研究目的
To investigate the influences of operating parameters on the performances of a photovoltaic/thermal (PV/T) collector using microencapsulated phase change slurry (MPCS) as a coolant, focusing on the effects of MPCS mass fraction, mass flow rate, and collector channel height on the collector's electrical and thermal performances.
研究成果
The PV/T collector achieves optimal net efficiency with a MPCS mass flow rate of 0.005 kg/s and a channel height of 0.010 m at a 20 wt% MPCS mass fraction. However, 15 wt% MPCS is recommended for cooling photovoltaic modules due to slower temperature reduction at higher mass fractions. The study highlights the potential of MPCS in improving the electrical and thermal performances of PV/T collectors, suggesting further research on MPCS durability and optimal working conditions.
研究不足
The study's limitations include the lack of experimental validation for the PV/T collector with MPCS as a coolant, reliance on numerical simulation, and the need for further research on the durability of MPCS and optimal working conditions for the collector.