Development of a new method for estimating the overall heat transfer coefficient of heat exchangers – Validation in automotive applications
Prediction of heat exchangers performance is primordial in the world of machine design especially when the industrial environment becomes demanding in terms of size reducing or price lowering. The most common adopted procedure for this kind of investigation is defining the exchanger's overall h...
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doaj-4143f715d1a54138a00cfd6ae87254fa2021-09-19T04:57:31ZengElsevierCase Studies in Thermal Engineering2214-157X2021-12-0128101434Development of a new method for estimating the overall heat transfer coefficient of heat exchangers – Validation in automotive applicationsAhmad Faraj0Jalal Faraj1Elias Harika2Farouk Hachem3Mahmoud Khaled4Energy and Thermo-Fluid Group–Lebanese International University LIU, Bekaa, LebanonEnergy and Thermo-Fluid Group–International University of Beirut BIU, Beirut, Lebanon; Faculty of Technology, Lebanese University, Industrial Engineering Department, Saida, LebanonEnergy and Thermo-Fluid Group–Lebanese International University LIU, Bekaa, LebanonEnergy and Thermo-Fluid Group–Lebanese International University LIU, Bekaa, LebanonEnergy and Thermo-Fluid Group–International University of Beirut BIU, Beirut, Lebanon; University Paris Diderot, Sorbonne Paris Cité, Interdisciplinary Energy Research Institute (PIERI), Paris, France; Corresponding author. School of Engineering, International University of Beirut BIU, PO Box 146404, Beirut, Lebanon.Prediction of heat exchangers performance is primordial in the world of machine design especially when the industrial environment becomes demanding in terms of size reducing or price lowering. The most common adopted procedure for this kind of investigation is defining the exchanger's overall heat transfer coefficient with a purely empiric way using interpolations and mathematical operations missing physical senses in the modeling. The present work offers a first step in theoretically modeling the heat transfer coefficient and presents a semi-empirical method which allows expressing the latter in function of the Reynolds' numbers of the fluids' flows when the variations of the Prandtl numbers of the two fluids are small. The method consists in an iterative technique based on a single test approach and allows the prediction of the heat exchanger performance for a large range of flowrates. Experimental validation of the method is performed for a cross-flow heat exchanger with water and air as working fluids, showing a relative error less than 1.6%. The relative error of the mathematical methods applied is less than 1.7%.http://www.sciencedirect.com/science/article/pii/S2214157X21005979New methodHeat exchangersOverall heat transfer coefficientExtrapolationAutomotive applications |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ahmad Faraj Jalal Faraj Elias Harika Farouk Hachem Mahmoud Khaled |
spellingShingle |
Ahmad Faraj Jalal Faraj Elias Harika Farouk Hachem Mahmoud Khaled Development of a new method for estimating the overall heat transfer coefficient of heat exchangers – Validation in automotive applications Case Studies in Thermal Engineering New method Heat exchangers Overall heat transfer coefficient Extrapolation Automotive applications |
author_facet |
Ahmad Faraj Jalal Faraj Elias Harika Farouk Hachem Mahmoud Khaled |
author_sort |
Ahmad Faraj |
title |
Development of a new method for estimating the overall heat transfer coefficient of heat exchangers – Validation in automotive applications |
title_short |
Development of a new method for estimating the overall heat transfer coefficient of heat exchangers – Validation in automotive applications |
title_full |
Development of a new method for estimating the overall heat transfer coefficient of heat exchangers – Validation in automotive applications |
title_fullStr |
Development of a new method for estimating the overall heat transfer coefficient of heat exchangers – Validation in automotive applications |
title_full_unstemmed |
Development of a new method for estimating the overall heat transfer coefficient of heat exchangers – Validation in automotive applications |
title_sort |
development of a new method for estimating the overall heat transfer coefficient of heat exchangers – validation in automotive applications |
publisher |
Elsevier |
series |
Case Studies in Thermal Engineering |
issn |
2214-157X |
publishDate |
2021-12-01 |
description |
Prediction of heat exchangers performance is primordial in the world of machine design especially when the industrial environment becomes demanding in terms of size reducing or price lowering. The most common adopted procedure for this kind of investigation is defining the exchanger's overall heat transfer coefficient with a purely empiric way using interpolations and mathematical operations missing physical senses in the modeling. The present work offers a first step in theoretically modeling the heat transfer coefficient and presents a semi-empirical method which allows expressing the latter in function of the Reynolds' numbers of the fluids' flows when the variations of the Prandtl numbers of the two fluids are small. The method consists in an iterative technique based on a single test approach and allows the prediction of the heat exchanger performance for a large range of flowrates. Experimental validation of the method is performed for a cross-flow heat exchanger with water and air as working fluids, showing a relative error less than 1.6%. The relative error of the mathematical methods applied is less than 1.7%. |
topic |
New method Heat exchangers Overall heat transfer coefficient Extrapolation Automotive applications |
url |
http://www.sciencedirect.com/science/article/pii/S2214157X21005979 |
work_keys_str_mv |
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