.id/index.php/rm/article/view/651 |
work_keys_str_mv | AT ekowismowinarto turbinhibridbidirectionalsebagaipemanenenergipadathermoacousticengine AT sugiyantosugiyanto turbinhibridbidirectionalsebagaipemanenenergipadathermoacousticengine AT soeadgihardosiswantoro turbinhibridbidirectionalsebagaipemanenenergipadathermoacousticengine AT isworodjati turbinhibridbidirectionalsebagaipemanenenergipadathermoacousticengine |