The Study of 3D Simulation on Heat Transfer Enhancement on Fin Tube Heat Exchanger Using Delta Wing and Winglet Vortex Generators

The vortex generator is one of the methods to improve heat transfer augmentation on flow characteristics in the air side of the fin and tube heat exchanger. There are some models of vortex generators to produce longitudinal vortices when the airflow passes the surface of the vortex generator. In the...

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Main Authors: Stefan Mardikus, Claudia Agata Putri, Michael Seen, Rines Rines, Y. B. Lukiyanto, Doddy Purwadianto, Heryoga Winarbawa, Gilang Argya Dyaksa, Wibowo Kusbandono
Format: Article
Language:English
Published: Universitas Sanata Dharma 2024-12-01
Series:International Journal of Applied Sciences and Smart Technologies
Online Access:https://e-journal.usd.ac.id/safe/index.php/IJASST/article/view/10467
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author Stefan Mardikus
Claudia Agata Putri
Michael Seen
Rines Rines
Y. B. Lukiyanto
Doddy Purwadianto
Heryoga Winarbawa
Gilang Argya Dyaksa
Wibowo Kusbandono
author_facet Stefan Mardikus
Claudia Agata Putri
Michael Seen
Rines Rines
Y. B. Lukiyanto
Doddy Purwadianto
Heryoga Winarbawa
Gilang Argya Dyaksa
Wibowo Kusbandono
author_sort Stefan Mardikus
collection DOAJ
description The vortex generator is one of the methods to improve heat transfer augmentation on flow characteristics in the air side of the fin and tube heat exchanger. There are some models of vortex generators to produce longitudinal vortices when the airflow passes the surface of the vortex generator. In the previous studies, the longitudinal vortices were able to reduce the wake region phenomenon behind the tube heat exchanger. This research aims to investigate the thermal performance of heat transfer on the collaboration between two models of vortex generators namely delta wing and winglet vortex generators on plate fin and tube heat exchanger. The simulation used four models (1) without the vortex generator (2) with the delta wing vortex generators (3) with delta winglet (4) with the combination of delta wing and winglet. The study was generated with computational fluid dynamics. The boundary conditions were set in the inlet as velocity and the outlet as pressure outlet. The airflow of velocity is represented by Reynolds numbers in the range of 4000 - 8000 with an interval of 500. The wall temperature of the tube is given at 400 Kelvin and the temperature of the airflow is given at 300 Kelvin. The epsilon model was used in the turbulence model of the simulation. The result explained that the thermal performance of heat transfer on delta winglets improved the airflow to induce longitudinal vortices and then reduced the wake region to improve the heat transfer coefficient more than other vortex generator models
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issn 2655-8564
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publishDate 2024-12-01
publisher Universitas Sanata Dharma
record_format Article
series International Journal of Applied Sciences and Smart Technologies
spelling doaj-art-d6cd8e93fc68450da8fd51fe9b09036b2025-08-20T01:57:08ZengUniversitas Sanata DharmaInternational Journal of Applied Sciences and Smart Technologies2655-85642685-94322024-12-016242944210.24071/ijasst.v6i2.104673764The Study of 3D Simulation on Heat Transfer Enhancement on Fin Tube Heat Exchanger Using Delta Wing and Winglet Vortex GeneratorsStefan Mardikus0Claudia Agata Putri1Michael Seen2Rines Rines3Y. B. Lukiyanto4Doddy Purwadianto5Heryoga Winarbawa6Gilang Argya Dyaksa7Wibowo Kusbandono8Sanata Dharma UniversitySanata Dharma UniversitySanata Dharma UniversitySanata Dharma UniversitySanata Dharma UniversitySanata Dharma UniversitySanata Dharma UniversitySanata Dharma UniversitySanata Dharma UniversityThe vortex generator is one of the methods to improve heat transfer augmentation on flow characteristics in the air side of the fin and tube heat exchanger. There are some models of vortex generators to produce longitudinal vortices when the airflow passes the surface of the vortex generator. In the previous studies, the longitudinal vortices were able to reduce the wake region phenomenon behind the tube heat exchanger. This research aims to investigate the thermal performance of heat transfer on the collaboration between two models of vortex generators namely delta wing and winglet vortex generators on plate fin and tube heat exchanger. The simulation used four models (1) without the vortex generator (2) with the delta wing vortex generators (3) with delta winglet (4) with the combination of delta wing and winglet. The study was generated with computational fluid dynamics. The boundary conditions were set in the inlet as velocity and the outlet as pressure outlet. The airflow of velocity is represented by Reynolds numbers in the range of 4000 - 8000 with an interval of 500. The wall temperature of the tube is given at 400 Kelvin and the temperature of the airflow is given at 300 Kelvin. The epsilon model was used in the turbulence model of the simulation. The result explained that the thermal performance of heat transfer on delta winglets improved the airflow to induce longitudinal vortices and then reduced the wake region to improve the heat transfer coefficient more than other vortex generator modelshttps://e-journal.usd.ac.id/safe/index.php/IJASST/article/view/10467
spellingShingle Stefan Mardikus
Claudia Agata Putri
Michael Seen
Rines Rines
Y. B. Lukiyanto
Doddy Purwadianto
Heryoga Winarbawa
Gilang Argya Dyaksa
Wibowo Kusbandono
The Study of 3D Simulation on Heat Transfer Enhancement on Fin Tube Heat Exchanger Using Delta Wing and Winglet Vortex Generators
International Journal of Applied Sciences and Smart Technologies
title The Study of 3D Simulation on Heat Transfer Enhancement on Fin Tube Heat Exchanger Using Delta Wing and Winglet Vortex Generators
title_full The Study of 3D Simulation on Heat Transfer Enhancement on Fin Tube Heat Exchanger Using Delta Wing and Winglet Vortex Generators
title_fullStr The Study of 3D Simulation on Heat Transfer Enhancement on Fin Tube Heat Exchanger Using Delta Wing and Winglet Vortex Generators
title_full_unstemmed The Study of 3D Simulation on Heat Transfer Enhancement on Fin Tube Heat Exchanger Using Delta Wing and Winglet Vortex Generators
title_short The Study of 3D Simulation on Heat Transfer Enhancement on Fin Tube Heat Exchanger Using Delta Wing and Winglet Vortex Generators
title_sort study of 3d simulation on heat transfer enhancement on fin tube heat exchanger using delta wing and winglet vortex generators
url https://e-journal.usd.ac.id/safe/index.php/IJASST/article/view/10467
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