Velocity Boundary Layer Analysis of a Flat Plate Heat Exchanger in Laminar Flow: A Case Study

In this article, a behavioral analysis of velocity boundary layer in a flat plate heat exchanger in laminar flow condition through CFD simulation using FLUENT software is done. The main objective of this study is to determine the velocity vectors between the flat plates of the heat exchanger. In add...

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Main Authors: M. Mirdrikvand, B. Roozbehani, S. I. Moqadam, A. C. Roshan, Y. Ramezani
Format: Article
Language:English
Published: D. G. Pylarinos 2012-01-01
Series:Engineering, Technology & Applied Science Research
Subjects:
CFD
Online Access:http://www.etasr.com/index.php/ETASR/article/download/251/148
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spelling doaj-deda9872f51e4f35b243c2582f44f0032020-12-02T03:36:52ZengD. G. PylarinosEngineering, Technology & Applied Science Research1792-80362012-01-0126310314Velocity Boundary Layer Analysis of a Flat Plate Heat Exchanger in Laminar Flow: A Case StudyM. MirdrikvandB. RoozbehaniS. I. MoqadamA. C. RoshanY. RamezaniIn this article, a behavioral analysis of velocity boundary layer in a flat plate heat exchanger in laminar flow condition through CFD simulation using FLUENT software is done. The main objective of this study is to determine the velocity vectors between the flat plates of the heat exchanger. In addition, wake occurrence, differences of velocity at different surfaces between plates, angles of velocity vectors and the effect of wake phenomenon on the shear stresses exerted on the plates are discussed in detail. The study graphically illustrates results based on fluid’s behavior by a 3D and 2D simulation with air and water as cold and hot streams that affect plate’s situation and its hydro dynamical operations. Consequently, some important design features regarding wake point occurrence and pressure loss are investigated. In addition, eddy current and reverse flows in the wake area and the angles of the velocity vectors are described.http://www.etasr.com/index.php/ETASR/article/download/251/148Flat Plate Heat Exchangerwakeboundary layervelocityFLUENTCFD
collection DOAJ
language English
format Article
sources DOAJ
author M. Mirdrikvand
B. Roozbehani
S. I. Moqadam
A. C. Roshan
Y. Ramezani
spellingShingle M. Mirdrikvand
B. Roozbehani
S. I. Moqadam
A. C. Roshan
Y. Ramezani
Velocity Boundary Layer Analysis of a Flat Plate Heat Exchanger in Laminar Flow: A Case Study
Engineering, Technology & Applied Science Research
Flat Plate Heat Exchanger
wake
boundary layer
velocity
FLUENT
CFD
author_facet M. Mirdrikvand
B. Roozbehani
S. I. Moqadam
A. C. Roshan
Y. Ramezani
author_sort M. Mirdrikvand
title Velocity Boundary Layer Analysis of a Flat Plate Heat Exchanger in Laminar Flow: A Case Study
title_short Velocity Boundary Layer Analysis of a Flat Plate Heat Exchanger in Laminar Flow: A Case Study
title_full Velocity Boundary Layer Analysis of a Flat Plate Heat Exchanger in Laminar Flow: A Case Study
title_fullStr Velocity Boundary Layer Analysis of a Flat Plate Heat Exchanger in Laminar Flow: A Case Study
title_full_unstemmed Velocity Boundary Layer Analysis of a Flat Plate Heat Exchanger in Laminar Flow: A Case Study
title_sort velocity boundary layer analysis of a flat plate heat exchanger in laminar flow: a case study
publisher D. G. Pylarinos
series Engineering, Technology & Applied Science Research
issn 1792-8036
publishDate 2012-01-01
description In this article, a behavioral analysis of velocity boundary layer in a flat plate heat exchanger in laminar flow condition through CFD simulation using FLUENT software is done. The main objective of this study is to determine the velocity vectors between the flat plates of the heat exchanger. In addition, wake occurrence, differences of velocity at different surfaces between plates, angles of velocity vectors and the effect of wake phenomenon on the shear stresses exerted on the plates are discussed in detail. The study graphically illustrates results based on fluid’s behavior by a 3D and 2D simulation with air and water as cold and hot streams that affect plate’s situation and its hydro dynamical operations. Consequently, some important design features regarding wake point occurrence and pressure loss are investigated. In addition, eddy current and reverse flows in the wake area and the angles of the velocity vectors are described.
topic Flat Plate Heat Exchanger
wake
boundary layer
velocity
FLUENT
CFD
url http://www.etasr.com/index.php/ETASR/article/download/251/148
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