2010
DOI: 10.1108/09615531011081450
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Parametric analysis of entropy generation due to laminar developing mixed convection between differentially heated isothermal vertical parallel plates

Abstract: PurposeThe aim of this article is to present the results of a parametric analysis of the entropy generation due to mixed convection in the entry‐developing region between two differentially heated isothermal vertical plates.Design/methodology/approachThe entropy generation was estimated via a numerical solution of the mass, momentum and energy conservation equations governing the flow and heat transfer in the vertical channel between the two parallel plates. The resultant temperature and velocity profiles were… Show more

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Cited by 5 publications
(1 citation statement)
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References 53 publications
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“…Mokheimer et al (2010), and over the past few years quite a number of researchers focused on the optimization of the flow and heat transfer process in such geometry. Mokheimer (2010) carried out a parametric analysis of the entropy generation because of mixed convection in the entry-developing region between two differentially heated isothermal vertical plates. The entropy generation was estimated via a numerical solution of the mass, momentum and energy conservation equations governing the flow and heat transfer in the vertical channel between the two parallel plates.…”
Section: Introductionmentioning
confidence: 99%
“…Mokheimer et al (2010), and over the past few years quite a number of researchers focused on the optimization of the flow and heat transfer process in such geometry. Mokheimer (2010) carried out a parametric analysis of the entropy generation because of mixed convection in the entry-developing region between two differentially heated isothermal vertical plates. The entropy generation was estimated via a numerical solution of the mass, momentum and energy conservation equations governing the flow and heat transfer in the vertical channel between the two parallel plates.…”
Section: Introductionmentioning
confidence: 99%