Comparison of velocity distribution in turbulent diffusion jet given by the integral model and code CFD FLUENT 6.0

Integral model is simple in utilization, low in CPU time calculation, suitable for a lot of practical applications of turbulent diffusion jet. However the assessment of accuracy of the model should be carried out by experimental data and by results of available multidirectional codes. The present p...

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Main Authors: Bui Van Ga, Pham Thi Kim Loan, Nhan Hong Quang
Format: Article
Language:English
Published: Publishing House for Science and Technology 2005-03-01
Series:Vietnam Journal of Mechanics
Online Access:https://vjs.ac.vn/index.php/vjmech/article/view/5714
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author Bui Van Ga
Pham Thi Kim Loan
Nhan Hong Quang
author_facet Bui Van Ga
Pham Thi Kim Loan
Nhan Hong Quang
author_sort Bui Van Ga
collection DOAJ
description Integral model is simple in utilization, low in CPU time calculation, suitable for a lot of practical applications of turbulent diffusion jet. However the assessment of accuracy of the model should be carried out by experimental data and by results of available multidirectional codes. The present paper shows the comparison of velocity profiles given by the integral model and the CFD FLUENT 6.0 Code. The difference in results given by the two models is lower than 10% when Reynolds number at the exit nozzle below 5000.
format Article
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institution OA Journals
issn 0866-7136
2815-5882
language English
publishDate 2005-03-01
publisher Publishing House for Science and Technology
record_format Article
series Vietnam Journal of Mechanics
spelling doaj-art-e11e1e452b304d119d38fbf6b31a25602025-08-20T02:10:39ZengPublishing House for Science and TechnologyVietnam Journal of Mechanics0866-71362815-58822005-03-0127110.15625/0866-7136/27/1/5714Comparison of velocity distribution in turbulent diffusion jet given by the integral model and code CFD FLUENT 6.0Bui Van Ga0Pham Thi Kim Loan1Nhan Hong Quang2Danang UniversityDanang UniversityNational Institute of Labour Protection Integral model is simple in utilization, low in CPU time calculation, suitable for a lot of practical applications of turbulent diffusion jet. However the assessment of accuracy of the model should be carried out by experimental data and by results of available multidirectional codes. The present paper shows the comparison of velocity profiles given by the integral model and the CFD FLUENT 6.0 Code. The difference in results given by the two models is lower than 10% when Reynolds number at the exit nozzle below 5000. https://vjs.ac.vn/index.php/vjmech/article/view/5714
spellingShingle Bui Van Ga
Pham Thi Kim Loan
Nhan Hong Quang
Comparison of velocity distribution in turbulent diffusion jet given by the integral model and code CFD FLUENT 6.0
Vietnam Journal of Mechanics
title Comparison of velocity distribution in turbulent diffusion jet given by the integral model and code CFD FLUENT 6.0
title_full Comparison of velocity distribution in turbulent diffusion jet given by the integral model and code CFD FLUENT 6.0
title_fullStr Comparison of velocity distribution in turbulent diffusion jet given by the integral model and code CFD FLUENT 6.0
title_full_unstemmed Comparison of velocity distribution in turbulent diffusion jet given by the integral model and code CFD FLUENT 6.0
title_short Comparison of velocity distribution in turbulent diffusion jet given by the integral model and code CFD FLUENT 6.0
title_sort comparison of velocity distribution in turbulent diffusion jet given by the integral model and code cfd fluent 6 0
url https://vjs.ac.vn/index.php/vjmech/article/view/5714
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AT phamthikimloan comparisonofvelocitydistributioninturbulentdiffusionjetgivenbytheintegralmodelandcodecfdfluent60
AT nhanhongquang comparisonofvelocitydistributioninturbulentdiffusionjetgivenbytheintegralmodelandcodecfdfluent60