Heat transfer from oriented heat exchange areas

This paper deals with the transfer of heat-driven heat transfer surface area in relation to the construction of the criterion equation for “n” horizontal pipe one about another. On the bases of theoretical models have been developed for calculating the thermal performance of natural convection by C...

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Main Authors: Vantuch Martin, Huzvar Jozef, Kapjor Andrej
Format: Article
Language:English
Published: EDP Sciences 2014-03-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20146702122
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spelling doaj-aaecce60b02b4afda46dfd3c0d45f7d12021-08-02T16:13:00ZengEDP SciencesEPJ Web of Conferences2100-014X2014-03-01670212210.1051/epjconf/20146702122epjconf_efm-13_02122Heat transfer from oriented heat exchange areasVantuch Martin0Huzvar Jozef1Kapjor Andrej2University of Žilina, Faculty of Mechanical Engineering, Department of power engineeringUniversity of Žilina, Faculty of Mechanical Engineering, Department of power engineeringUniversity of Žilina, Faculty of Mechanical Engineering, Department of power engineering This paper deals with the transfer of heat-driven heat transfer surface area in relation to the construction of the criterion equation for “n” horizontal pipe one about another. On the bases of theoretical models have been developed for calculating the thermal performance of natural convection by Churilla and Morgan, for various pipe diameters and temperatures. These models were compared with models created in CFD-Fluent Ansys the same boundary conditions. The aim of the analyse of heat and fluxional pipe fields „n“ pipes one about another at natural convection is the creation of criterion equation on the basis of which the heat output of heat transfer from pipe oriented areas one above another with given spacing could be quantified. At presence a sum of criterion equations exists for simple geometrical shapes of individual oriented geometrical areas but the criterion equation which would consider interaction of fluxional field generated by free convection from multiple oriented areas is not mentioned in standardly accessible technical literature and other magazine publications. http://dx.doi.org/10.1051/epjconf/20146702122
collection DOAJ
language English
format Article
sources DOAJ
author Vantuch Martin
Huzvar Jozef
Kapjor Andrej
spellingShingle Vantuch Martin
Huzvar Jozef
Kapjor Andrej
Heat transfer from oriented heat exchange areas
EPJ Web of Conferences
author_facet Vantuch Martin
Huzvar Jozef
Kapjor Andrej
author_sort Vantuch Martin
title Heat transfer from oriented heat exchange areas
title_short Heat transfer from oriented heat exchange areas
title_full Heat transfer from oriented heat exchange areas
title_fullStr Heat transfer from oriented heat exchange areas
title_full_unstemmed Heat transfer from oriented heat exchange areas
title_sort heat transfer from oriented heat exchange areas
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2014-03-01
description This paper deals with the transfer of heat-driven heat transfer surface area in relation to the construction of the criterion equation for “n” horizontal pipe one about another. On the bases of theoretical models have been developed for calculating the thermal performance of natural convection by Churilla and Morgan, for various pipe diameters and temperatures. These models were compared with models created in CFD-Fluent Ansys the same boundary conditions. The aim of the analyse of heat and fluxional pipe fields „n“ pipes one about another at natural convection is the creation of criterion equation on the basis of which the heat output of heat transfer from pipe oriented areas one above another with given spacing could be quantified. At presence a sum of criterion equations exists for simple geometrical shapes of individual oriented geometrical areas but the criterion equation which would consider interaction of fluxional field generated by free convection from multiple oriented areas is not mentioned in standardly accessible technical literature and other magazine publications.
url http://dx.doi.org/10.1051/epjconf/20146702122
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