Calculation of the thermal balance of the photocell during operation and removal of heat

The heat exchange of the photoelectric module with the environment and its changes in constant temperature were analyzed. Its temperature depends on the ambient temperature and the flux density of solar radiation, the heat balance equation is formed. The maximum concentration coefficient correspondi...

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Main Authors: Murodov Muzaffar, Nabiev Murodjon, Amir Hababa Mohamad
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/2023/71/e3sconf_icecae2023_01033.pdf
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author Murodov Muzaffar
Nabiev Murodjon
Amir Hababa Mohamad
author_facet Murodov Muzaffar
Nabiev Murodjon
Amir Hababa Mohamad
author_sort Murodov Muzaffar
collection DOAJ
description The heat exchange of the photoelectric module with the environment and its changes in constant temperature were analyzed. Its temperature depends on the ambient temperature and the flux density of solar radiation, the heat balance equation is formed. The maximum concentration coefficient corresponding to the accepted limit temperature of 85 °C of the photocell was determined. It turned out that in the case of arbitrary installation of photoelectric modules, the maximum concentration coefficient does not exceed K = 3 at ambient temperature 25 °C, and K = 2,5 when installing the roof. An increase in the unit concentration coefficient in the summer leads to a constant temperature rise of the photocells to 18-22 °C, depending on the method of installation. A sandwich structural method of photoelectric module surface cooling was developed taking into account the increase in ambient temperature.
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spelling doaj.art-2b0f22e485fd4beebc03335d669a05462023-10-17T08:51:09ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014340103310.1051/e3sconf/202343401033e3sconf_icecae2023_01033Calculation of the thermal balance of the photocell during operation and removal of heatMurodov Muzaffar0Nabiev Murodjon1Amir Hababa Mohamad2Department of Power Engineering, Namangan Engineering-Construction InstituteDepartment of Power Engineering, Namangan Engineering-Construction InstituteRenewable Energy Laboratory, Higher Institute for Applied Sciences and TechnologyThe heat exchange of the photoelectric module with the environment and its changes in constant temperature were analyzed. Its temperature depends on the ambient temperature and the flux density of solar radiation, the heat balance equation is formed. The maximum concentration coefficient corresponding to the accepted limit temperature of 85 °C of the photocell was determined. It turned out that in the case of arbitrary installation of photoelectric modules, the maximum concentration coefficient does not exceed K = 3 at ambient temperature 25 °C, and K = 2,5 when installing the roof. An increase in the unit concentration coefficient in the summer leads to a constant temperature rise of the photocells to 18-22 °C, depending on the method of installation. A sandwich structural method of photoelectric module surface cooling was developed taking into account the increase in ambient temperature.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/71/e3sconf_icecae2023_01033.pdf
spellingShingle Murodov Muzaffar
Nabiev Murodjon
Amir Hababa Mohamad
Calculation of the thermal balance of the photocell during operation and removal of heat
E3S Web of Conferences
title Calculation of the thermal balance of the photocell during operation and removal of heat
title_full Calculation of the thermal balance of the photocell during operation and removal of heat
title_fullStr Calculation of the thermal balance of the photocell during operation and removal of heat
title_full_unstemmed Calculation of the thermal balance of the photocell during operation and removal of heat
title_short Calculation of the thermal balance of the photocell during operation and removal of heat
title_sort calculation of the thermal balance of the photocell during operation and removal of heat
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/71/e3sconf_icecae2023_01033.pdf
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AT amirhababamohamad calculationofthethermalbalanceofthephotocellduringoperationandremovalofheat