EXPERIMENTAL STUDY OF CONSTRUCTION OF INTEGRATED PHOTO AND PHOTOHEAT EXCHANGE SYSTEMS.

Komilov, Asliddin, Nasrullayev, Yusuf, Ergashev, Shaxriyor

Инновацион технологиялар · 2024-yil

Annotatsiya

Using a solar simulator, a photoelectric-thermal system integrated into an open-loopair building with a working fluid was experimentally investigated. Options for building-integratedphotovoltaic/thermal systems and systems using polycrystalline silicon photovoltaic panels wereexplored. Options for building-integrated photovoltaic/thermal systems and systems usingpolycrystalline silicon photovoltaic panels were explored. Experimental results show that theefficiency of equivalent system and PV panels in building-integrated PV/thermal systems, the bottom surface in the cavity of building-integrated PV/thermal system sometimes achieves high thermalefficiency due to solar radiation absorption.There are various ways to solve this problem, and the Solar Simulator creates accurate andrepeatable test conditions in terms of solar radiation, wind speed and ambient temperature, allowingthe prototype to be tested in a stable, near-room temperature environment. Lamps that simulatesunlight under stable conditions produce radiation close to the solar spectrum. The fan creates windsof varying speeds parallel to the surface of the PV panel in the same direction as the current in thecavity.Thermal efficiency of the insulating layer, which supports the structure of the integratedphotovoltaic/thermal systems of the building, at an angle of inclination from 0 to 180 degrees, thesolar radiation drop in the simulator is from 880 to 940 W/m2, the average wind speed is from 2 to3 m/ s.Theoretical and experimental studies were carried out to determine the change in thetemperature of the air passing through a system with a photo and photoheat exchanger, taking intoaccount room temperature and the radiation intensity of the solar simulator. 

Maqola ma’lumotlari
MualliflarKomilov, Asliddin, Nasrullayev, Yusuf, Ergashev, Shaxriyor
JurnalИнновацион технологиялар
Nashr sanasi2024-12-24
Jild53
Son01
TilIngliz

Kalit so‘zlar

Solar Energy Simulator, Photovoltaic Panel, Square Photosensitive Stent, solar panel, RTD Temperature Sensor, Anemometer, Collector, quyosh simulyator, fotoelektrik panel, kvadrat foto-sezgir stenti, RTD harorat sensori, anemometr, kollektor, имитатор солнечной энергии, фотоэлектрическая панель, квадратный светочувствительный стент, температурный датчик RTD, анемометр, коллектор

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