Analysis of pressure drop and effectiveness in micro cross-flow heat exchanger

A theoretical model that predicts the thermal and fluidic characteristics of a micro cross-flow heat exchanger is developed in this study. The theoretical model is validated by comparing the theoretical solutions with the experimental data from the literature. This model describes the interactive ef...

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Main Author: I. Garba
Format: Article
Language:English
Published: University of Maiduguri 2010-08-01
Series:Arid Zone Journal of Engineering, Technology and Environment
Online Access:http://azojete.com.ng/index.php/azojete/article/view/179/155
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spelling doaj-ca88db7a1b264679920384dc7f0cce922020-11-25T02:19:29ZengUniversity of MaiduguriArid Zone Journal of Engineering, Technology and Environment2545-58182545-58182010-08-0174458Analysis of pressure drop and effectiveness in micro cross-flow heat exchangerI. Garba0Department of Mechanical Engineering, Bayero University, Kano. NigeriaA theoretical model that predicts the thermal and fluidic characteristics of a micro cross-flow heat exchanger is developed in this study. The theoretical model is validated by comparing the theoretical solutions with the experimental data from the literature. This model describes the interactive effect between the effectiveness and pressure drop in the micro heat exchanger. The analytical results show that the average temperature of the hot and cold side flow significantly affects the heat transfer rate and the pressure drop at the same effectiveness. Different effectiveness has a great influence upon the heat transfer rate and pressure drop. When the micro heat exchanger material is changed from silicon to copper, the thermal conductivity changes from 148 to 400 W/mK. The heat exchanger efficiency is also similar. Furthermore, the dimensions effect has a great influence upon the relationship between the heat transfer rate and pressure drop. Therefore, the methodology presented in this paper can be used to design a micro cross-flow heat exchangerhttp://azojete.com.ng/index.php/azojete/article/view/179/155
collection DOAJ
language English
format Article
sources DOAJ
author I. Garba
spellingShingle I. Garba
Analysis of pressure drop and effectiveness in micro cross-flow heat exchanger
Arid Zone Journal of Engineering, Technology and Environment
author_facet I. Garba
author_sort I. Garba
title Analysis of pressure drop and effectiveness in micro cross-flow heat exchanger
title_short Analysis of pressure drop and effectiveness in micro cross-flow heat exchanger
title_full Analysis of pressure drop and effectiveness in micro cross-flow heat exchanger
title_fullStr Analysis of pressure drop and effectiveness in micro cross-flow heat exchanger
title_full_unstemmed Analysis of pressure drop and effectiveness in micro cross-flow heat exchanger
title_sort analysis of pressure drop and effectiveness in micro cross-flow heat exchanger
publisher University of Maiduguri
series Arid Zone Journal of Engineering, Technology and Environment
issn 2545-5818
2545-5818
publishDate 2010-08-01
description A theoretical model that predicts the thermal and fluidic characteristics of a micro cross-flow heat exchanger is developed in this study. The theoretical model is validated by comparing the theoretical solutions with the experimental data from the literature. This model describes the interactive effect between the effectiveness and pressure drop in the micro heat exchanger. The analytical results show that the average temperature of the hot and cold side flow significantly affects the heat transfer rate and the pressure drop at the same effectiveness. Different effectiveness has a great influence upon the heat transfer rate and pressure drop. When the micro heat exchanger material is changed from silicon to copper, the thermal conductivity changes from 148 to 400 W/mK. The heat exchanger efficiency is also similar. Furthermore, the dimensions effect has a great influence upon the relationship between the heat transfer rate and pressure drop. Therefore, the methodology presented in this paper can be used to design a micro cross-flow heat exchanger
url http://azojete.com.ng/index.php/azojete/article/view/179/155
work_keys_str_mv AT igarba analysisofpressuredropandeffectivenessinmicrocrossflowheatexchanger
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