Improving the energy efficiency of a solar air heater with heat accumulator using flat reflectors

In the article, the authors researched the process of increasing the energy efficiency of the solar air heating collector with heat accumulator. In order to increase the energy efficiency of the solar air heating collector with a heat accumulator, it was proposed to install flat reflectors parallel...

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Main Authors: Toshmamatov Bobir, Shomuratova Sokhiba, Safarova Setora
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/48/e3sconf_apecvi2023_01026.pdf
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author Toshmamatov Bobir
Shomuratova Sokhiba
Safarova Setora
author_facet Toshmamatov Bobir
Shomuratova Sokhiba
Safarova Setora
author_sort Toshmamatov Bobir
collection DOAJ
description In the article, the authors researched the process of increasing the energy efficiency of the solar air heating collector with heat accumulator. In order to increase the energy efficiency of the solar air heating collector with a heat accumulator, it was proposed to install flat reflectors parallel to its sides. Flat reflectors with a surface area of 1.8 m2 were installed on the sides of the solar air heating collector with a useful surface of 1.8 m2, and a pilot-industrial version of the device was created. According to the results of the conducted research, it was determined that the energy efficiency of flat reflectors depends on the solar declination angle. Research results show that, the maximum heat capacity of the flat reflector solar air heating collector with a heat accumulator was 1020 W. The maximum temperature of the heat carriers, air + 75°C and heat accumulator + 85°C.
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spelling doaj.art-3b1e2af6bae844108dc40041a5beb1122023-08-21T09:01:37ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014110102610.1051/e3sconf/202341101026e3sconf_apecvi2023_01026Improving the energy efficiency of a solar air heater with heat accumulator using flat reflectorsToshmamatov Bobir0Shomuratova Sokhiba1Safarova Setora2Karshi engineering-economics instituteKarshi engineering-economics instituteKarshi engineering-economics instituteIn the article, the authors researched the process of increasing the energy efficiency of the solar air heating collector with heat accumulator. In order to increase the energy efficiency of the solar air heating collector with a heat accumulator, it was proposed to install flat reflectors parallel to its sides. Flat reflectors with a surface area of 1.8 m2 were installed on the sides of the solar air heating collector with a useful surface of 1.8 m2, and a pilot-industrial version of the device was created. According to the results of the conducted research, it was determined that the energy efficiency of flat reflectors depends on the solar declination angle. Research results show that, the maximum heat capacity of the flat reflector solar air heating collector with a heat accumulator was 1020 W. The maximum temperature of the heat carriers, air + 75°C and heat accumulator + 85°C.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/48/e3sconf_apecvi2023_01026.pdf
spellingShingle Toshmamatov Bobir
Shomuratova Sokhiba
Safarova Setora
Improving the energy efficiency of a solar air heater with heat accumulator using flat reflectors
E3S Web of Conferences
title Improving the energy efficiency of a solar air heater with heat accumulator using flat reflectors
title_full Improving the energy efficiency of a solar air heater with heat accumulator using flat reflectors
title_fullStr Improving the energy efficiency of a solar air heater with heat accumulator using flat reflectors
title_full_unstemmed Improving the energy efficiency of a solar air heater with heat accumulator using flat reflectors
title_short Improving the energy efficiency of a solar air heater with heat accumulator using flat reflectors
title_sort improving the energy efficiency of a solar air heater with heat accumulator using flat reflectors
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/48/e3sconf_apecvi2023_01026.pdf
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AT shomuratovasokhiba improvingtheenergyefficiencyofasolarairheaterwithheataccumulatorusingflatreflectors
AT safarovasetora improvingtheenergyefficiencyofasolarairheaterwithheataccumulatorusingflatreflectors