研究目的
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.
研究成果
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.
研究不足
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.
1:Experimental Design and Method Selection:
The study involved designing a solar-powered attic ventilation system with components like an exhaust fan, polycrystalline solar panel, DC-DC step-down converter, ducting system, and ventilation casing. The system was designed to improve PV efficiency by utilizing airflow from the ventilation system to cool the solar panel.
2:Sample Selection and Data Sources:
The research location was a cabin container with specific dimensions, and data on ambient temperature, indoor temperature, and solar irradiance were collected over several days.
3:List of Experimental Equipment and Materials:
Equipment included an exhaust fan, solar panel, DC-DC converter, ducting system, ventilation casing, anemometer, clamp meter, and weather station for irradiance data.
4:Experimental Procedures and Operational Workflow:
The system was assembled and tested under different conditions to evaluate ventilation performance and PV efficiency. Data were collected at regular intervals.
5:Data Analysis Methods:
Temperature differences and PV efficiency were analyzed using collected data, with efficiency calculated based on output power, irradiance, and PV module area.
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