研究目的
To develop an ultra-low-cost solar photovoltaic-thermal (PVT) collector using aluminum minichannels and nonimaging optics to provide both electricity and thermal energy in a distributed and renewable manner, addressing the high cost barrier of current PVT technologies.
研究成果
The novel PVT collector demonstrated significant potential for reducing costs and space requirements while providing comparable performance to commercial systems. Future improvements could enhance electric performance and sealing methods.
研究不足
The study notes that some tubes developed condensation, indicating seal issues. Future models require more robust sealing methods. The electric performance was about 75% of expected, attributed to low packing factor and isolated sections of inter-digited back contacts.
1:Experimental Design and Method Selection:
The study involved the development of a PVT collector prototype using nonimaging optics and aluminum minichannels. The design rationale focused on replacing traditional packaging materials with low-cost alternatives to reduce costs.
2:Sample Selection and Data Sources:
A 1.2 m2 aperture prototype was built using silicon SunPower solar cells. Testing was conducted outdoors to measure thermal and electric efficiencies.
3:2 m2 aperture prototype was built using silicon SunPower solar cells. Testing was conducted outdoors to measure thermal and electric efficiencies.
List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: Equipment included a glass tube, minichannel absorber, half-circle reflector, and solar cells. Materials included aluminum minichannels and SunPower Maxeon Gen II solar cells.
4:Experimental Procedures and Operational Workflow:
The prototype was tested under various conditions to measure performance, including thermal and electric efficiencies at ambient and higher temperatures.
5:Data Analysis Methods:
Performance data was analyzed to calculate thermal and electric efficiencies, with results compared to models and linear best-fit approximations.
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