Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber

The paper deals with experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solarabsorber. The main purpose of heat storage in solar thermal systems is to store heat when the supply of solar heat exceeds demand and release it when...

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Main Authors: Hejcik J., Pech O., Charvat P.
Format: Article
Language:English
Published: EDP Sciences 2013-04-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20134501127
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spelling doaj-8d9fa0eaea8f4dd3860722b5bca5dae52021-08-02T18:23:15ZengEDP SciencesEPJ Web of Conferences2100-014X2013-04-01450112710.1051/epjconf/20134501127Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorberHejcik J.Pech O.Charvat P.The paper deals with experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solarabsorber. The main purpose of heat storage in solar thermal systems is to store heat when the supply of solar heat exceeds demand and release it when otherwise. A number of heat storage materials can be used for this purpose; the phase change materials among them. Short-term latent heat thermal storage integrated with the solar absorber can stabilize the air temperature at the outlet of the collector on cloudy days when solar radiation intensity incident on a solar collector fluctuates significantly. Two experimental front-and-back pass solar air collectors of the same dimensions have been built for the experimental investigations. One collector had a “conventional” solar absorber made of a metal sheet while the solar absorber of the other collector consisted of containers filled with organic phase change material. The experimental collectors were positioned side by side during the investigations to ensure the same operating conditions (incident solar radiation, outdoor temperature). http://dx.doi.org/10.1051/epjconf/20134501127
collection DOAJ
language English
format Article
sources DOAJ
author Hejcik J.
Pech O.
Charvat P.
spellingShingle Hejcik J.
Pech O.
Charvat P.
Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber
EPJ Web of Conferences
author_facet Hejcik J.
Pech O.
Charvat P.
author_sort Hejcik J.
title Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber
title_short Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber
title_full Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber
title_fullStr Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber
title_full_unstemmed Experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber
title_sort experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solar absorber
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2013-04-01
description The paper deals with experimental investigations of the performance of a solar air collector with latent heat thermal storage integrated with the solarabsorber. The main purpose of heat storage in solar thermal systems is to store heat when the supply of solar heat exceeds demand and release it when otherwise. A number of heat storage materials can be used for this purpose; the phase change materials among them. Short-term latent heat thermal storage integrated with the solar absorber can stabilize the air temperature at the outlet of the collector on cloudy days when solar radiation intensity incident on a solar collector fluctuates significantly. Two experimental front-and-back pass solar air collectors of the same dimensions have been built for the experimental investigations. One collector had a “conventional” solar absorber made of a metal sheet while the solar absorber of the other collector consisted of containers filled with organic phase change material. The experimental collectors were positioned side by side during the investigations to ensure the same operating conditions (incident solar radiation, outdoor temperature).
url http://dx.doi.org/10.1051/epjconf/20134501127
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AT charvatp experimentalinvestigationsoftheperformanceofasolaraircollectorwithlatentheatthermalstorageintegratedwiththesolarabsorber
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