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[SpringerBriefs in Applied Sciences and Technology] Sustainable Thermal Power Resources Through Future Engineering || Experimental Investigation on Performance of Solar-Powered Attic Ventilation

DOI:10.1007/978-981-13-2968-5_1 出版年份:2019 更新时间:2025-09-23 15:21:01
摘要: An attic ventilation system has the potential to reduce cooling load and power consumption of an air-conditioning system in buildings that experience elevated temperature in the attic space during the day. For this, a solar-powered attic ventilation system, which harnesses the abundant source of solar energy from the sun, is desired to ventilate the hot attic space in an economical way. On the other hand, it is known that the ef?ciency of photovoltaic (PV) cells decreases when temperature of the solar panel increases. This chapter discusses the design and development of an ef?cient and low-cost solar-powered attic ventilation system. The novelty approach is intended to improve the PV ef?ciency and the overall performance of the system by providing air?ow for the solar panel from out?ow of the ventilation system. The designed and developed solar-powered attic ventilation system consists of an exhaust fan powered by a polycrystalline solar panel, a direct current to direct current (DC-DC) step-down converter power module, ducting system, and ventilation casing assembled together. Components like ventilation casing and angle adjustable mounting for solar panel are prepared through fabrication work. A few experiments and testing on ventilation process and PV ef?ciency are conducted to determine the performance, working condition, and functionality of the developed system. Parameters like ambient temperature and indoor temperature of the research location are studied in the experiment of ventilation process. Solar irradiance, the power produced from the PV, and the power delivered to the exhaust fan are studied through the experiment on PV ef?ciency. The developed solar-powered attic ventilation system reduces the attic temperature by 2.9 °C and keeps the temperature difference between the ambient and indoor in the range of 0.1–0.4 °C. An increment of about 17% was observed for the PV ef?ciency when there is air?ow for the PV module from out?ow of the ventilation system.
作者: Firdaus Basrawi,Thamir K. Ibrahim,Surendran S. Sathiyaseelan,A. A. Razak
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To design and develop an efficient and low-cost solar-powered attic ventilation system that reduces cooling load and power consumption of air-conditioning systems in buildings by ventilating hot attic space, while also improving photovoltaic (PV) efficiency through a novel cooling approach.

The developed solar-powered attic ventilation system effectively reduces attic temperature and maintains a small temperature difference between ambient and indoor environments. It also improves PV efficiency by 17% when cooling is applied. The system is low-cost, reduces cooling load and energy consumption, and is environmentally friendly.

The performance of the solar-powered ventilation system in cooling the PV module was found to be less effective at higher irradiance levels. Additionally, the system's effectiveness may vary with environmental factors like wind speed and humidity.

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