The issues of calculating the absorber temperature and air heating in solar air collectors

Abbosov , Erkin, Muyassar, Muyassar, Аббасов , Еркин, Умурзакова , Муяссар, Abbosov , Erkin, Muyassar, Muyassar

Жамият ва инновациялар / Общество и инновации / Society and innovations · 2024-yil

Annotatsiya

The article discusses using solar energy as an alternative energy source, focusing on solar air heaters. To develop a method for calculating the thermal performance of these devices, the authors created a model for determining the temperatures of the solar radiation absorber and the heated air. The proposed model utilizes the Stefan–Boltzmann law and offers the advantage of calculating the absorber and air outlet temperatures. It assumes that the heat entering the solar collector is dissipated from the absorber walls through forced convection.

Maqola ma’lumotlari
MualliflarAbbosov , Erkin, Muyassar, Muyassar, Аббасов , Еркин, Умурзакова , Муяссар, Abbosov , Erkin, Muyassar, Muyassar
JurnalЖамият ва инновациялар / Общество и инновации / Society and innovations
Nashr sanasi2024-09-15
Jild5
Son5
Betlar232-239
TilRus
DOI10.47689/2181-1415-vol5-iss5-pp232-239

Kalit so‘zlar

возобновляемые источники энергии, традиционное топливо, солнечный воздушный нагреватель, абсорбер, температура абсорбера, тепловой поток, закон Стефана-Больцмана, конвекция, renewable energy sources, traditional fuel, solar air heater, absorber, absorber temperature, heat flow, Stefan–Boltzmann law, convection, yangilanuvchi energiya manbalari, an’anaviy yoqilg‘i, quyosh havo isitgichi, absorber, absorber harorati, issiqlik oqimi, Stefan-Bolsman qonuni, konveksiya

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