Fluid behavior investigation on a single-phase ejector using numerical approach

This study aims to determine fluid flow behaviors and its property inside of an ejector for a single-phase system. Numerical simulation has been employed to investigate the efficiency of the ejector. The numerical process begins with model creation, mesh sensitivity study, turbulent model selection...

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Main Authors: Mat, Mohamad Nur Hidayat, Ahmad Noordin, Muhammad Nurashman
Format: Article
Language:English
Published: Penerbit UTM Press 2022
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Online Access:http://eprints.utm.my/108497/1/MohamadNurHidayat2022_FluidBehaviorInvestigationonaSinglePhase.pdf
http://eprints.utm.my/108497/
http://dx.doi.org/10.11113/jm.v45.449
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.1084972024-11-12T06:14:29Z http://eprints.utm.my/108497/ Fluid behavior investigation on a single-phase ejector using numerical approach Mat, Mohamad Nur Hidayat Ahmad Noordin, Muhammad Nurashman TJ Mechanical engineering and machinery This study aims to determine fluid flow behaviors and its property inside of an ejector for a single-phase system. Numerical simulation has been employed to investigate the efficiency of the ejector. The numerical process begins with model creation, mesh sensitivity study, turbulent model selection and validation study. Seven parts of ejector that can be optimized to achieve the objectives namely nozzle diameter, venturi tube neck diameter, nozzle distance, venturi tube neck length, straight pipe length, mixing chamber diameter, and mixing chamber length. Through these seven aspects, a total of 82 design points has been generated by CFD software and have obtained a candidate that provides optimized parameters that are 2.12mm, 18.93mm, 3.12mm, 80.71mm, 195.9mm, 138.63mm and 165.64mm. These parameters that contribute to the optimized output have contributed 0.0462% efficiency than before. This also shows that this ejector model does not require significant changes because this model is said to be close to the optimized ejector. Through these seven modifiable parameters, a total of 82 design points has been generated by MOGA algorithm and have obtained a candidate that provides optimized parameters that are 2.12mm, 18.93mm, 3.12mm, 80.71mm, 195.9mm, 138.63mm and 165.64mm. These parameters that contribute to the optimized output have contributed 0.0462% efficiency. Penerbit UTM Press 2022-12 Article PeerReviewed application/pdf en http://eprints.utm.my/108497/1/MohamadNurHidayat2022_FluidBehaviorInvestigationonaSinglePhase.pdf Mat, Mohamad Nur Hidayat and Ahmad Noordin, Muhammad Nurashman (2022) Fluid behavior investigation on a single-phase ejector using numerical approach. Jurnal Mekanikal, 45 (NA). pp. 39-46. ISSN 2289-3873 http://dx.doi.org/10.11113/jm.v45.449 DOI:10.11113/jm.v45.449
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Mat, Mohamad Nur Hidayat
Ahmad Noordin, Muhammad Nurashman
Fluid behavior investigation on a single-phase ejector using numerical approach
description This study aims to determine fluid flow behaviors and its property inside of an ejector for a single-phase system. Numerical simulation has been employed to investigate the efficiency of the ejector. The numerical process begins with model creation, mesh sensitivity study, turbulent model selection and validation study. Seven parts of ejector that can be optimized to achieve the objectives namely nozzle diameter, venturi tube neck diameter, nozzle distance, venturi tube neck length, straight pipe length, mixing chamber diameter, and mixing chamber length. Through these seven aspects, a total of 82 design points has been generated by CFD software and have obtained a candidate that provides optimized parameters that are 2.12mm, 18.93mm, 3.12mm, 80.71mm, 195.9mm, 138.63mm and 165.64mm. These parameters that contribute to the optimized output have contributed 0.0462% efficiency than before. This also shows that this ejector model does not require significant changes because this model is said to be close to the optimized ejector. Through these seven modifiable parameters, a total of 82 design points has been generated by MOGA algorithm and have obtained a candidate that provides optimized parameters that are 2.12mm, 18.93mm, 3.12mm, 80.71mm, 195.9mm, 138.63mm and 165.64mm. These parameters that contribute to the optimized output have contributed 0.0462% efficiency.
format Article
author Mat, Mohamad Nur Hidayat
Ahmad Noordin, Muhammad Nurashman
author_facet Mat, Mohamad Nur Hidayat
Ahmad Noordin, Muhammad Nurashman
author_sort Mat, Mohamad Nur Hidayat
title Fluid behavior investigation on a single-phase ejector using numerical approach
title_short Fluid behavior investigation on a single-phase ejector using numerical approach
title_full Fluid behavior investigation on a single-phase ejector using numerical approach
title_fullStr Fluid behavior investigation on a single-phase ejector using numerical approach
title_full_unstemmed Fluid behavior investigation on a single-phase ejector using numerical approach
title_sort fluid behavior investigation on a single-phase ejector using numerical approach
publisher Penerbit UTM Press
publishDate 2022
url http://eprints.utm.my/108497/1/MohamadNurHidayat2022_FluidBehaviorInvestigationonaSinglePhase.pdf
http://eprints.utm.my/108497/
http://dx.doi.org/10.11113/jm.v45.449
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