Numerical and Analytical Approach for Film Condensation on Different Forms of Surfaces

This paper tries to achieve a solution for problems that concern condensation around a flat plate, circular and elliptical tube in by numerical and analytical methods. Also, it calculates entropy production rates. At first, a problem was solved with mesh dynamic and rational assumptions; next it was...

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Main Authors: Ammar Kazemi Jouybari, Arash Mirabdolah Lavasani
Format: Article
Language:English
Published: Shahid Chamran University of Ahvaz 2019-10-01
Series:Journal of Applied and Computational Mechanics
Subjects:
Online Access:http://jacm.scu.ac.ir/article_14164_2802ab0e97b34884a3153fbf6d189d66.pdf
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spelling doaj-c38ed093e92641b8a0b36c07a4bc00cb2020-11-25T00:44:52ZengShahid Chamran University of AhvazJournal of Applied and Computational Mechanics2383-45362383-45362019-10-015596497510.22055/jacm.2019.27938.144314164Numerical and Analytical Approach for Film Condensation on Different Forms of SurfacesAmmar Kazemi Jouybari0Arash Mirabdolah Lavasani1Department of Mechanical Engineering, Islamic Azad University, Central Tehran Branch, Tehran, IranDepartment of Mechanical Engineering, Islamic Azad University, Central Tehran Branch, Tehran, IranThis paper tries to achieve a solution for problems that concern condensation around a flat plate, circular and elliptical tube in by numerical and analytical methods. Also, it calculates entropy production rates. At first, a problem was solved with mesh dynamic and rational assumptions; next it was compared with the numerical solution that the result had acceptable errors. An additional supporting relation is applied based on the characteristic of the condensation phenomenon for condensing elements. As it is shown here, due to higher rates of heat transfer for elliptical tubes, they have more entropy production rates, in comparison to circular ones. Findings showed that the two methods were efficient. Furthermore, analytical methods can be used to optimize the problem and reduce the entropy production rate.http://jacm.scu.ac.ir/article_14164_2802ab0e97b34884a3153fbf6d189d66.pdfEntropy rateAnalytical solutionNumerical solutionCondensation
collection DOAJ
language English
format Article
sources DOAJ
author Ammar Kazemi Jouybari
Arash Mirabdolah Lavasani
spellingShingle Ammar Kazemi Jouybari
Arash Mirabdolah Lavasani
Numerical and Analytical Approach for Film Condensation on Different Forms of Surfaces
Journal of Applied and Computational Mechanics
Entropy rate
Analytical solution
Numerical solution
Condensation
author_facet Ammar Kazemi Jouybari
Arash Mirabdolah Lavasani
author_sort Ammar Kazemi Jouybari
title Numerical and Analytical Approach for Film Condensation on Different Forms of Surfaces
title_short Numerical and Analytical Approach for Film Condensation on Different Forms of Surfaces
title_full Numerical and Analytical Approach for Film Condensation on Different Forms of Surfaces
title_fullStr Numerical and Analytical Approach for Film Condensation on Different Forms of Surfaces
title_full_unstemmed Numerical and Analytical Approach for Film Condensation on Different Forms of Surfaces
title_sort numerical and analytical approach for film condensation on different forms of surfaces
publisher Shahid Chamran University of Ahvaz
series Journal of Applied and Computational Mechanics
issn 2383-4536
2383-4536
publishDate 2019-10-01
description This paper tries to achieve a solution for problems that concern condensation around a flat plate, circular and elliptical tube in by numerical and analytical methods. Also, it calculates entropy production rates. At first, a problem was solved with mesh dynamic and rational assumptions; next it was compared with the numerical solution that the result had acceptable errors. An additional supporting relation is applied based on the characteristic of the condensation phenomenon for condensing elements. As it is shown here, due to higher rates of heat transfer for elliptical tubes, they have more entropy production rates, in comparison to circular ones. Findings showed that the two methods were efficient. Furthermore, analytical methods can be used to optimize the problem and reduce the entropy production rate.
topic Entropy rate
Analytical solution
Numerical solution
Condensation
url http://jacm.scu.ac.ir/article_14164_2802ab0e97b34884a3153fbf6d189d66.pdf
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