On the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gap

The article presents the solution of heat balance equation system, describing heat exchange processes in ventilated envelopes, which was applied to derive formulas for the calculation of temperatures in the ventilated layers of the envelopes. The accurateness of the formulas was assessed by experim...

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Main Authors: Edmundas Monstvilas, Karolis Banionis, Jurga Poderytė, Raimondas Bliūdžius, Arūnas Burlingis
Format: Article
Language:English
Published: Vilnius Gediminas Technical University 2014-12-01
Series:Journal of Civil Engineering and Management
Subjects:
Online Access:http://journals.vgtu.lt/index.php/JCEM/article/view/3006
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spelling doaj-b7db0d6c00a245dab7950881e087ea482021-07-02T17:12:25ZengVilnius Gediminas Technical UniversityJournal of Civil Engineering and Management1392-37301822-36052014-12-0121110.3846/13923730.2014.937357On the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gapEdmundas Monstvilas0Karolis Banionis1Jurga Poderytė2Raimondas Bliūdžius3Arūnas Burlingis4Institute of Architecture and Construction of Kaunas University of Technology, Tunelio g. 60, 44405 Kaunas, LithuaniaInstitute of Architecture and Construction of Kaunas University of Technology, Tunelio g. 60, 44405 Kaunas, LithuaniaInstitute of Architecture and Construction of Kaunas University of Technology, Tunelio g. 60, 44405 Kaunas, LithuaniaInstitute of Architecture and Construction of Kaunas University of Technology, Tunelio g.Institute of Architecture and Construction of Kaunas University of Technology, Tunelio g. 60, 44405 Kaunas, Lithuania The article presents the solution of heat balance equation system, describing heat exchange processes in ventilated envelopes, which was applied to derive formulas for the calculation of temperatures in the ventilated layers of the envelopes. The accurateness of the formulas was assessed by experimental research and analysis of the calculation results. During the process of heat exchange balance equation solution, the equations were simplified by introducing the following restriction into the derived formulas: they may only be applied for the ventilated envelopes with steel or similar coatings as their external layers, i.e. coatings having small heat capacity and minor difference between the external and internal surface temperatures. The derived formulas enable the calculation of the temperatures of the ventilated envelopes in the distance which does not exceed a half of the ventilated air gap length measuring from the air entrance into the gap. However, this restriction does not impede the estimation of the average thermal indicators of the ventilated envelopes. http://journals.vgtu.lt/index.php/JCEM/article/view/3006ventilated rooftemperature distributionheat flow balanceenergy balanceselective coatings
collection DOAJ
language English
format Article
sources DOAJ
author Edmundas Monstvilas
Karolis Banionis
Jurga Poderytė
Raimondas Bliūdžius
Arūnas Burlingis
spellingShingle Edmundas Monstvilas
Karolis Banionis
Jurga Poderytė
Raimondas Bliūdžius
Arūnas Burlingis
On the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gap
Journal of Civil Engineering and Management
ventilated roof
temperature distribution
heat flow balance
energy balance
selective coatings
author_facet Edmundas Monstvilas
Karolis Banionis
Jurga Poderytė
Raimondas Bliūdžius
Arūnas Burlingis
author_sort Edmundas Monstvilas
title On the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gap
title_short On the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gap
title_full On the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gap
title_fullStr On the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gap
title_full_unstemmed On the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gap
title_sort on the solution of energy balance equation system to predict temperature distribution in the building elements with ventilated air gap
publisher Vilnius Gediminas Technical University
series Journal of Civil Engineering and Management
issn 1392-3730
1822-3605
publishDate 2014-12-01
description The article presents the solution of heat balance equation system, describing heat exchange processes in ventilated envelopes, which was applied to derive formulas for the calculation of temperatures in the ventilated layers of the envelopes. The accurateness of the formulas was assessed by experimental research and analysis of the calculation results. During the process of heat exchange balance equation solution, the equations were simplified by introducing the following restriction into the derived formulas: they may only be applied for the ventilated envelopes with steel or similar coatings as their external layers, i.e. coatings having small heat capacity and minor difference between the external and internal surface temperatures. The derived formulas enable the calculation of the temperatures of the ventilated envelopes in the distance which does not exceed a half of the ventilated air gap length measuring from the air entrance into the gap. However, this restriction does not impede the estimation of the average thermal indicators of the ventilated envelopes.
topic ventilated roof
temperature distribution
heat flow balance
energy balance
selective coatings
url http://journals.vgtu.lt/index.php/JCEM/article/view/3006
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